M6 SUPPLEMENTAL AND EME TEST POINTS.pdf

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Attached to
Joint Terminal Control Training and Rehearsal System (JTC TRS) Program Federal contract opportunity
Solicitation number
FA8621-20-R-0003
Issued by
Department of the Air Force Materiel Command Lifecycle Management Center Wright Patterson Air Force Base

About this file

This is a solicitation for the Joint Terminal Control Training and Rehearsal System (JTC TRS) Program. The program will continue acquiring and sustaining high-fidelity simulation systems to provide realistic training for terminal attack control, close air support, call for fire, and air-to-ground command and control. The systems include fixed dome, desktop, and portable JTC TRS devices as well as Air Support Operations Center simulators. The systems must support distributed operations over Distributed Mission Operations networks and actual, simulated, or emulated combat equipment. Contractors will operate JTAGSS sites and provide field support as needed for JTC TRS sites. Maintenance and training will be conducted on-site except for initial installation or unscheduled maintenance.

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Test Point #

Criticality Dome Desktop P-Spec Description

G.1 Critical X N/A System Evaluation Test (SET) configuration display is a Partial Dome.

Offeror provides SET configuration that includes a partial dome display.

SET configuration display is confirmed to be a partial dome.

G.2 Critical X N/A

Partial Dome Display, at a minimum, shall provide a continuous field of view (FOV) of 210o horizontal by 90o vertical, with a minimum of 70o above design eye level.

Offeror provides SET configuration with partial dome display providing a minimum continuous field of view of 210o horizontal by 90o vertical, with a minimum of 70o above design eye level.

SET configuration FOV matches documented information provided in written proposal and meets minimum FOV requirements.

G.3 Critical X N/A Two individuals must be able to fit within viewing volume during test.

Offeror provides location of viewing volume within partial dome. Two individuals acting as trainees enter the viewing volume.

SET configuration viewing volume matches documented information provided in written proposal, and two trainees are confirmed to fit within viewing volume.

G.4 Critical X N/A Minimum 5-ft. eye relief from edge of the viewing volume to the dome.

The offeror demonstrates a 5-ft. minimum eye relief from the edge of the viewing volume to the dome.

SET configuration eye relief matches documented information provided in written proposal, and minimum 5-

ft. eye relief is confirmed.

G.5 Non-

Critical X X 3.13.1.1

JTC TRS shall be designed so that it minimizes the risk of injury and equipment damage during all conditions of normal use such as installation, operation, maintenance, test, transportation, storage, and disposal or under a likely fault condition.

Offeror provides SET configuration for inspection. System is inspected for pinch points, sharp edges, or any potential hazards that could cause injury.

SET configuration is free from pinch points, sharp edges, or any potential hazards that could cause injury.

G.6 Non-

Critical X X 3.13.3.1.6

Wires and cables shall be positioned or protected to avoid contact with rough or irregular surfaces and sharp edges and to avoid damage to conductors or adjacent parts.

SET configuration wiring and cabling are inspected for protection from contact with rough or irregular surfaces, sharp edges or other areas with potential to cause damage.

SET configuration wiring and cabling are protected or do not contact rough or irregular surfaces, sharp edges or other areas with potential to cause damage.

G.7 Non-

Critical X X 3.13.3.1.3

Materials used shall, in the end-item configuration, be non-combustible or fire retardant. Parts and assembled equipment shall be cleaned of smudges, loose, spattered, or excess solder; weld metal; metal chips and mold release agents; or any other foreign material which might detract from the intended operation, function, or appearance of the equipment.

Offeror provides SET configuration for inspection. System is inspected for smudges, loose, spattered, or excess solder; weld metal; metal chips and mold release agents;

or any other foreign material which might detract from the intended operation, function, or appearance of the equipment.

System is free of smudges, loose, spattered, or excess solder; weld metal; metal chips and mold release agents;

or any other foreign material which might detract from the intended operation, function, or appearance of the equipment.

G.8 Critical X X 3.7.1.6.2

The Instructor Operator Station (IOS) shall be capable of initializing the simulator system. A password protected operator access setting shall be available for each individual system operator.

The IOS Operator initializes the simulator system. The IOS System prompts Operator for a password.

G.9 Non- Critical

X X 3.7.1.3

IOS shall display the up or down status of all major system components during system startup. Any system required to perform a mission is considered a major system.

During system startup, IOS Operator will demonstrate display of up or down status of all major system components.

The IOS has a screen depicting system start up and status of all major components.

G.10 Non- Critical

X X 3.10.3.2.2 System shall notify IOS operator of simulator system malfunctions.

IOS Operator demonstrates capability of system to notify Operator of malfunction.

The IOS has a feature notifying Operator of system malfunction.

X X 3.7.1 JTC TRS shall provide an IOS that enables a single instructor/operator to initialize, control and monitor the training or mission rehearsal session.

X X 3.7.2.1

The IOS shall include the capability to perform pre-mission preparation, including scenario generation, scenario file management and interface with DMO events.

X X 3.7.2.1.1 The JTC TRS shall have the capability to develop, modify, save and delete scenarios at the IOS.

X X 3.7.2.1.2 The IOS shall have the capability to select each entity type for use during scenario development.

X 3.7.6.1

The JTAC Instructor Station shall consist of at least two display screens connected to a computational system.

One of the display screens shall consist of a touchscreen monitor.

X 3.7.6.2 One JTAC Instructor Station display screen shall display a mirror of the JTAC's DAGR GPS.

X 3.7.6.3

One JTAC Instructor Station display screen shall display a mirror of the instructor’s communication panel and shall provide a “private” channel to the IOS and (Pilot Station Console) PSC role players.

X 3.7.6.4

The JTAC Instructor Station touchscreen monitor shall be compatible with the JTC TRS software system interfaces that are used to create, modify, record, and interact with the virtual environment and shall have the ability to display those interfaces.

X 3.7.6.5

The JTAC Instructor Station touchscreen monitor shall display a Remotely-Operated Video-Enhanced Receiver (ROVER) feed and a view of what the student sees in the emulated or simulated M22 Binoculars.

Specific identification of items (derived from the P-Spec) in bold underline will be provided at the time of test.

Success Criteria General Requirements

Test Setup: Dome Field of View (FOV), viewing volume and eye relief documentation are provided in written proposal. SET configuration is available for inspection.

