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A parallel processing scheme in power systems computation

机译:电力系统计算中的并行处理方案

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This paper focuses theoretically to develop a new parallel computation algorithm by exploiting the natural structure of power systems. The proposed approach not only improves the efficiency of computation but also ensures the accurate integration. In other words, we consider a power system as one big group of DAEs (Differential Algebraic Equations) and many small groups of DAEs. The big group of DAEs represents the commonly connected network, while each small group of DAEs may express a generator, a control device, a small relatively independent power system, or a dynamic load, e.g. motor, which is connected to the network. Then, whole system is naturally divided into a main system corresponding to the big group of DAEs and may subsystems corresponding to each small group of DAEs respectively. Each subsystem is processed parallel while the coordination among groups is implemented only by the variables of the main system based on the implicit function theory. Since the decomposition exploits the natural structure d power systems, our parallel scheme can fully utilize the existing software resources, which in turn significantly reduces coding, program maintenance and future expansion works.
机译:本文通过利用电力系统的自然结构,理论上侧重于开发新的并行计算算法。所提出的方法不仅提高了计算效率,而且确保了准确的集成。换句话说,我们认为一个电力系统作为一大群Daes(差分代数方程)和许多小组的Daes。大群DAE代表了常用的网络,而每个小组DAE可以表达发电机,控制装置,小相对独立的电力系统或动态负载,例如,电机,连接到网络。然后,整个系统自然被分成与大群DAE组的主系统,也可以分别对应于每个小组的子系统。每个子系统都是并行处理的,而组之间的协调仅由基于隐式功能理论的主系统的变量来实现。由于分解利用自然结构D电力系统,因此我们的并行方案可以充分利用现有的软件资源,从而显着降低编码,节目维护和未来的扩展工作。

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