M-2-SUPPLEMENTAL AND EME TEST POINTS - DRAFT.pdf

PDF 141 KB Posted

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

About this file

This document outlines requirements for a federal contract to procure and support Joint Terminal Control Training and Rehearsal Systems (JTC TRS). The contract will continue an existing program to purchase upgradable mission simulation systems for JTC TRS and Joint Air Ground Integration of Sensor Systems (JTAGSS) for joint service training of personnel. For JTC TRS sites, government and military personnel will conduct training, perform minor maintenance, and provide limited upgrade support. Contractor field support will be provided as needed or scheduled. For JTAGSS sites, contractors will operate the systems for training, perform maintenance, and install approved configuration changes. Contractors must also provide spare parts, repair support through a logistics process, and maintain system currency via a Training System Support Center to meet repair time requirements and performance specifications. The soliciting agency is the Department of the Air Force Materiel Command Lifecycle Management Center located at Wright Patterson Air Force Base.

View the file

Other files for this federal contract opportunity

Other files attached to Joint Terminal Control Training and Rehearsal System (JTC TRS) Program, newest first.
File Type Posted
JTC TRS Q and A Matrix FINAL.pdf PDF
JTC TRS CDRL Follow On Pkg Draft - 12 Feb 2020.pdf PDF
JTC_TRS General Instructions 20200221.pdf PDF
Attachment 5-DD254.pdf PDF
JTC TRS Draft RFP Q&A Matrix Template.xlsx XLSX spreadsheet
FA8621-20-R-0003_Contract Terms.pdf PDF
Attachment 10-DDForm 1653 JTC TRS.pdf PDF
Attachment 13-Cross Reference Matrix.docx DOCX document
Attachment 4-Trainer Repair Clause.pdf PDF
Software Database H Clauses.pdf PDF
Attachment 12_SECTION_M_Draft.pdf PDF
Attachment 7-Asset List_05 Nov Update.pdf PDF
Attachment 6-IUID JTC TRS.pdf PDF
M-6-SCENARIO 4 DESCRIPTION AND TEST POINTS.pdf PDF
Attachment 3_Draft Price Matrix.xlsx XLSX spreadsheet
Attachment 2-JTC-TRS FoS P-Spec 1.0 Jan 2020.pdf PDF
Attachment 11_SECTION_L_Draft.pdf PDF
L-2-Consent Letter.docx DOCX document
Attachment 9-AFMCForm158 JTC TRS.pdf PDF
L-1_Past Performance Questionnaire.docx DOCX document
M-3-SCENARIO 1 DESCRIPTION AND TEST POINTS - DRAFT.pdf PDF
Attachment 8-GFP List.pdf PDF
M-4-SCENARIO 2 DESCRIPTION AND TEST POINTS - DRAFT.pdf PDF
M-1-SET PLAN and TEST POINTS - DRAFT.pdf PDF
Attachment 5-DD254.pdf PDF
L-4_PPI Tool.docx DOCX document
M-5-SCENARIO 3 DESCRIPTION AND TEST POINTS - DRAFT.pdf PDF
L-3-Client Authorization Letter.docx DOCX document
Attachment 1-JTC_TRS_PWS_PWS.pdf PDF
Draft RFP Cover_Letter.pdf PDF
Show all 30

On GovTribe

Work with this file on GovTribe

  • Download the original file
  • Contacts named in this file
  • Similar government files
  • Ask GovTribe AI about this file

Text version

Test

Point # Criticality Dome Desktop P‐Spec Description

X X 3.10.4.1

JTC TRS shall include diagnostic software that tests the operation of the hardware, software and peripheral equipment, identifying faults and failures to support attainment of the defined system availability parameters.

X X 3.10.4.3 Diagnostic software shall have operational readiness test/check program(s) executable from the IOS.

X X 3.10.4.2

Diagnostic software shall include system load monitoring and checks, and virus detection and elimination software.

X X 3.7.1.5 The IOS shall have a built in HELP feature for basic system operation.

SUP.3

Non‐

Critical X X 3.7.1.6.1

The IOS shall have multiple user access profiles providing restricted privileges for administrators, instructors, and operators.

The IOS Operator logs onto system and demonstrates varying levels of profile authorizations.

The IOS depicts a different profile privileges and restrictions for administrators, instructors, and operators.

SUP.4

Non‐

Critical X X 3.7.1.6.3 The operator access levels shall have default settings.

The IOS Operator profile demonstrates default settings. The IOS Operator profile has default settings.

SUP.5

Non‐

Critical X X 3.7.1.6.4

The operator access levels shall be editable, by the administrator, at the local level, only.

The IOS Operator demonstrates that his/her profile can only be changed by an administrator.

The IOS Operator demonstrates that operator access levels can only be changed by a local administrator.

