60Hertz Incorporated — Department of Commerce SBIR Phase II: 9.2

60Hertz Incorporated — SBIR Phase II award from Department of Commerce.

Phase II SBIR prototype / development signal

  • Phase II is where Department of Commerce funds deeper R&D after feasibility. Incumbents with Phase II history are serious competitors on adjacent topics.
  • Use this award as past-performance context and to map customer organizations for STRATFI/TACFI-style transition planning.
  • Obligated amount $649,950 is consistent with substantial Phase II-scale effort; compare to related awards from the same agency.
  • Topic code 9.2 links this award to a solicitation family — search the same topic stem for incumbents and recompete timing.

Informational capture context from public federal data — not legal or bid advice.

Amount
$649,950
Agency
Department of Commerce · National Oceanic and Atmospheric Administration
Program / Phase
SBIR · Phase II
Topic
9.2
Solicitation
NOAA-OAR-TPO-2023-2007785
NAICS
Place of performance
AK
Period
2023-08-01 → 2025-07-31

Description

This research aims to develop decision support tools for better maintenance and planning of renewable energy generation and storage assets using atmospheric, local weather, and on-ground environmental data blended with site-, regional- and national-generation data. The study will use a combination of these data to understand the relationship between non-cloud cover based atmospheric conditions and the impact on renewable energy generation and storage which will then be used to develop models for planning and decision support for operations. Research will be conducted across multiple renewable generation and storage sites with diverse environmental conditions to validate and verify the existing model developed during Phase I of this research. The expected results of this research include a better understanding of the relationship between atmospheric conditions and the impact on renewable energy generation and storage, the development of a decision support tool for proactive and reactionary operations and maintenance, and the potential for commercialization of the model and tools. This research will significantly impact the clean energy generation and storage community by providing real-time insights and accurate, useful predictions that, when leveraged properly, will help clean energy operations & maintenance (O&M) managers ensure optimized operational revenues in both generation and storage asset performance.