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A Bankruptcy Problem Approach to Load-shedding in Multiagent-based Microgrid Operation

机译:基于多主体的微电网运营中的甩负荷破产问题方法

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摘要

A microgrid is composed of distributed power generation systems (DGs), distributed energy storage devices (DSs), and loads. To maintain a specific frequency in the islanded mode as an important requirement, the control of DGs’ output and charge action of DSs are used in supply surplus conditions and load-shedding and discharge action of DSs are used in supply shortage conditions. Recently, multiagent systems for autonomous microgrid operation have been studied. Especially, load-shedding, which is intentional reduction of electricity use, is a critical problem in islanded microgrid operation based on the multiagent system. Therefore, effective schemes for load-shedding are required. Meanwhile, the bankruptcy problem deals with dividing short resources among multiple agents. In order to solve the bankruptcy problem, division rules, such as the constrained equal awards rule (CEA), the constrained equal losses rule (CEL), and the random arrival rule (RA), have been used. In this paper, we approach load-shedding as a bankruptcy problem. We compare load-shedding results by above-mentioned rules in islanded microgrid operation based on wireless sensor network (WSN) as the communication link for an agent’s interactions.
机译:微电网由分布式发电系统(DG),分布式能量存储设备(DSs)和负载组成。为了将孤岛模式下的特定频率保持为一项重要要求,在供应过剩的情况下使用了DG的输出和DS的充电动作的控制,而在供应短缺的情况下使用了DS的负载下降和放电动作。近来,已经研究了用于自主微电网操作的多智能体系统。特别是,有意减少用电量的甩负荷是基于多主体系统的孤岛微电网运行中的关键问题。因此,需要有效的减载方案。同时,破产问题涉及在多个代理之间分配短资源。为了解决破产问题,已使用划分规则,例如约束相等奖励规则(CEA),约束相等损失规则(CEL)和随机到达规则(RA)。在本文中,我们将分担负载作为破产问题。我们将基于无线传感器网络(WSN)作为代理交互作用的通信链接的孤岛微电网操作中按上述规则进行的负载减少结果进行比较。

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