SUP.6 Critical X X 3.7.3.1.5

The IOS shall have the capability to begin a training session within 5 minutes after selection of databases and scenario.

The IOS Operator loads Scenario 1. Training session and database are loaded within 5 mins.

SUP.7 Critical X X 3.7.3.1.1 The IOS shall start, stop, pause and restart a live, non‐ networked training scenario.

1. The IOS Operator will Pause the scenario after 2 minutes from beginning, then resume at discretion of test team.

2. The IOS Operator will Stop the training session after

3 minutes from the beginning (1 minute after resumption from pause).

3. The IOS Operator will Exit Scenario 1.

4. The IOS Operator will re‐Load Scenario 1.

1‐4. The IOS Operator demonstrates ability to start, stop, pause and restart a live, non‐networked training scenario

SUP.8 Critical X X 3.4.3.1.17

Aircraft associated weapon systems and weapon loads shall be assignable and provide the option to store and reuse pre‐defined (from pre‐mission brief or system database) Standard Conventional Loads (SCLs) to include mixed munitions loads on individual aircraft.

1. The IOS Operator confirms Scenario 1 is loaded.

2. The IOS Operator verifies A‐10s are loaded with

2xGBU‐12, 2xAGM‐65, Gun.

1‐2. Capability to store, and reuse pre‐defined SCLs, to include mixed munition loads is demonstrated.

SUP.9

Non‐

Critical X X 3.8.2.4

The PSC shall provide a correlated visual display view of the mission area from zero up to and including 40K feet.

1. The IOS Operator loads 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.

2. The PSC displays aircraft cockpit window view of the target from zero to 40K feet.

3. The PSC displays a targeting pod sensor view from zero to 40K feet.

4. The PSC displays the JTC TRS dome view.

1‐4. The PSC displays a correlated visual display from 0 to 40K feet.

X X 3.3.2.3.1

JTC TRS shall execute target acquisition via aided or unaided day vision per AFI 13‐112 V1 Table 2.1 Task

03.1.1.1.

X X 3.4.3.1.4

Entity details shall be sufficient for detection, orientation, recognition, and identification as well as battle damage assessment by the trainee(s).

X X 3.3.2.3.1

JTC TRS shall execute target acquisition via aided or unaided day vision per AFI 13‐112 V1 Table 2.1 Task

03.1.1.1.

X X 3.4.3.1.4

Entity details shall be sufficient for detection, orientation, recognition, and identification as well as battle damage assessment by the trainee(s).

SUP.12

Non‐

Critical X X 3.5.1.2

The trainee(s) must be portrayed as an entity in the threat environment and shall be discernible to other entities in the virtual environment for the trainee(s) to maintain awareness of covertness of their position and to permit engagement of/by enemy forces should concealment be lost.

1. View the Trainee at the IOS.

2. Place the Trainee's ICON at the IOS in a place of concealment.

3. Move the Trainee ICON to a place of non‐ concealment near the enemy forces.

1. Trainee is available and the Trainee ICON is discernible from all other entities at the IOS.

2. Trainee is in a place of concealment and the enemy is not attacking the Trainee.

3. Trainee is moved to a location of non‐concealment and enemy forces engage the Trainee.

X 3.3.2.3.2

JTC TRS shall execute target acquisition via aided or unaided night vision per AFI 13‐112 V1 Table 2.1 Task

03.1.1.2.

X 3.4.3.1.4

Entity details must be sufficient for detection, recognition, and identification as well as battle damage assessment by the trainee(s).

SUP.13

(UNAIDED)

1. From the IOS, change the scene to night and place a

1 x 3 meter high target 500 meters from the Trainee’s location.

2. From the IOS, place a 1 x 3 meter high target 1000 meters from the Trainee’s location.

(AIDED)

3. Trainee dons NVGs.

Close Scenario 1

Without the use of NVGs (UNAIDED):

1‐2: Trainee is unable to detect either the target at 500 meters or 1000 meters.

(AIDED)

3. Trainee is able to detect the target at 1000 meters.

Trainee is able to recognize the target at 500 meters.

SUP.10 Critical

(UNAIDED)

1. From the IOS, place a 1 x 3 meter high target 3000 meters from the trainee’s location.

2. From the IOS, place a 1 x 3 meter high target 1500 meters from the trainee’s location.

3. From the IOS, place a 1 x 3 meter high target 1000 meters from the trainee’s location.

Without the use of optics (UNAIDED):

1. Target at 3000 meters is detectable by the trainee.

2. Target at 1500 meters is recognizable by the trainee.

3. Target at 1000 meters is identifiable by the trainee.

1‐3. Target details are sufficient for detection, orientation, recognition, and identification as well as battle damage assessment by the trainee .

