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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Multi-Agent Coordination of Thermostatically Controlled Loads by Smart Power Sockets for Electric Demand Side Management
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Multi-Agent Coordination of Thermostatically Controlled Loads by Smart Power Sockets for Electric Demand Side Management

机译:通过智能电源插座进行电气需求侧管理的多智能控制负载

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This article presents a multi-agent control architecture and an online optimization method based on a dynamic average consensus to coordinate the power consumption of a large population of thermostatically controlled loads (TCLs). Our objective is to penalize peaks of power demand, smooth the load profile, and enable demand-side management. The proposed architecture and methods exploit only local measurements of power consumption via smart power sockets (SPSs) with no access to their internal temperature. No centralized aggregator of information is exploited, and agents preserve their privacy by cooperating anonymously only through consensus-based distributed estimation. The interactions among devices occur through an unstructured peer-to-peer (P2P) network over the Internet. Methods for parameter identification, state estimation, and mixed logical modeling of TCLs and SPSs are included. The architecture is designed from a multi-agent and plug-and-play perspective, in which existing household appliances can interact with each other in an urban environment. Finally, a novel low-cost testbed is proposed along with numerical tests and experimental validation.
机译:本文介绍了一种多功能控制架构和基于动态平均共识的在线优化方法,以协调大量恒温控制负载(TCLS)的功耗。我们的目标是惩罚电力需求的峰值,平滑负载轮廓,使能侧管理能够实现需求侧。所提出的架构和方法利用智能电源插座(SPS)仅利用局部功耗测量,无需访问其内部温度。没有被利用信息的集中聚合器,代理通过仅通过基于共识的分布式估计来匿名合作,保护他们的隐私。设备之间的相互作用通过互联网上的非结构化点对点(P2P)网络发生。包括参数识别,状态估计和TCLS和SPS的混合逻辑建模方法。该架构是由多功能代理和即插即用的透视设计的,其中现有的家用电器可以在城市环境中相互互动。最后,提出了一种新的低成本测试平台以及数值测试和实验验证。

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