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Special Notice Expired 3 notices

Software Licensing Opportunity: GLASS Software for Real-Time Optimization of Power Transmission Capacity CW-19-22

Solicitation CW-19-22 Copied Notice ID 304a59170ac248a78746cc8bb9a53f60 Copied ENERGY, DEPARTMENT OF — BATTELLE ENERGY ALLIANCE–DOE CNTR
SAM.gov
Posted
Feb 03, 2026
Deadline
Mar 10, 2026
Set-aside
None
NAICS
221118
PSC
DA10

Summary

AI-generated · Sep 28, 2025

GLASS is a software-only, plug-and-play platform for real-time dynamic line rating that calculates the current-carrying capacity (ampacity) of overhead transmission lines. It combines weather data, line current data, and CFD-based modeling to determine real-time and forecasted ampacity, extrapolating across unmonitored spans with minimal inputs. Output is standardized text files that seamlessly integrate with existing utility systems, and the solution is validated against IEEE and CIGRE standards for steady-state and transient ampacity, including its True Dynamic Line Rating. It can enable higher line ratings—up to about 40% above conservative static limits—while reducing monitoring infrastructure costs and avoiding hardware-heavy deployments.

Market-ready to utilities, grid operators, and software vendors, GLASS is designed to work with any utility-grade data historian or enterprise system and requires no dense sensor network. The licensing opportunity targets software access and integration capabilities to incorporate GLASS into existing platforms or deploy it directly, with the intent of improving real-time grid utilization and enabling greater renewable integration through software-only dynamic line rating.

GLASS Software for Real-Time Optimization of Power Transmission Capacity Dynamic line rating software that enables utilities to safely increase transmission capacity without costly hardware expansion. Technology Summary The General Line Ampacity State Solver (GLASS), developed by Idaho National Laboratory (INL), is a high-performance software platform designed to calculate the real-time current-carrying capacity of overhead power transmission lines. By integrating weather data, line current data, and computational fluid dynamics (CFD) modeling, GLASS provides utilities with accurate, actionable insight into the thermal state of their transmission network. Unlike hardware-heavy solutions requiring dense networks of weather stations or specialized sensors, GLASS leverages a minimal number of data inputs and extrapolates across unmonitored spans using CFD-enhanced mapping. The system outputs results in a simple, interoperable format compatible with virtually any utility enterprise system. Since 2014, GLASS has evolved to compute steady-state ampacity, transient temperature, transient ampacity, and INL s proprietary True Dynamic Line Rating, validated against industry standards (IEEE, CIGRE). Problem Addressed Transmission bottlenecks: Utilities face congestion and efficiency losses due to static line ratings that underestimate real capacity. High costs of monitoring: Installing weather stations or hardware sensors along every line span is prohibitively expensive. Integration challenges: Many dynamic line rating (DLR) solutions require proprietary hardware or external portals, complicating adoption. Solution GLASS provides a software-only, plug-and-play solution that: Uses limited real-world weather and current data inputs. Applies precomputed CFD models to extend accuracy across unmonitored spans. Calculates real-time and forecasted ampacity values to maximize grid utilization. Outputs standardized text files easily integrated with existing utility systems. Key Advantages Higher capacity utilization: Can enable line ratings up to 40% above conservative static limits. Lower infrastructure costs: Reduces need for dense weather station deployment. Seamless integration: Simple, agnostic input/output formats support adoption without system overhauls. Proven reliability: Validated through years of testing and alignment with IEEE and CIGRE standards. Flexible deployment: Works with any utility-grade data historian or enterprise system. Market Applications Electric utilities: Enhance grid flexibility, reduce congestion losses, and safely integrate renewable energy. Grid operators: Improve real-time situational awareness and operational decision-making. Software vendors: Incorporate GLASS as a dynamic line rating module within existing platforms (e.g., OSIsoft PI). Renewable integration: Support greater use of wind energy by capturing wind cooling effects on lines.