Test Setup: The system shall be fully operational with the basic Afghanistan database (used to develop Scenarios 1-4) loaded. The IOS/Pilot Station Console (PSC) shall be manned.

Test Point / Action

Test Setup: System should be at exit or logoff status. Power should be off.

CriticalG.11

Visually/physically inspect dome, 1) JTAC Instructor Station should have 2 screens, at least 1 touchscreen, 2)

During scenario, observe and verify that the JTAC Instructor Station 1) mirrors students DAGR GPS, 2) mirrors instructors comm pannel, 3) touchscreen seamless integrates into system, recieves touch inputs, and interact with scenario, 4) mirrors students ROVER feed, 5) mirrors students binoculars

Conduct private communication between JTAC Instructor Station and PSC

Two monitors at the Instruction Station, at least one being touchscreen

1) DAGR is mirrored

2) Instructor comm pannel is mirrored

3) Touchscreen seamlessly integrates into system, recieves touch inputs, and interact with scenario

4) ROVER is mirrored

5) binoculars is mirrored Successful private comms between Instructor Station and

PSC

1. The IOS Operator initializes the training session.

2. The IOS Operator loads personnel from P-Spec and a civilian ground vehicle from P-Spec into the scene.

3. The IOS Operator has the personnel from P-Spec engage with Trainee.

4. IOS Operator neutralizes personnel from P-Spec.

5. The IOS Operator saves Scenario as "Scenario Name", then closes scenario.

6. The IOS Operator reopens "Scenario Name" , deletes the civilian ground vehicle from P-Spec, and re-saves as "Scenario Name".

Remove all entities from "Scenario Name".

1. Initialization of the training session by a single operator is demonstrated.

2. The IOS Operator demonstrates selection of entity types, and the scene in the dome depicts personnel from the P-Spec and a civilian ground vehicle from P-Spec.

3. The scene depicts the personnel from P-Spec engaging in hostile activity with Trainee.

4. Control of the scenario is demonstrated by a neutralized personnel from P-Spec.

5. Scenario has been saved as "Scenario Name".

6. Civilian ground vehicle from P-Spec has been deleted from the scene, and scenario is re-saved properly.

X 3.7.6.6

The JTAC Instructor Station shall include an Aural System with a headset that shall have the ability to interface with the JTC TRS voice communication networks discussed within paragraph 3.6.

X 3.7.6.7 The JTAC Instructor Station shall be mounted at the dome opening and the design of the mounting shall account for all current JTC TRS configurations.

G.12 Critical X X G.1.2 The visual system shall depict the following special effects:

a) Tactical smoke & columns

1. Operator at IOS produces tactical smoke.

2. Operator at IOS produces a column of smoke.

1. Trainee's scene depicts tactical smoke.

2. Trainee's scene depicts a column of smoke

G.13 Critical X X G.1.2 The visual system shall depict the following special effects:

b) Dust trails

1. Operator at IOS loads civilian ground vehicle from P- Spec into the scene.

2. Operator at IOS causes the civilian ground vehicle from P-Spec to move forward and produce dust trails behind vehicle.

1-2. Trainee's scene depicts dust trails behind a moving civilian ground vehicle from P-Spec.

G.14 Critical X X G.1.2 The visual system shall depict the following special effects:

c) Propeller/rotor disc

1. Operator at IOS/PSC loads a US military aircraft from P- Spec into the scene.

2. Operator at IOS/PSC demonstrates propeller/rotor disc movement on the US military aircraft from P-Spec.

1-2. Trainee's scene depicts a US military aircraft from P- Spec with propeller/rotor disc movement.

G.15 Critical X X

Surface to Air:

1. Operator at IOS/PSC loads a SAM from P-Spec into the scene.

2. Operator at IOS/PSC demonstrates SAM from P-Spec missile launch blast, contrails and plumes.

Surface to Air:

1-2. Trainee's scene depicts SAM from P-Spec missile launch blast, contrails and plumes.

G.16 Critical X X

Air to Air:

1. Operator at IOS/PSC loads a US military aircraft from P- Spec and a foreign military aircraft from P-Spec into scene.

2. Operator at IOS/PSC launches a missile from the US military aircraft, targeting the foreign military aircraft.

The missile strikes the foreign military aircraft.

Air to Air:

1-2. Trainee's scene depicts a missile firing from a US military aircraft from P-Spec with associated launch blast, contrails and plumes. Missile strikes foreign military aircraft from P-Spec and the foreign military aircraft depicts impact effects.

G.17 Critical X X

Air to Ground:

1. Operator at IOS/PSC employs a guided munition from P-Spec from the US military aircraft from P-Spec, targeting the SAM from P-Spec.

2. The guided munition strikes the SAM.

Air to Ground:

1. Trainee's scene depicts a guided munition from P- Spec from the US military aircraft from P-Spec.

2. Guided munition strikes the SAM from P-Spec, and the SAM depicts impact effects.

G.18 Critical X X IOS Operator creates cloud cover. Trainee's scene depicts cloud cover.

G.19 Critical X X IOS Operator adds cloud cover at a different elevation to depict two cloud layers.

Trainee's scene depicts two cloud layers at differing elevations.

G.20 Critical X X

1. IOS Operator provides wind from East to West at speed from 0-30 mph for one minute.

2. IOS Operator changes East to West wind speed from speed from 0-30 mph to speed from 0-30 mph.

IOS Operator changes wind speed to 0 mph and clears cloud layers.

1. Trainee's scene depicts clouds moving East to West with speed of speed from 0-30 mph.

2. Trainee's scene depicts change in speed of clouds moving East to West from speed from 0 to30 mph to speed from 0 to 30 mph.

G.21 Critical X X G.1.3 The visual system shall depict the following selectable environmental effects: f) Atmospheric model including: 2) Ground fog

Utilizing the ground fog model, the IOS Operator illustrates fog.

Trainee's scene depicts ground fog.

G.22 Non- Critical

X X

Trainee's scene depicts:

- a luminous sun disk as the sun moves across the sky over a time lapsed 12-hr period.

G.23 Non- Critical

X X

Trainee's scene depicts:

- shadowing effects as the sun moves across the sky over a time lapsed 12-hr period.

