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首页> 外文期刊>Power Systems, IEEE Transactions on >Stable Multi-Agent-Based Load Shedding Algorithm for Power Systems
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Stable Multi-Agent-Based Load Shedding Algorithm for Power Systems

机译:基于稳定多代理的电力系统减载算法

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If generation in a power system is insufficient to power all loads, efficient load shedding operations may need to be deployed to maintain the supply-demand balance. This paper proposes a distributed multi-agent-based load shedding algorithm, which can make efficient load shedding decision based on discovered global information. During the information discovery process, only communications between immediate neighboring agents are used. The information discovery algorithm is represented as a discrete time linear system and the stability of which is analyzed according to average-consensus theorem. According to rigorous stability analysis, convergence of the designed algorithm can be guaranteed. To improve the speed of the algorithm, particle swarm optimization (PSO) is used to optimize the coefficients for information exchange so that the second largest eigenvalue of the iteration matrix is minimized. According to the designed algorithm, total net active power and operating status of loads can be discovered accurately even with faults. Based on the discovered information, coordinated load shedding decision can be made.
机译:如果电力系统中的发电不足以为所有负载供电,则可能需要部署有效的减载操作以维持供需平衡。本文提出了一种基于多主体的分布式减载算法,该算法可以根据发现的全局信息做出有效的减载决策。在信息发现过程中,仅使用直接相邻代理之间的通信。信息发现算法以离散时间线性系统表示,并根据平均共识定理分析其稳定性。通过严格的稳定性分析,可以保证所设计算法的收敛性。为了提高算法的速度,使用粒子群算法(PSO)来优化信息交换系数,从而使迭代矩阵的第二大特征值最小化。根据设计的算法,即使出现故障也可以准确地发现总净有功功率和负载的运行状态。基于发现的信息,可以做出协调的减载决策。

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