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A Novel Factorization-Tree Method to the Solution of Network Equations

机译:网络方程求解的一种新的分解树方法

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Because of advances in the development of parallel computer architecture, parallel processing systems have the potential to become useful for power system applications by simultaneously solving the independent functions of a given task. A power system is separated into as many subnetworks, referred to as a bordered block diagonal form (BBDF) matrix, as the processors of a parallel computer. Balance loading on all processors is essential to ensure the success of any parallel approach. In this study, a novel method involving the factorization tree approach on the basis of calculating the maximum number of fill-ins and the degree of every node as the cutset block nodes is proposed. Using the proposed approach, the number of nodes in each subnetwork is more uniform and computation time is saved. Simulation results of the IEEE test systems and the Taiwan Power Company 288-bus system are presented to verify the feasibility of the proposed approach and its capability to implement parallel computing for load flow analysis.
机译:由于并行计算机体系结构开发的进步,并行处理系统有可能通过同时解决给定任务的独立功能而对电力系统应用变得有用。电力系统被划分为与并行计算机的处理器一样多的子网,称为有边界块对角线形式(BBDF)矩阵。所有处理器上的平衡负载对于确保任何并行方法的成功都是必不可少的。在这项研究中,提出了一种基于分解树方法的新方法,该方法基于计算最大填充数和每个节点作为割集块节点的度数。使用所提出的方法,每个子网中的节点数量更加均匀,并节省了计算时间。给出了IEEE测试系统和台湾电力公司288总线系统的仿真结果,以验证所提出方法的可行性及其实现并行计算以进行潮流分析的能力。

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