中文

Storage as a Transmission Asset (SATA) for Large-Load Congestion Relief

系统与控制 2026-07-05 v1

摘要

Hyperscale data centers and other large concentrated loads can impose substantial new demand on existing transmission networks. If import corridors lack sufficient transfer capability, operators may need to curtail load, delay interconnection, or reinforce the network to maintain reliable service. An energy storage system (ESS) deployed as a storage-as-transmission asset (SATA) offers a non-wires alternative by providing operator-directed support to constrained import corridors. However, the operating-level reliability value of SATA dispatch remains insufficiently quantified. This paper evaluates operator-directed SATA using a day-ahead DC optimal power flow that co-optimizes generation, ESS dispatch, and load curtailment across Monte Carlo scenarios of demand and generator availability. Operating reliability is assessed using expected energy not served (EENS), loss-of-load hours (LOLH), and the conditional value at risk (CVaR) of daily unserved energy. Congestion-price and flow-sensitivity metrics are used to identify the limiting corridor and storage location. The interconnection is then screened to determine whether SATA is suitable, reinforcement is required, or storage would provide little transmission value. Results show that operator-directed SATA reduces average unserved energy, loss-of-load exposure, and tail risk compared with deploying the same ESS for pure arbitrage. These results demonstrate that the operating designation of storage is a primary driver of its transmission value.

引用

@article{arxiv.2607.04545,
  title  = {Storage as a Transmission Asset (SATA) for Large-Load Congestion Relief},
  author = {Abanish Tiwari and Chandan Chaudhary and Yansong Pei and Mohammed Ben-Idris and Joydeep Mitra},
  journal= {arXiv preprint arXiv:2607.04545},
  year   = {2026}
}

备注

Submitted for North American Power Symposium 2026, October 11 - 13, 2026