SUP.11 Critical

(AIDED)

1. From the IOS, place a 1 x 3 meter high target 6000 meters from the trainee’s location.

2. From the IOS, place a 1 x 3 meter high target 4000 meters from the trainee’s location.

3. From the IOS, place a 1 x 3 meter high target 2000 meters from the trainee’s location.

With the use of binoculars (AIDED):

1. Target at 6000 meters is detectable by the trainee.

2. Target at 4000 meters is recognizable by the trainee.

3. Target at 2000 meters is identifiable by the trainee.

1‐3. Target details are sufficient for detection, orientation, recognition, and identification as well as battle damage assessment by the trainee.

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

Supplemental Requirements Test Point / Action Success Criteria

Test Setup: System shall be fully operational with "Scenario Name" loaded. The IOS/PSC shall be manned.

Test Setup: System shall be fully operational. The IOS/PSC shall be manned.

Test Setup: System shall be fully operational with Scenario 1 loaded. The IOS/PSC shall be manned.

SUP.1 Critical

1. The IOS Operator verifies all system components are up and operational to include software and peripherals.

2. The IOS Operator will utilize the diagnostic software and run a system check.

1‐2. The diagnostic software depicts system status.

SUP.2 Critical

1. The IOS Operator displays diagnostic software feature.

2. The IOS Operator displays help feature.

1‐2. The IOS depicts a diagnostic software feature (that includes, load monitoring, checks and virus detection and elimination) and a help feature.

Critical

SUP.14

Non‐

Critical X X 3.7.1.1

The IOS shall provide the instructor/operator with an effective environment in which to support the JTC TRS simulation system (e.g., private instructor to trainee(s) communication capability, allow instructor to observe trainee(s)).

1. The IOS Operator communicates with the Trainee via the AN/PRC‐117G.

2. The IOS Operator demonstrates capability to observe Trainee(s) from the IOS.

1. The Operator and Trainee are able to communicate via the AN/PRC‐117G.

2. The Operator can observe Trainee(s) from IOS.

SUP.15 Critical X X 3.4.3.2.4

The SAF/CGF shall have an editor function capable of adding and modifying entities, units and behaviors in addition to those identified in Appendix E to support future mission requirements.

1. The IOS Operator ensures Trainee is loaded into environment.

2. IOS Operator loads three (3) personnel from P‐Spec with weapons from P‐Spec in neutral posture.

3. Change three (3) personnel from P‐Spec from neutral posture to aggressive posture. Personnel from

P‐Spec engage the Trainee with weapons from P‐Spec.

1. Trainee is loaded into environment.

2. Scene in dome depicts three (3) personnel from P‐

Spec with weapons from P‐Spec in neutral posture.

3. Scene in dome depicts change in behavior of personnel from P‐Spec engaging Trainee with small arms fire.

SUP.16

Non‐

Critical X X 3.7.3.1.4

The simulator shall be able to “flyout” from any snap point and continue training at the instructor’s discretion.

1. The IOS Operator will create two snap points.

2. The IOS Operator will conduct a "flyout" from snap point 1.

3. The IOS Operator will conduct a "flyout" from snap point 2.

1‐3: The IOS Operator demonstrates ability to conduct

"flyouts" from snap points within scenario.

SUP.17 Critical X X 3.7.3.1.3

The instructor shall have the capability to reposition trainee eye‐point and provide instruction as required to reinforce training.

The IOS Operator repositions the Trainee eye‐point. The scene depicts a different location for the Trainee's eye‐point.

SUP.18 Critical X X G.1.22.1 The visual system shall support stealth views of the mission environment.

1. The IOS Operator selects "Stealth view” mode.

2. The IOS Operator changes to a different viewpoint.

Delete all entities from scenario.

1. “Stealth view” is depicted at IOS.

2. Multiple viewpoints as changes are made at the IOS.

SUP.19

Non‐

Critical X X 3.4.3.1.19

The SAF/CGF shall have the capability to aggregate and disaggregate entities [e.g. crowds normally disperse by disappearing into the surrounding environment (woods, buildings, farm lands, etc.). They may become combatants before or after they disperse. Enemy convoys could disperse into the available cover after initial attack.]

1. The IOS Operator will generate six (6) civilian personnel at one location and four (4) military personnel at a second location.

2. The IOS Operator will generate three (3) enemy vehicles of choice from P‐Spec, to form an enemy convoy.

3. The IOS Operator has enemy convoy appear at a visual distance relative to the crowds.

4. The IOS Operator has crowds scatter into surrounding environment.

5. The IOS Operator has enemy convoy disperse.

Delete all entities from scenario.

1. The scene depicts two (2) crowds of individuals.

2‐3. The scene depicts an enemy convoy of three (3) vehicles at a distance visible to the crowds.

