阶梯竞价电力市场中考虑输电拥塞的最优发电调度

P. Panyakaew, P. Damrongkulkamjorn
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引用次数: 2

摘要

本文提出了一种考虑输电拥塞的最优电力调度计算方法,其目标是使各发电机组在电力市场上的阶梯投标价格总和最小。约束条件是功率平衡方程和系统运行极限。该方法将问题的制定分为两部分:市场调度部分;以及潮流约束部分。市场调度部分在考虑发电机容量限制的情况下,根据投标价格对各母线上的实际发电量进行分配。如果某台发电机的实际发电量低于其最小容量限制,市场调度部分将使用混合整数规划技术来决定该发电机是关闭还是按最小容量限制进行调度。然后将市场调度部分产生的实际发电量传递给潮流约束部分,以检查它们是否造成系统拥塞。如果发生拥塞,将重新计算市场调度。整个算法在市场调度部分的结果不再引起任何传输或运行拥塞时寻找最优解。在改进的ieee14总线系统上对该算法进行了测试,该算法能够最优地重新分配参与的发电机以缓解传输拥塞。该算法是一种实用的非近似方法,可以成功地求解市场相关最优潮流的最优解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal generation dispatch considering transmission congestion in electricity market with step-bidding prices
This paper presents a computational method for optimal power dispatch considering transmission congestion where the objective is to minimize the summation of step bidding prices from participated generators in electricity markets. The constraints are power balanced equations and system operating limits. The proposed method decomposes the problem formulation into two parts: the market dispatch part; and the power flow constraints part. The market dispatch part allocates the real power generations at each bus based on bidding prices with the considerations of generator capacity limits. If the dispatched real power generation of any generator were less than its minimum capacity limit, the market dispatch part would use the mixed integer programming technique to decide if that generator should be off or dispatched at minimum limit. The real power generations resulting from the market dispatch part are then passed to the power flow constraints part to check if they cause any system congestion. The market dispatch would be recomputed if any congestion occurred. The whole algorithm finds the optimal solution when the results from the market dispatch part no longer cause any transmission or operational congestion. The proposed algorithm is tested on a modified IEEE 14 bus system in which it is able to optimally redispatch the participated generators to release the transmission congestion. The proposed algorithm can be considered a practical and non-approximated approach that successfully reaches the optimal solutions of market-related optimal power flow.
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