A New Notion of Reserve for Power Systems With High Penetration of Storage and Flexible Demand

Georgios Tsaousoglou
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引用次数: 1

Abstract

Modern power systems face important demand uncertainties due to increasing penetration of behind-the-meter renewable generation. System operators need to account for such uncertainties when solving the unit commitment and economic dispatch problem. The research literature has proposed advanced methods for decision making under uncertainty but, in practice, actual system operators put more trust in the tried-and-true approach of dealing with future uncertainty by committing reserves. In this paper, the unit commitment and economic dispatch problem is formulated for a system with high penetration of storage and the inadequacy of methods based on the traditional notion of reserves is exposed. Namely, in contrast to a generator, a storage unit can provide reserve capacity in a number of timeslots but it cannot provide an analogous reserve activation in all of those timeslots due to the battery's energy being depleted. After discussing two plausible but inadequate approaches, a new, generalized notion of reserves is proposed, which addresses these issues while not abandoning the practical, reserve-based approach for the operator's problem, thus making the best of both worlds. The proposed scheme enables storage units to provide reserves, without putting the system at risk of energy scarcity, which is shown to result in substantial cost savings.
存储渗透率高、需求灵活的电力系统备用电量新概念
由于电表后可再生能源发电的普及率不断提高,现代电力系统面临着重要的需求不确定性。系统操作员在解决机组承诺和经济调度问题时需要考虑这些不确定性。研究文献提出了在不确定性下进行决策的先进方法,但在实践中,实际的系统运营商更信任通过承诺储备来处理未来不确定性的久经考验的方法。本文针对一个具有高渗透率存储的系统,提出了机组承诺和经济调度问题,并暴露了基于传统储量概念的方法的不足。也就是说,与发电机相比,存储单元可以在多个时隙中提供备用容量,但由于电池的能量耗尽,它不能在所有这些时隙中提供类似的备用激活。在讨论了两种看似合理但不充分的方法后,提出了一个新的、广义的储量概念,该概念解决了这些问题,同时没有放弃针对运营商问题的基于储量的实用方法,从而实现了两全其美。所提出的方案使存储单元能够提供储量,而不会使系统面临能源短缺的风险,这被证明可以节省大量成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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