G.24 Non- Critical

X

The scene in the dome depicts:

- sky rotation as the sun moves across the sky over a time lapsed 12-hr period.

G.25 Non- Critical

X X

Trainee's scene depicts:

- glare as the sun moves across the sky over a time lapsed 12-hr period.

G.26 Non- Critical

X X

Trainee's scene depicts:

- directional horizon glow as the sun moves across the sky over a time lapsed 12-hr period.

G.27 Non- Critical

X IOS Operator sets the temperature to 120oF to demonstrate the effects of heat on the scene (such as wavy lines when looking at a surface).

Effects of heat can be seen on the scene in the dome.

G.28 Non- Critical

X X IOS Operator loads a thunderstorm model and demonstrates lightning and the storm moving across the sky.

Trainee's scene depicts a thunderstorm with lightning moving across the sky.

G.29 Non- Critical

X A night scene is depicted in the dome with:

- a luminous full moon disk

G.30 Non- Critical

X A night scene is depicted in the dome with:

- shadowing effects

G.31 Non- Critical

X A night scene is depicted in the dome with:

- sky rotation

The visual system shall depict the following special effects:

d) Weapon (surface to air, air to air and air to ground) effects, including:

1) Missile launches blasts, contrails, and plumes

2) Weapon fire effects appropriate to the type of weapon

3) Weapon impact effects appropriate to the weapon type, impact location, and target material structure (crater, explosion, debris, fire, smoke, discoloration, etc.).

G.1.2

The visual system shall depict the following selectable environmental effects: f) Atmospheric model including:

6) Visual effects as a result of temperature, 8) Visual effects of moving thunderstorms, lightning, and sandstorms, 9) Precipitation (rain, snow, sleet)

G.1.3

3.7.3.3.3.2

The visual system shall depict the following selectable environmental effects: e) Cloud cover; f) Atmospheric model including: 1) Clouds, 7) Wind (speed, direction)

The user shall be able to construct a weather scenario composed of at least two cloud layers. All cloud types shall move according to exercise wind speed and direction.

G 1 3 environmental effects: d) Moon illumination and shadowing, sky rotation (disk movement across the sky), glare phase and luminous moon disk including night star environmental effects: c) Sun illumination and shadowing, sky rotation (movement across the sky), glare, and luminous sun disk; g) Sky and directional horizon glow.

Utilizing the sun model, IOS Operator demonstrates a luminous sun disk, shadowing effects, sky rotation, glare and directional horizon glow as the sun moves across the sky over a time lapsed 12-hr period.

IOS Operator changes the scene from day to night and loads a Full Moon model and demonstrates moon illumination and shadowing, sky rotation (disk movement h k ) l h

G.32 Non- Critical

X A night scene is depicted in the dome with:

- glare

G.33 Non- Critical

X A night scene is depicted in the dome with:

- night star pattern

G.34 Non- Critical

X IOS Operator demonstrates cultural lighting, diurnal effects.

Scene depicts cultural lighting, diurnal effects.

G.35 Non- Critical

X X G.1.3 The visual system shall depict the following selectable environmental effects: f) Atmospheric model including:

3) Ground Fog by elevation

IOS Operator changes Time of Day to 0700 hrs. Utilizing the Ground Fog model, Operator illustrates Fog at three

(3) different elevations.

Scenes depict fog at the first, second, and third elevations, respectively.

G.36 Non- Critical

X X

1. IOS Operator produces a % coverage from P-Spec coverage cloud deck at elevation at 500 ft increment elevation.

2. IOS Operator changes the % coverage from P-Spec elevation of the cloud deck to elevation at 500 ft increment.

3. IOS Operator changes the elevation of the % coverage from P-Spec cloud deck to elevation at 500 ft increment.

1. The scene depicts a % coverage from P-Spec coverage cloud deck at elevation at 500 ft increment elevation.

2. The scene depicts a change in elevation of the % coverage from P-Spec cloud deck from elevation at 500 ft increment to elevation at 500 ft increment.

3. The scene depicts a change in elevation of the % coverage from P-Spec cloud deck from elevation at 500 ft increment to elevation at 500 ft. increment.

G.37 Non- Critical

X X

1. IOS Operator changes the cloud deck at elevation at 500 ft increment to % coverage from P-Spec coverage.

2. IOS Operator changes the cloud deck at elevation at 500 ft increment to % coverage from P-Spec coverage.

3. IOS Operator changes the scene to reflect 0% cloud coverage.

1. The scene depicts a change in cloud coverage from % coverage from P-Spec to % coverage from P-Spec.

2. The scene depicts a change in cloud coverage from % coverage from P-Spec to % coverage from P-Spec.

3. The scene depicts a change in cloud coverage from % coverage from P-Spec to 0%.

G.38 Critical X X IOS Operator demonstrates modified visibility as a function of a visibility-reducing effect from P-Spec.

The scene depicts a visibility-reducing effect from P- Spec and resultant changes in the range of visibility.

G.39 Critical X X IOS Operator clears the visibility-reducing effect from P- Spec and demonstrates modified visibility as a function of visibility-reducing effect from P-Spec.

The scene depicts visibility-reducing effect from P-Spec and resultant changes in the range of visibility.

G.40 Critical X X IOS Operator clears the visibility-reducing effect from P- Spec and demonstrates modified visibility as a function of visibility-reducing effect from P-Spec.

The scene depicts visibility-reducing effect from P-Spec and resultant changes in the range of visibility.

G.41 Critical X X IOS Operator demonstrates methods of defining the range of visibility at the IOS.

IOS Operator is able to demonstrate at the IOS how range of visibility is defined.

G.42 Non- Critical

X X G.1.16.2.1 The visual system shall compute and display cast shadows based on user-selected time of day (continuous and/or static).

1. IOS Operator loads a civilian ground vehicle from P- Spec into the scene.

2. IOS Operator selects static time of day of static time of day.

3. IOS Operator changes static time of day to static time of day.

4. IOS Operator changes static time of day to static time of day.

1. The scene depicts civilian ground vehicle from P-Spec.

2. The scene depicts appropriate shadows cast off of the civilian ground vehicle from P-Spec based on the time of day.

3. The scene depicts appropriate shadows cast off of the civilian ground vehicle from P-Spec based on the time of day.

4. The scene depicts appropriate shadows cast off of the civilian ground vehicle from P-Spec based on the time of day.

G.43 Critical X X

1. IOS/PSC Operator loads a US military aircraft P-Spec into the scene.

2. IOS/PSC Operator places the US military aircraft into a holding pattern at 500 ft above the highest ground level, orbiting the trainee within the FOV.

