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Development of Network Clock Ensemble for Positioning, Navigation, and Timing

Department of Defense (DoD)Sol: FA2377-26-R-B014
TBD
est. $850K – $2.5M

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The response deadline has passed. Review the details for future reference or to track similar opportunities.

Quick Brief

The Department of Defense is procuring the development of a network clock ensemble and its implementation on a VPX card capable of running pntOS. The project requires the creation of a robust ensemble algorithm for dynamic environments and a resilient network method for disseminating timing information. The effort will culminate in simulated, lab, and flight tests to demonstrate the prototype card's capabilities.

Generated 13d ago

Scope & Requirements

Develop a network clock ensemble algorithm and implement it on a modified COTS 3U VPX card to support pntOS, including the design of a resilient network dissemination method.

Deliverables

  • Prototype cards
  • Networking methods
  • Ensemble algorithm
  • Simulated, lab, and flight test results

Contract Details

Contract Type
TBD
Estimated Value
est. $850K – $2.5M
Similar contracts award $119K to $1.1M (median $352K, 69,621 awards)Above typical range
Period of Performance
10 JULY 2026
NAICS Codes

Agency & Contact

Contracting Organization

Agency
DEPT OF DEFENSE

Point of Contact

John A. Smith
Contracting Officer
(202) 555-0100

Key Dates

Intent to Propose due24d ago
Jul 1, 20263:00pm EDT
Published15d ago
Jul 10, 2026
Became Presolicitation14d ago
Jul 10, 2026
Tracked
Last Updated12d ago
Jul 12, 2026
Response Due7d ago
Jul 17, 2026

Description

This amendment adds a Q&A attachment The

objective for PENCAP is the development of a network clock ensemble and the implementation of it on a VPX card capable of running pntOS. Prototype cards, networking methods, and an ensemble algorithm will be delivered to the Government for further development and testing. The ensemble algorithm will be designed to be robust in dynamic environments, continuously evaluating both local and remote timing references for stability, trustworthiness, and source validity. It will incorporate a weighting system, allowing references to enter and exit the ensemble without disrupting it, and will feature outlier rejection to discard invalid or unstable measurements, ensuring a consistently accurate time. To support the ensemble algorithm, a resilient network method will be designed to disseminate timing and stability information. This network will utilize various existing communication links on aircraft and can be configured in multiple ways, such as point-to-point or hub-and-spoke. The system will be designed to authenticate new nodes that join the network, ensuring the traceability and integrity of all connections. The ensemble algorithm and network method will be implemented on a prototype card. This will involve modifying a Commercial-Off-The-Shelf (COTS) 3U VPX card to function with pntOS. The design will emphasize open standards for both data and physical interfaces to simplify future integration and upgrades. The project will culminate in a series of simulated, lab, and flight tests to demonstrate the card's full capabilities. Please see

attachments for additional information. Intent to Propose due

1 July 2026, 3:00pm, EDT Gabriel Berner Alternative

Point of Contact Kathryn Skaleski to this opportunity. PENCAP_QA.pdf 2-Step ARA_PENCAP_Final.pdf Attachment 1 - Placeholder Statement of

Objectives (SOO).pdf Attachment 2 - SOW Supplemental

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