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Energy storage in an open electricity market with contribution to transmission congestion relief

机译:开放电力市场中的储能,有助于缓解交通拥堵

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A real-time optimal dispatch (RTOD) algorithm is proposed in this paper by formulating a mixed integer linear programming (MILP) problem to determine dispatch quantities for a privately-owned energy storage system (ESS) operating in an open electricity market. A new mechanism is proposed and implemented in the optimization problem based on historical and forecasted information available to the ESS to prepare the ESS for possible congestion relief external commands. The performance of the RTOD is evaluated through studying of ESS operation for different possible cases, and the results are discussed. As an example of utility-scale ESSs, a compressed air energy storage (CAES) is used to evaluate the performance of the proposed technique. The investigation results reveal that the external congestion relief commands should be forecasted and incorporated as part of the RTOD to achieve optimal performance and higher financial benefits.
机译:通过制定混合整数线性规划(MILP)问题来确定公开电力市场中运行的私有能源存储系统(ESS)的调度量,提出了一种实时最佳调度(RTOD)算法。提出了一种新的机制,并根据可用于ESS的历史和预测信息在优化问题中实施了新机制,以为可能的拥塞缓解外部命令准备ESS。通过研究ESS在不同情况下的运行情况,评估了RTOD的性能,并讨论了结果。作为公用事业级ESS的示例,压缩空气能量存储(CAES)用于评估所提出技术的性能。调查结果表明,应预测外部拥堵缓解命令并将其作为RTOD的一部分,以实现最佳性能和更高的经济效益。

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