From Special Notice posted on Sep 22, 2025

GLASS Software for Real-Time Optimization of Power Transmission Capacity Dynamic line rating software that enables utilities to safely increase transmission capacity without costly hardware expansion. Technology Summary The General Line Ampacity State Solver (GLASS), developed by Idaho National Laboratory (INL), is a high-performance software platform designed to calculate the real-time current-carrying capacity of overhead power transmission lines. By integrating weather data, line current data, and computational fluid dynamics (CFD) modeling, GLASS provides utilities with accurate, actionable insight into the thermal state of their transmission network. Unlike hardware-heavy solutions requiring dense networks of weather stations or specialized sensors, GLASS leverages a minimal number of data inputs and extrapolates across unmonitored spans using CFD-enhanced mapping. The system outputs results in a simple, interoperable format compatible with virtually any utility enterprise system. Since 2014, GLASS has evolved to compute steady-state ampacity, transient temperature, transient ampacity, and INL s proprietary True Dynamic Line Rating, validated against industry standards (IEEE, CIGRE). Problem Addressed Transmission bottlenecks: Utilities face congestion and efficiency losses due to static line ratings that underestimate real capacity. High costs of monitoring: Installing weather stations or hardware sensors along every line span is prohibitively expensive. Integration challenges: Many dynamic line rating (DLR) solutions require proprietary hardware or external portals, complicating adoption. Solution GLASS provides a software-only, plug-and-play solution that: Uses limited real-world weather and current data inputs. Applies precomputed CFD models to extend accuracy across unmonitored spans. Calculates real-time and forecasted ampacity values to maximize grid utilization. Outputs standardized text files easily integrated with existing utility systems. Key Advantages Higher capacity utilization: Can enable line ratings up to 40% above conservative static limits. Lower infrastructure costs: Reduces need for dense weather station deployment. Seamless integration: Simple, agnostic input/output formats support adoption without system overhauls. Proven reliability: Validated through years of testing and alignment with IEEE and CIGRE standards. Flexible deployment: Works with any utility-grade data historian or enterprise system. Market Applications Electric utilities: Enhance grid flexibility, reduce congestion losses, and safely integrate renewable energy. Grid operators: Improve real-time situational awareness and operational decision-making. Software vendors: Incorporate GLASS as a dynamic line rating module within existing platforms (e.g., OSIsoft PI). Renewable integration: Support greater use of wind energy by capturing wind cooling effects on lines.

From Special Notice posted on Dec 01, 2025

GLASS Software for Real-Time Optimization of Power Transmission Capacity Dynamic line rating software that enables utilities to safely increase transmission capacity without costly hardware expansion. Technology Summary The General Line Ampacity State Solver (GLASS), developed by Idaho National Laboratory (INL), is a high-performance software platform designed to calculate the real-time current-carrying capacity of overhead power transmission lines. By integrating weather data, line current data, and computational fluid dynamics (CFD) modeling, GLASS provides utilities with accurate, actionable insight into the thermal state of their transmission network. Unlike hardware-heavy solutions requiring dense networks of weather stations or specialized sensors, GLASS leverages a minimal number of data inputs and extrapolates across unmonitored spans using CFD-enhanced mapping. The system outputs results in a simple, interoperable format compatible with virtually any utility enterprise system. Since 2014, GLASS has evolved to compute steady-state ampacity, transient temperature, transient ampacity, and INL s proprietary True Dynamic Line Rating, validated against industry standards (IEEE, CIGRE). Problem Addressed Transmission bottlenecks: Utilities face congestion and efficiency losses due to static line ratings that underestimate real capacity. High costs of monitoring: Installing weather stations or hardware sensors along every line span is prohibitively expensive. Integration challenges: Many dynamic line rating (DLR) solutions require proprietary hardware or external portals, complicating adoption. Solution GLASS provides a software-only, plug-and-play solution that: Uses limited real-world weather and current data inputs. Applies precomputed CFD models to extend accuracy across unmonitored spans. Calculates real-time and forecasted ampacity values to maximize grid utilization. Outputs standardized text files easily integrated with existing utility systems. Key Advantages Higher capacity utilization: Can enable line ratings up to 40% above conservative static limits. Lower infrastructure costs: Reduces need for dense weather station deployment. Seamless integration: Simple, agnostic input/output formats support adoption without system overhauls. Proven reliability: Validated through years of testing and alignment with IEEE and CIGRE standards. Flexible deployment: Works with any utility-grade data historian or enterprise system. Market Applications Electric utilities: Enhance grid flexibility, reduce congestion losses, and safely integrate renewable energy. Grid operators: Improve real-time situational awareness and operational decision-making. Software vendors: Incorporate GLASS as a dynamic line rating module within existing platforms (e.g., OSIsoft PI). Renewable integration: Support greater use of wind energy by capturing wind cooling effects on lines.

From Special Notice posted on Feb 03, 2026

Notice history

3
  1. Special Notice Posted Sep 22, 2025 View
  2. Special Notice Posted Dec 01, 2025
    • Response Deadline: Nov 01, 2025Jan 01, 2026
  3. Special Notice LATEST Posted Feb 03, 2026
    • Response Deadline: Jan 01, 2026Mar 10, 2026

Details

Solicitation number CW-19-22
Notice ID 304a59170ac248a78746cc8bb9a53f60
Notice type Special Notice
Product / Service (PSC) DA10
NAICS 221118
Place of performance Idaho Falls, Idaho
Archive date Mar 25, 2026

Award Information

Not yet awarded

Documents

No files available

View on SAM.gov

Contacts

primary
Javier Martinez

Email

Agency

ENERGY, DEPARTMENT OF
ENERGY, DEPARTMENT OF
BATTELLE ENERGY ALLIANCE–DOE CNTR

Place of Performance

Idaho Falls, Idaho 83401
USA

Dates

Posted Feb 03, 2026 6 months ago
Last Updated Aug 06, 2026 1 day ago
Due Mar 10, 2026 4 months ago