1-2. The scene depicts a US military aircraft from P-Spec in a holding pattern above the trainee with no distracting channel synchronization.

G.44 Critical X X

1. IOS Operator places the civilian ground vehicle P-Spec to the right of the trainee in the dome display (i.e.

furthest right channel in the dome).

2. IOS Operator causes the civilian ground vehicle to move in front of the trainee, across the dome to the left of the trainee in the dome display (i.e. furthest left channel in the dome).

(View entity crossing through multiple channels.)

1-2. The scene depicts a civilian ground vehicle from P- Spec crossing in front of the trainee with no distracting channel synchronization.

G.45 Critical X X G.4.1.2.2 The bias of the vertical FOV shall be selectable by the instructor or trainee, to a minimum shift of +/- 20 degrees for the entire dome view.

From either the IOS or Trainee station, the bias of the vertical FOV is shifted (by the instructor or Trainee), to a minimum of +/- 20 degrees.

The scene depicts a view shift of at least +/- 20 degrees.

G.1.10 Channel synchronization shall be non-distracting and shall not adversely affect the training task.

3.7.3.3.4.1

The JTC-TRS shall provide the capability to define and modify visibility. The visibility range shall be modifiable as a function of:

• Fog

• Haze

• Smoke

• Sandstorm

• Rain

• Snow glare, phase, and luminous moon disk including night star pattern (non-ephemeris); i) Diurnal Effects (cultural lighting, celestial objects cast cloud shadows for NVGs, cloud reflections for NVGs) across the sky), glare an night star pattern.

3.7.3.3.3.1

JTC TRS shall display an adjustable cloud deck selectable at 500 ft. increments. Cloud formations shall have 3D representation. Cloud layers shall present underneath views available in 1/8, 2/8, 3/8, 4/8, 5/8, 6/8, 7/8 and 8/8 coverage or a selectable percentage of entire sky.

Criticality Dome Desktop P-Spec Description

E.1 Critical X C.1.1 The PLRF-15C shall be capable of tracking positional and a full 360° Angular Range on all axes (X, Y, Z, Pitch, Yaw, Roll).

The Pocket Laser Range Finder (PLRF)-15C demonstrates capability of tracking positional and a full 360° Angular Range, reacting to all six degrees of freedom.

Internal Image Generator reacts accordingly to the movement of the device.

E.2 Critical X X C.1.2 The PLRF-15C shall simulate the ranging of targets within the SAF/CGF, from 5 meters out to 3 km.

1. Trainee fires PLRF-15C at foreign vehicle from P-Spec 5 meters away.

2. Trainee fires PLRF-15C at foreign vehicle from P-Spec 3 Kilometers away.

1. Range displays a 5 meter distance.

2. Range displays 3 Km with a margin of error at +/- 5 meters.

E.3 Critical X X C.1.3 The PLRF-15C shall be capable of being coupled with the Defense Advanced GPS Receiver (DAGR) to obtain target locations

1. The IOS Operator couples PLRF-15C with the Defense Advanced GPS Receiver (DAGR).

2. Trainee fires PLRF-15C at foreign vehicle from P-Spec located 5 meters from their location.

3. Grid Coordinates are then cross referenced with the foreign vehicle location at the IOS.

1. The PLRF-15C couples with the DAGR.

2. Grid coordinates of the foreign vehicle are displayed on the DAGR.

3. IOS displays coordinates (coordinates are accurate within +/-5 meters).

E.4 Critical X C.2.1 M22 Binoculars shall be capable of tracking positional and a full 360° Angular Range on all axes (X, Y, Z, Pitch, Yaw, Roll).

The internal Image Generator demonstrates capability of reacting on the M22 Binoculars to full 360º angular range on all 6 degrees of freedom (X, Y, Z, Pitch, Yaw and Roll)

Internal Image Generator reacts on the M22 Binoculars in full 360º angular range on all 6 degrees of freedom (X, Y, Z, Pitch, Yaw and Roll).

E.5 Non- Critical

X X C.2.2 M22 Binoculars shall simulate a 131 meter field of view at 1,000 meter range.

The IOS Operator places two (2) foreign vehicles from P- Spec 1000 meters away from the trainee’s location and spaces them 131 meters apart, linear.

Both foreign vehicles from P-Spec are visible within a single field-of-view.

E.6 Critical X X C.2.3 M22 Binoculars shall have simulated reticle for trainee(s) distance assessment.

Trainee looks through M22 Internal Image Generator depicts reticle.

E.7 Critical X X C.4.1 The LTD shall be capable of selecting and changing of the PRF code by the trainee.

1. Using the Laser Target Designator (GLTD II SOFLAM), the trainee inputs a Pulse Repetition Frequency (PRF) code of PRF Code.

2. Using the Laser Target Designator (GLTD II SOFLAM), the trainee changes the PRF code from PRF Code to PRF Code.

1. The Laser Target Designator depicts PRF Code of PRF Code.

2. The PRF code changes from PRF Code to PRF Code in the system.

E.8 Critical X X C.4.3 The Laser Target Designator (LTD) shall simulate a reticle for accurate target designation.

Trainee Looks through LTD Internal Image Generator depicts reticle.

E.9 Critical X X C.5.1 The AN/PRC-117G shall simulate plain text (non-secure) communications without faults or errors.

1. Using the Army/Navy (AN)/Portable Radio Communications (PRC)-117G, place communications in plain text (non-secure) mode.

2. Trainee transmits to the IOS/PSC.

1. The AN/PRC-117G depicts that Plain Text communications was selected.

2. IOS/PSC and trainee have clear voice communications without any faults or errors.

E.10 Non- Critical

X X C.5.2 The AN/PRC-117G shall simulate cypher text (secure) communications capabilities, including appropriate tones, beeps, delays and effects.

1. Using the AN/PRC-117G, the trainee switches voice communications from plain text (non-secure) to cypher text (secure).

