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Network-based distributed direct load control guaranteeing fair welfare maximisation

机译:基于网络的分布式直接负载控制,确保公平的福利最大化

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摘要

This study examines a distributed direct load control (DLC) problem for maximising customer welfare in a power system for the network communication of energy management controllers (EMCs). A model is first built to describe the dynamics and communication intervals of the EMCs with a distributed and uniform controller. The controller conditions are then derived to stabilise the system and to converge the power imbalance to zero at an assigned rate. The control condition that maximises customer welfare is then found. Furthermore, an optimal controller that maximises customer welfare over a given network communication is proposed, and the performance degradation caused by distributed management is evaluated. This study reveals that even though moving from a centralised to a distributed DLC can degrade customer welfare, this degradation can be reduced by considering consumer properties and network topologies of the EMCs. Numerical examples with real consumption data are also presented to demonstrate the effectiveness of the proposed method.
机译:这项研究研究了分布式直接负载控制(DLC)问题,以最大程度提高电力系统中能源管理控制器(EMC)网络通信的客户福利。首先建立一个模型来描述具有分布式和统一控制器的EMC的动态和通信间隔。然后得出控制器条件,以稳定系统并使功率不平衡以指定的速率收敛到零。然后找到使客户福利最大化的控制条件。此外,提出了一种在给定的网络通信中最大化客户福利的最佳控制器,并评估了由分布式管理导致的性能下降。这项研究表明,即使从集中式DLC迁移到分布式DLC可能会降低客户满意度,但可以通过考虑EMC的消费者属性和网络拓扑来减少这种降低。还给出了带有实际消耗数据的数值示例,以证明该方法的有效性。

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