4‐5. The scene depicts crowds scattering as convoys come into site; followed by convoy dispersing.

SUP.20 Critical X X 3.4.3.1.20

The SAF/CGF shall have the capability to control ground entities from the individual to multiple platoons for a company size force. Groups of entities shall be taskable by the SAF/CGF at the group level, and at the individual entity level.

1. The IOS Operator will load three (3) platoons to form a company.

2. The IOS Operator will select an individual entity from the company and give command to fire his/her weapon.

3. The IOS Operator will separate the company into two

(2) groups and move them to two (2) near‐by locations.

Delete all entities from scenario.

1. The scene depicts a company of three (3) platoons.

2. The scene depicts a random individual from the company firing his/her weapon.

3. The scene depicts the company breaking into two groups.

SUP.21 Critical X X 3.4.3.1.21

The SAF/CGF shall have the capability to control both individual and group movement and behaviors, to include non‐combatant/civilian and combatant. Threat, friendly, and civilian personnel shall be incorporated into the same simulation to provide shoot‐no‐shoot events.

1. The IOS Operator will generate three groups:

‐ 5 enemy

‐ 5 civilian

‐ 5 US Military personnel

The IOS Operator will load M‐4s to all US Military personnel and AK‐47s to 5 enemy personnel.

2. The IOS Operator will select two (2) enemy and two

(2) US Military personnel, and give command to perform shoot actions at each other.

3. The IOS Operator gives command to have civilian personnel disperse.

4. The IOS Operator gives command for ALL US Military personnel to fire weapons towards enemy personnel.

Delete all entities from scenario.

1. The scene depicts three groups of personnel

(enemy, civilian and US Military).

2‐3. The scene depicts two (2) US military entities firing at two (2) enemy entities; while civilians disperse.

4. The scene depicts all US Military personnel firing on the enemy.

SUP.22 Critical X X 3.8.1.2

The PSC shall allow an operator with limited aircraft knowledge to fly aircraft (using aircraft Tactics, Techniques, and Procedures (TTPs)) in the virtual environment following the direction of the trainee(s) during a CAS mission. The PSC will provide navigation, weapon steering and release cues in addition to Heads

Up Display (HUD)‐displayed attitude, altitude, heading and airspeed information required to properly fly the aircraft in attack profiles.

1. The IOS Operator loads an F‐16 with 1xGBU‐38 to the

IOS.

2. The IOS Operator enables the PSC to interact and operate within the simulated environment as a separate subsystem.

3. The PSC HUD display includes attitude, altitude, heading and airspeed information.

4. The PSC Operator flies aircraft and releases GBU‐38 utilizing HUD information.

1‐4. The simulator system demonstrates ability of an

Operator at the PSC to fly the aircraft and employ munition, utilizing the HUD for attitude, altitude, airspeed, and heading information.

SUP.23 Critical X X 3.8.2.1

The PSC shall have a slewable field of view with appropriate Heads‐Up Display (HUD) symbology in the forward view, targeting information and simulated

Night Vision Goggle (NVG) capabilities.

1. The IOS Operator enables the PSC to interact and operate within the simulated environment as a separate subsystem.

2. The PSC Operator has a Heads‐Up Display (HUD) visible.

3. The IOS Operator changes the scene to night.

4. Utilizing simulated Night Vision Goggle (NVG) capabilities, the PSC Operator confirms HUD is visible.

The IOS Operator changes the scene back to day.

1. The PSC is enabled and an F‐16 aircraft is depicted within scene.

2‐4. The HUD display is visible at the PSC and the operator can read display utilizing simulated NVG.

SUP.24 Critical X X 3.8.2.7 A map view display of the mission area shall be selectable at the PSC

1. The IOS Operator enables the PSC to interact and operate within the simulated environment as a separate subsystem.

2. The PSC Operator selects a map from the map view feature.

1‐2: The PSC displays a Map View.

SUP.25 Critical X X 3.4.3.1.3

The SAF/CGF shall encompass, at a minimum, the entities listed in Appendix E and F of this specification.

If multiple variants of a listed entity are available, a minimum of two variants must be available to the IOS operator. All models provided must support CAF DMO

Common Model Standards to include correct appearance bits and articulated parts.

The IOS Operator loads entities/models from

"Attachment 7: System Evaluation Test Model‐

Ordnance‐Entity List" and demonstrates articulation, where appropriate.

All models, ordnance and entities from Attachment 7 are displayed and have appropriate articulations.

Test

Point # Criticality Dome Desktop P‐Spec Description

E.1 Critical X 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 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.

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.

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.

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.

E.12 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. 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.

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.

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

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.

E.24 Critical 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.

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.

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

Supplemental Test Points - DRAFT
EME Test Points - DRAFT

File details come from the government source that posted it. Updated .