2. Trainee transmits to the IOS/PSC.

1. The AN/PRC-117G depicts cypher text mode.

2. The IOS/PSC and trainee have clear and concise voice communications to include appropriate tones, beeps, delays, and effects associated with secure communications.

E.11 Critical X X C.5.3 The AN/PRC-117G shall support appropriate configurable channels/presets.

Utilizing the AN/PRC-117G, from either the IOS or the trainee area, configure the radio with the following presets:

a) Frequency

b) Frequency

c) Frequency

The AN/PRC-117G Frequency list updates, to reflect:

a) Frequency

b) Frequency

c) Frequency

X X C.5.4 The AN/PRC-117G shall be capable of being assigned to any channel/preset during scenario generation.

X X C.5.5

The AN/PRC-117G shall be configurable to all Ultra High Frequency (UHF), Very High Frequency (VHF) Amplitude Modulation (AM) (HI) and VHF Frequency Modulation (FM) (LO) frequency spectrums.

3.6.1.2 Configurable channels shall support simulation of both radio and digital communication networks.

3.6.1.3

Configurable channels, at a minimum, shall consist of:

a) Command Net

b) Command Net (one echelon above)

c) Fire Support Net

d) Tactical Air Direction Net (Strike Primary)

e) Tactical Air Direction Net (Strike Secondary)

f) Tactical Air Coordination Net

g) Air Force (Joint) Air Request Net

h) Tactical Air Control Party Administrative Net

3.6.1.4

Radio frequencies (UHF & VHF) shall be incremental in accordance with Appendix D and be set up to allow scanning, utilizing the same scan function controls seen on the actual radios.

EME Requirements

Test Setup: System shall be fully operational with the basic Afghanistan database (used to develop Scenarios 1-4) loaded. The IOS/PSC shall be manned and all required Emulated Military Equipment (EME) is running and available. IOS Operator places a foreign vehicle from P-Spec at 5 meters and at 3 Kilometers from the trainee’s location in the simulated environment.

Test Setup: System shall be fully operational with the basic Afghanistan database (used to develop Scenarios 1-4) loaded. The IOS/PSC shall be manned and all required Emulated Military Equipment (EME) is running and available.

E.12 Critical

1. Utilizing the AN/PRC-117G , the Trainee transmits to the IOS on frequency Frequency.

2. Trainee and IOS both change frequency preset from Frequency to Frequency.

3. Trainee transmits to the IOS on frequency Frequency.

4. Trainee changes from preset of Frequency to Frequency.

5. Trainee transmits to the IOS on frequency Frequency.

E.13 Critical X X

Inspect that the IOS, PSC, MVP, and JTAC have the required configurable channels available.

Able to facilitate (talk) two way radio communications between trainee station and IOS on all required channels (a-h). (Conduct sucessful radio check on all channels)

Specific identification of items (derived from the P-Spec) in bold underline will be provided at the time of test.

Test Point / Action Success Criteria

1-5: The AN/PRC-117G and IOS demonstrate clear and concise communications, and ability to transmit on identified UHF, VHF AM (HI) and VHF FM (LO) frequency spectrums.

Able to recieve radio transmissionss at the trainee station from the IOS on all scan list channels.

Conduct the scan function and ensure that it operates the same as the actual radio.

Inspect that the scan functions have the minimum options and they function as expected

3.6.1.5 Scan function controls shall be incorporated into each radio (see appendix C1 and C2) and accessible to the user(s) in the dome and at the combined workstation.

3.6.1.6

Scan function shall have, at a minimum, the following options

a) List of frequencies to be scanned

b) Priority receive and transmit nets

c) Hang time

d) Hold time

X C.9.1 The IZLID shall simulate an infrared laser, used by the trainee for target marking and execution.

X C9.2 The IZLID shall be viewed in the virtual environment with the use of NVGs.

X C9.3 The IZLID marker spot shall be capable of being viewed by the IOS.

X C9.4 The IZLID marker spot shall be capable of being viewed at the PSC.

E.14 Critical X C.10.1 Infrared strobes shall be capable of being activated in the simulated environment by the trainee at their preferred locations.

1. The IOS Operator places an IR Strobe.

2. The Trainee activates the IR strobe

1-2: The IR strobe is placed and activated.

E.15 Critical X C.10.2 Infrared strobes shall be viewed with use of NVGs by the trainee(s).

The Trainee views the IR strobe utilizing NVGs. The IR Strobe is visible by the Trainee using NVGs.

E.16 Critical X C.10.3 Infrared strobes shall be capable of being viewed at the

PSC.

The IR Strobe is visible at the Pilot Station Console (PSC). The IR Strobe is visible at the PSC.

X X C.11.1 The DAGR shall display the trainee’s current simulated local position and Time-of-Day in Zulu (Greenwich Mean Time).

X X C.11.2 The DAGR shall continuously update the trainee’s current local position as the trainee moves throughout the virtual environment.

X X C.11.3 The DAGR shall be capable of being coupled with the PLRF-15C for use in acquiring target locations.

X X C.11.4 The DAGR shall be capable of displaying both Military Grid Reference System (MGRS) and Latitude/Longitude (LAT/LONG) coordinate formats.

E.19 Critical X X C.12.1 VS-17 panels shall be capable of being placed in the simulated environment by the trainee at their preferred locations.

Trainee places VS-17 panel marker on the ground in the simulated environment.

Scene depicts a VS-17 within the simulated environment

E.20 Non-

Critical X X C.12.2

VS-17 panels shall be capable of being viewed at the PSC (e.g. viewed at medium-low altitude from either out-the-window or daylight EO targeting pod view).

Trainee places VS-17 panel marker on the ground in the simulated environment.

VS-17 is visible at the PSC.

E.21 Critical X X C.13.1 Smoke shall be available in no less than two colors (excluding black and grey)

The IOS Operator demonstrates smoke colors. A minimum of two smoke colors are depicted within the scene.

E.22 Critical X X C.13.2 Smoke color shall be selectable by either the trainee or the IOS.

By either the IOS or the trainee station, demonstrate the capability to select smoke color.

Smoke color is selectable by the IOS or Trainee.

E.23 Critical X X C.13.3 Smoke shall be capable of being employed in the simulated environment by the trainee at their preferred locations.

The Trainee employs smoke in the simulated environment.

