A Demand-Supply Cooperative Responding Strategy in Power System with High Renewable Energy Penetration
Yuanzheng Li, Xinxin Long, Yang Li, Yizhou Ding, Tao Yang, Zhigang, Zeng

TL;DR
This paper introduces a power demand-supply cooperative response strategy that enhances renewable energy utilization in power systems by coordinating demand response on both day-ahead and intraday scales, addressing RE fluctuations and profit distribution issues.
Contribution
It proposes a novel cooperative response strategy with profit distribution solutions that improve renewable energy utilization and system coordination under uncertain RE fluctuations.
Findings
Strategy effectively improves RE utilization in case studies.
Profit distribution method maximizes cooperative profits.
Coordination of demand response and generation resources is optimized.
Abstract
Industrial demand response (IDR) plays an important role in promoting the utilization of renewable energy (RE) in power systems. However, it will lead to power adjustments on the supply side, which is also a non-negligible factor in affecting RE utilization. To comprehensively analyze this impact while enhancing RE utilization, this paper proposes a power demand-supply cooperative response (PDSCR) strategy based on both day-ahead and intraday time scales. The day-ahead PDSCR determines a long-term scheme for responding to the predictable trends in RE supply. However, this long-term scheme may not be suitable when uncertain RE fluctuations occur on an intraday basis. Regarding intraday PDSCR, we formulate a profit-driven cooperation approach to address the issue of RE fluctuations. In this context, unreasonable profit distributions on the demand-supply side would lead to the conflict of…
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