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Contingency-Constrained Reserve Requirements in Joint Energy and Ancillary Services Auction

机译:联合能源和辅助服务拍卖中的应急约束储备要求

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This paper presents a security-constrained unit commitment model for energy and ancillary services auction which can be used by an ISO to optimize reserve requirements in electricity markets. The proposed day-ahead algorithm determines reserve requirements by simulating contingencies rather than specifying the requirements as fixed system constraints. To address the computational complexity, the original auction problem is decomposed into a master problem for solving unit commitment and subproblems for considering network security constraints. Numerical examples show that the proposed joint auction model can clear energy and ancillary services bids simultaneously while minimizing the total operating cost and satisfying transmission security constraints.
机译:本文提出了一种用于能源和辅助服务拍卖的安全约束单位承诺模型,ISO可以使用该模型来优化电力市场的储备要求。提出的提前一天算法通过模拟突发事件而不是将需求指定为固定系统约束来确定储备需求。为了解决计算复杂性,将原始拍卖问题分解为用于解决单元承诺的主要问题和用于考虑网络安全约束的子问题。数值算例表明,所提出的联合拍卖模型可以同时清除能源和辅助服务投标,同时使总运营成本最小化并满足传输安全约束。

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