The scene depicts smoke being employed by the Trainee.

X X C.14.1 The compass readout shall track simulated magnetic North in accordance with the terrain database and portray the trainee’s orientation within the simulator.

1. The IOS Operator verifies system is set for degrees magnetic North for compass use.

2. The Trainee orients the compass at:

- 090 degrees

- 180 degrees

- 270 degrees.

1. The IOS depicts degrees in magnetic North.

2. The correct Trainee compass orientation is depicted at the IOS, based on 090, 180, and 270 degrees.

X C.14.2

The digital compass display within the dome shall be selectable to allow the trainee or IOS to turn on/off.

During scenario, cycle through compass on and compass off Compass can be turned on and then off.

E.25 Critical X X 3.7.3.2.2

All trainee views, including Emulated Military Equipment (EME) Image Generator (IG) views, shall also be capable of being provided simultaneously to the Instructor as selectable views to allow the instructor to see what the trainee is seeing.

Utilizing EME from the P-Spec, the IOS Operator demonstrates capability to observe all Trainee views, including simultaneous (real-time) EME IG views.

The IOS depicts all Trainee views (EME and IG) in real-time.

E.24 Critical

E.13

Test Setup: System shall be fully operational with the basic Afghanistan database (used to develop Scenarios 1-4) loaded. The IOS/PSC shall be manned and all required Emulated Military Equipment (EME) is running and available. Scene is changed to night and all necessary visual system components (i.e. IR projectors) are fully operational.

1. The DAGR is coupled with the PLRF-15C.

2. Trainee fires PLRF-15C at the foreign military vehicle.

1. The DAGR is coupled with the PLRF-15C.

2. The DAGR displays coordinates of the foreign military vehicle in both LAT/LONG and Military Grid Reference System (MGRS) formats.

1. The IOS Operator places a foreign military vehicle at coordinates, and then couples the DAGR with the PLRF- 15C.

2. The DAGR is activated and illustrates Trainee's current position and time of day (in Zulu).

3. Trainee moves within the virtual environment.

1. The scene depicts a foreign military vehicle at the coordinates provided, and the DAGR and PLRF-15C coupled.

2. The DAGR is activated and displays current position and TOD (in Zulu)

3. DAGR depicts Trainee's updated position coordinates.

E.17

E.18

Critical

Critical

Critical

1. The IOS Operator places a target at a random location within the Trainee's FOV.

2. Trainee turns on the Infrared Zoom Laser Illuminator Designator (IZLID), fires at the target, and verifies that the Infrared (IR) spot is visible with Night Vision Goggles (NVGs).

3. The IR spot is tracked and viewable at the IOS and PSC.

1. The target is depicted in the dome, within the Trainee's FOV.

2-3. IZLID IR spot is viewable with NVGs, at the IOS and at the PSC.

Test Setup: System shall be fully operational with the basic Afghanistan database (used to develop Scenarios 1-4) loaded. The IOS/PSC shall be manned and all required Emulated Military Equipment (EME) is running and available. Scene is returned to day.

E.14 Critical X X

Criticality Dome Desktop P-Spec Description

S1.1 Non-

Critical X X 3.7.5.2

System shall have no intrinsic limit on the number of bookmarks. System shall be capable of creating a bookmark at any point during a live training session.

1. From the IOS, prior to execution of Scenario 1, set the system up so that a total of quantity bookmarks can be placed throughout the duration of the scenario.

2. During the scenario, the IOS drops a bookmark every number minutes.

1-2: A total of quantity bookmarks were placed and the IOS is capable of going back to bookmarks for review.

S1.2 Critical X X 3.3.2.5.1 JTC TRS shall enable the trainee to submit Joint Tactical Air Strike Request (JTAR) per AFI 13-112 V1 Table 2.1 Task 01.19.

Trainee transmits JTAR to IOS via voice communication system.

IOS has successful communications with trainee, and is able to effectively receive JTAR.

S1.3 Critical X X 3.3.2.7.2 JTC TRS shall enable the trainee(s) to receive aircraft check-in brief per AFI 13-112 V1 Table 2.1 Task 03.4.1.

From the PSC, aircraft role-player transmits aircraft check-in brief to the Trainee.

A-10s check in first, followed by F-16s.

Trainee and PSC have positive communications and the Trainee receives aircraft check-in brief ungarbled.

S1.4 Critical X X 3.3.2.8.1 JTC TRS shall enable the trainee(s) to execute procedural control of aircraft to provide safe separation of aircraft per AFI 13-112 V1 Table 2.1 Task 03.5.1.

Trainee de-conflicts aircraft via changes to altitude, lateral separation, and/or both (voice comms).

IOS/PSC updates to aircraft position(s) take effect.

X X 3.3.2.7.3 JTC TRS shall enable the trainee(s) to provide situation update to CAS aircraft per AFI 13-112 V1 Table 2.1 Task 03.4.2.

X X 3.3.2.6.3

JTC TRS shall enable the trainee(s) to integrate CAS missions with ground scheme of maneuver for traditional and irregular scenarios per AFI 13-112 V1 Table 2.1 Task 03.3.1.

X X 3.3.2.11.15 JTC TRS shall enable the trainee(s) to execute a CAS mission utilizing a FAC-A per AFI 13-112 V1 Table 5.1 Task 5.16.

S1.6 Critical X X 3.3.2.5.2 JTC TRS shall enable the trainee(s) to determine accuracy of target location per AFI 13-112 V1 Table 2.1 Task 03.2

Trainee determines target location via map/Grid Reference Graphics, DAGR/LRF, or aircraft sensor/talk-on.

DAGR displays accurate target coordinates (within 5m).

S1.7 Critical X X 3.3.2.5.3 JTC TRS shall enable the trainee(s) to transmit the proper coordinate format to desired weapon systems per AFI 13- 112 V1 Table 2.1 Task 03.2.

Trainee passes coordinates to aircraft/PSC (voice coms) and aircraft acknowledges with readback.

PSC and Trainee have effective communications, and target coordinates are passed.

S1.8 Critical X X 3.3.2.5.4 JTC TRS shall enable selection of available weapon system and adjust/change selections throughout the execution of a scenario as required to meet mission objectives.

