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Multi-agent system based solution of the optimal reactive power dispatch problem in autonomously operated multi-area systems

机译:基于多主体系统的自治多区域系统最优无功分配问题的解决方案

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Cooperation of regional operators in solving optimal reactive power dispatch (ORPD) problems in large systems is beneficial despite of many challenges. One major challenge is the fact that each regional operator is typically not willing to reveal the local system data. To deal with such challenge and to try to attain a dispatch resulting in overall optimum, this paper proposes a control scheme in which a large area is partitioned into multi-agent based system where each operator is considered as a control agent and uses a model of its local system and communication links with its neighboring control agents to come to agreement on the evolution of interconnections and to determine optimal local control actions and states. At each agent, a linearized objective function enforced with constraints has to be solved to determine control variables, which are transformer tap positions and reactive power injections. Calculation procedure at each agent based on sensitivity coefficients, thus impact of change magnitudes of control variables on control performance would be significant and hence is fully analyzed. The proposed algorithm is applied to the modified IEEE 30-bus system and numerical results are presented.
机译:尽管存在许多挑战,但区域运营商在解决大型系统中的最佳无功功率分配(ORPD)问题方面的合作是有益的。一个主要的挑战是每个区域运营商通常都不愿意透露本地系统数据的事实。为了应对这种挑战并尝试实现总体最优的调度,本文提出了一种控制方案,在该方案中,将大区域划分为基于多主体的系统,其中每个操作员均被视为控制主体,并使用一种模型。它的本地系统和与其相邻控制代理的通信链接,就互连的发展达成协议,并确定最佳的本地控制措施和状态。在每个代理处,必须解决带有约束的线性化目标函数以确定控制变量,这些变量是变压器的抽头位置和无功功率注入。基于灵敏度系数的每个代理的计算过程,因此控制变量的变化幅度对控制性能的影响将是显着的,因此将进行全面分析。将该算法应用于改进的IEEE 30总线系统,并给出了数值结果。

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