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Multi-time Scale Dispatch Approach for an AC/DC Hybrid Distribution System Considering the Response Uncertainty of Flexible Loads

机译:考虑柔性负荷响应不确定度的AC / DC混合分配系统的多时间缩放分派方法

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摘要

This paper examines the response uncertainty of flexible loads in the multi-time scale operation of an AC/DC hybrid distribution system. The price-based demand response (PBDR) model is established based on the principle of consumer psychology and the law of actual response uncertainty. The incentive mechanism of the incentivebased demand response (IBDR) model is designed considering the error of actual response capacity. Then, fuzzy chance-constrained programming is adopted to handle the response uncertainty of flexible loads. A multi-time scale dispatch model considering the response uncertainty of flexible loads for an AC/DC hybrid distribution system is proposed, which involves a day-ahead, intra-day, and real-time dispatch scheme. Mixed integer secondorder cone programming (MISOCP) is utilized to solve the established multi-time scale dispatch model. Case studies illustrate the effectiveness of the proposed model, by considering the response uncertainty of flexible loads and the coordinated optimization on multiple time scales, peak shaving and valley filling can be realized and the dispatching cost of network can be reduced.
机译:本文研究了AC / DC混合分配系统的多时间尺度操作中灵活负载的响应不确定性。基于价格的需求响应(PBDR)模型是基于消费心理学的原则和实际响应不确定性的法律。考虑实际响应容量的错误,设计了激励需求响应(IBDR)模型的激励机制。然后,采用模糊机会约束规划来处理柔性负载的响应不确定度。提出了一种考虑到AC / DC混合分配系统灵活负载的响应不确定的多时间缩放调度模型,这涉及一天的日期,日期和实时分派方案。混合整数二阶锥编程(MISOCP)用于解决已建立的多次缩放调度模型。案例研究说明了所提出的模型的有效性,通过考虑柔性负载的响应不确定度和多个时间尺度的协调优化,可以实现峰值剃须和谷填充,并且可以减少网络的调度成本。

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