1. From either the IOS or the PSC, change weapon configuration on the F-16 from 2x GBU-54 to 2x guided munition from P-Spec.

2. From either the IOS or the PSC, change weapon configuration on the F-16 from 2x guided munition from P-Spec back to 2x GBU-54.

1-2: Changes to loadouts take effect.

X X 3.3.2.6.4 JTC TRS shall enable the trainee(s) to integrate CAS missions with surface-based fires per AFI 13-112 V1 Table

2.1 Task 03.3.2.

X X 3.4.2.1.4 System sounds shall be representative of the entity type being emulated

X X 3.3.2.8.2 JTC TRS shall enable the trainee(s) to execute procedural control of aircraft to provide safe separation from fires per AFI 13-112 V1 Table 2.1 Task 03.5.2.

X X 3.8.4.2 The PSC shall have the ability to automatically fly a racetrack pattern, circular orbit, or an assigned heading and altitude as needed.

X X 3.3.2.7.4 JTC TRS shall enable the trainee(s) to provide CAS Brief per AFI 13-112 V1 Table 2.1 Task 03.4.3.

X X 3.3.2.7.5 JTC TRS shall enable the trainee(s) to provide weaponeering guidance to achieve desired effects per AFI 13-112 V1 Table 2.1 Task 03.4.4.

X X 3.3.2.10.1

JTC TRS shall enable the trainee(s) to control laser guided weapon system deliveries per AFI 13-112 V1 Table 2.1 Task 03.9.1., including the capability to specify and match laser Pulse Repetition Frequency (PRF) codes.

X X 3.3.2.10.2

JTC TRS shall enable laser guided munitions to acquire either the laser designator or the target based on the aircraft delivery orientation relative to the laser designator per Laser Designation Zones (JFIRE) .

X X C.4.2 The LTD shall be capable of providing target designation by the trainee, employing laser guided munitions.

S1.13 Critical X X 3.8.2.3

The PSC shall have a sensor view providing targeting information and situational awareness, not including aircraft radar, appropriate to the aircraft being controlled to include ability to set laser designation codes and ability to provide laser ranging and targeting and coordinate generation.

PSC successfully mis-sets weapon PRF code on lead aircraft.

Scenario 1 Requirements

Test Setup: System shall be fully operational with Scenario 1 loaded and a dynamic image on screen. The IOS/PSC shall be manned and ready to communicate with Trainee. The targets that will be used in this scenario will be a civilian ground vehicle with a quantity of dismounted personnel located at coordinate and a civilian ground vehicle with a quantity of dismounted personnel located at coordinate.

Specific identification of items (derived from the P-Spec) in bold underline will be provided at the time of test.

PSC executes 2-ship attack (6-nm trail formation, diving delivery), GBU-12 ground-based lase. PSC employs GBU- 12 and bomb guides long (miss). PSC transitions direct control from lead to wingman after first pass.

Wingman effectively engages target and PSC passes both

1. Trainee passes situation update to aircraft.

2. Trainee passes friendly position and composition as part of situation update in order to integrate Close Air Support (CAS) with the ground scheme of maneuver

3. Trainee briefs and utilizes A-10 Forward Air Controller- Airborne (FAC-A) in brief and mark capacity only.

1-3. PSC and Trainee have effective communications, with situation update and ground scheme of maneuver ungarbled.

1. Trainee directs aircraft out of artillery path via changes to altitude, lateral separation, and/or both (voice comms).

2. IOS/PSC updates aircraft position/altitude.

1-2. IOS/PSC updates to aircraft position(s) take effect.

1. From the IOS: Ground forces conduct fire mission utilizing 155mm artillery on designated target.

2. IOS (playing the role of artillery) provides fire mission data to Trainee.

1-2: Trainee receives artillery fire mission data. Artillery rounds/impacts are visible/audible/appropriate to Trainee and other role players.

Trainee passes 9 Line CAS Brief to US Military Aircraft from P-Spec (PSC).

US Military Aircraft from P-Spec (PSC) and Trainee have effective communications, and mandatory readbacks (lines 4,6,8 and restrictions) are ungarbled.

Test Point / Action Success Criteria

S1.5

S1.9

S1.10

S1.11

Critical

Critical

Critical

Critical

S1.12 Critical

Trainee sets Laser Target Designator PRF code to 1511 and places reticle on target.

PRF code updates take effect, and match is verified between Trainee and aircraft.

X X 3.8.3.7

The PSC shall support simulation of a two aircraft flight attack, whereas the pilot would control lead aircraft, then assume control of the trailing aircraft, to control both target executions as directed by the trainee(s). The pilot, via the PSC, can control either aircraft of a two aircraft attack group and be able to split the formation if needed and direct the action of the other aircraft back to computer control until formations are rejoined.

X X 3.8.3.5 The PSC shall have the capability of controlling up to a four aircraft flight attack (i.e., two or four ship).

S1.15 Non-

Critical X X 3.8.3.8

The PSC shall be capable of specifying following distance of trail aircraft to facilitate adjustments from lead aircraft’s attack, or direct wingman to hold at appropriate location for single aircraft attack.

PSC/IOS successfully sets 2-ship attack to 6-nm separation between aircraft.

S1.16 Critical X X 3.4.3.1.12

The SAF/CGF shall determine the level of damage to an entity (in non-networked mode) based on types of weapons/force used, and shall be consistent with damage states viewed in the visual scene. In addition to the primary undamaged entity states, models shall possess the ability to have multiple damage states to include Mobility Kill, Weapons Kill, and Catastrophic Kill, as appropriate (See Appendix B – Glossary).

1st Attack: Target undamaged (weapon miss).

2nd Attack: Target destroyed.

S1.17 Non-

Critical X X 3.7.3.3.5

Natural environment wind conditions shall affect smoke, dust, clouds, precipitation and parachute or other entities such as retarded weapons or illumination flares.

Dust cloud (from destruction of target) moves appropriately with wind direction.

X X 3.4.2.1.4 System sounds shall be representative of the entity type being emulated.

X X 3.4.2.1.1

JTC TRS shall provide audio cues for:

a) Friendly personnel (to be treated as indiscernible background noise)

b) Enemy personnel (e.g. shouted commands to be treated as indiscernible background noise)

c) Vehicles

d) Aircraft

e) Detonations

f) Weapons

S1.19 Critical X X 3.4.2.1.2 All sound effects shall be consistent with distance and direction from the trainee’s location and orientation of the sound effect source.

