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A Distributed Direct Load Control Approach for Large-Scale Residential Demand Response

机译:大规模居民需求响应的分布式直接负荷控制方法

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This paper proposes a distributed direct load control scheme for large-scale residential demand response (DR) built on a two-layer communication-based control architecture. The lower-layer network is within each building, where the energy management controller (EMC) uses wireless links to schedule operation of appliances upon request according to a local power consumption target. The upper-layer network links a number of EMCs in a region whose aggregated demand is served by a load aggregator. The load aggregator wants the actual aggregated demand over this region to match a desired aggregated demand profile. Our approach utilizes the average consensus algorithm to distribute portions of the desired aggregated demand to each EMC in a decentralized fashion. The allocated portion corresponds to each building's aforementioned local power consumption target which its EMC then uses to schedule the in-building appliances. The result will be an aggregated demand over this region that more closely reaches the desired demand. Numerical results show that our scheme can alleviate the mismatch between the actual aggregated demand and the desired aggregated demand profile.
机译:本文提出了一种基于两层基于通信的控制体系结构的大规模居民需求响应(DR)的分布式直接负荷控制方案。下层网络位于每个建筑物内,其中能量管理控制器(EMC)使用无线链路根据要求根据本地功耗目标调度设备的运行。上层网络在负载聚合器满足聚合需求的区域中链接了许多EMC。负载聚合器希望该区域上的实际总需求与所需的总需求曲线相匹配。我们的方法利用平均共识算法以分散的方式将部分所需的合计需求分配给每个EMC。分配的部分与每个建筑物的上述本地功耗目标相对应,EMC随后将其用于调度建筑物内的设备。结果将是该地区的总需求量更接近期望的需求量。数值结果表明,该方案可以缓解实际总需求与期望总需求状况之间的不匹配。

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