Passively observe and verify throughout the scenario that sound effects are consistent with distance and direction of sound effect source.

Sound effects are consistent with distance and direction of sound effect source.

S1.20 Critical X X 3.4.2.1.3 System shall simulate audio effect degradation due to terrain effects shielding and audio line of sight.

Passively observe and verify throughout the scenario that sound effects are consistent with degradation due to shielding from audio line of sight.

Sound effects are consistent with degradation due to shielding from audio line of sight.

S1.21 Critical X X 3.3.2.11.16

JTC TRS shall respond appropriately to all JTAC Brevity Codes (JFIRE and JP 3-09.3) via interaction from either the Instructor/Operator Station (IOS) or Pilot Station Console (PSC). The codes include “Abort,” “Cleared Hot,” “Cleared to Engage,” “Continue,” and “Continue, Dry” commands.

Trainee transmits Abort,” “Cleared Hot,” “Cleared to Engage,” “Continue,” and “Continue Dry" prior to weapons release.

Trainee has effective communications with IOS/PSC to transmit clearance, and IOS/PSC takes appropriate action.

S1.22 Critical X X 3.3.2.13.1 JTC TRS shall support a full CAS mission.

Communications initiated at scenario start Communications last the duration of the scenario without failure of system.

Note: This requirement is met by the completion of this scenario as long as voice communications last the duration of the scenario without failure.

S1.23 Critical X X 3.7.3.1.7 The IOS shall provide a visual and/or aural notification when the trainee(s) has been destroyed by the enemy or fratricide.

From the IOS, command artillery fire to impact on friendly/Trainee position.

System provides visual and/or aural cue of Trainee destroyed.

S1.24 Critical X X 3.7.5.1 The IOS shall be capable of recording a scenario file of up to 2 hours of continuous operation per scenario.

2 hour recording verified.

** Additional supplemental testing may be required to ensure 2-hr timeframe is met during Day 1.**

S1.25 Critical X X 3.7.5.3

The AAR shall contain all scenario activity (i.e. database, entity behavior, communications, etc.) required to review trainee performance, including stealth-view from any perspective within the local mission environment.

Complexity of key AAR elements, to include stealth-view, verified.

S1.26 Critical X X 3.7.5.4

The IOS shall be able to produce an AAR within 30 minutes following the completion of a training event for use within the JTC TRS or downloaded to portable media for use on other compatible training systems.

AAR is produced and ready for play-back within 30 minutes.

S1.27 Critical X X 3.7.5.6

The IOS shall have the capability to perform the following operations to review a recorded scenario:

a) Start

b) Stop

c) Fast forward

d) Variable-speed reverse

e) Pause

f) Jump to bookmark

g) Jump to a specified time

h) Reposition eye-point

i) Re-play from start

AAR operations and play-back functions verified

After Action Review (AAR) of Scenario 1 conducted to verify AAR meets these requirements.

Wingman effectively engages target and PSC passes both aircraft back to automatic (IOS) control after second attack.

Verify audio cues (Friendly personnel, enemy personnel, vehicles, aircraft, detonations and weapons) are appropriate.

Test Setup: System shall be fully operational and ready to conduct After Action Review (AAR) of Scenario 1.

Critical

Audio cues are appropriate.

S1.18

S1.14 Critical

PSC successfully transitions direct control from lead to wingman after first pass.

S1.28 Non-

X X 3.7.5.7

To facilitate clear images during AAR and other playback scenarios, the IOS shall be capable of selecting or deselecting the simulated natural environment effects generated in a scenario for recording playback and AAR.

For example, night time operations must be able to be reviewed in a daytime setting to ensure operation clarity.

Scenario 1, AAR playback successfully switched from day to night.

** Additional supplemental testing may be required to ensure other environmental effects can be removed/added.**

S1.29 Non- Critical

X X 3.7.4.3.1 The IOS shall have the capability to produce training feedback reports when requested by the instructor.

Feedback report is generated.

S1.30 Non- Critical

X X 3.7.4.3.2

The feedback reports shall document training performance and provide feedback for trainee improvement and include weapons engagement, hits, misses, kills, battle damage assessment, ammunition expended, and the distance between the target and the ordnance impact point.

Feedback report contains details of mission performance, as specified.

Criticality Dome Desktop P-Spec Description

X X 3.3.2.3.4 JTC TRS shall execute target acquisition via remote real-time sensor information per AFI 13-112 V1 Table 2.1 Task 03.1.1.4.

X X C.8.1 The ROVER/FMV device shall be capable of appropriately simulating targeting pod views in FLIR-White-Hot, Black- Hot, and Daylight EO.

X X 3.7.3.1.9

The IOS shall have the capability to add digital and analog noise/interference to the ROVER feed without affecting other VRSG channels. The IOS shall provide two noise modes:

a) Auto noise: Noise levels to be determined by line of sight (LOS) considerations and impacted by distance to source signal and atmospheric effects

b) Instructor selected noise: A slider selection to determine level of noise – 0% to 100%

Conduct downgraded ROVER feed through selected noise options a) and b) a: The ROVER shall demonstrate downgraded feed at a predetermined distance or LOS impairement. b: The ROVER shall demonstrate downgraded feed when selected by the IOS or at the Instructor Station

X X 3.7.3.1.10

The IOS shall have the capability to replicate a Synthetic Aperture Radar (SAR) picture based on aircraft selected.

The SAR picture shall be realistic and include selectable map sizes typical of the selected aircraft.

Inspect the SAR picture at the IOS. IOS pulls up SAR from selected aircraft. The SAR is slewed to passed grid representing coresponded map location.

Student station is transmitted appropriate SAR picture.

Succesful talk-on to pilot accurs using SAR.

SAR picture is selectable at IOS and is a realistic representation of that provided by aircraft type.

X X 3.8.2.2

The PSC shall have a targeting pod sensor view capable of appropriately simulating switchable Forward Looking Infrared (FLIR)-White Hot, FLIR-Black Hot, and Daylight Electro-Optical (EO). Targeting Pod views shall also be provided to the emulated Remotely-Operated Video- Enhanced Receiver (ROVER) device.

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