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Parallel algorithms for grounding grids corrosion diagnosis to improve computation speed

机译:并行诊断接地网腐蚀的算法,提高了计算速度

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The existing grounding grid corrosion diagnosis algorithms have large amount of calculation, they take up lots of time and are inconvenient in the practical application. In this paper, a parallel algorithm based on Local Area Network (LAN) is put forward to solve above problems. The master sub-process sends the samples needed to be calculated to the slave sub-processes on the computers of the LAN. The slave sub-processes calculate the samples at the same time and send the results back to the master sub-process. The final result will be figured out by the master sub-process after all the results being gathered. The parallel algorithms of grounding grids testability evaluation, uncertain branches estimation and monitoring pole allocation optimization are discussed, respectively. An experimental grounding grid with sixty branches is used as an example to validate the proposed parallel algorithms. The test is based on a LAN with five computers. The results show that the proposed methods are feasible and the calculation time can be shortened remarkably.
机译:现有的接地网腐蚀诊断算法计算量大,耗时长,在实际应用中不方便。为了解决上述问题,本文提出了一种基于局域网的并行算法。主子进程将需要计算的样本发送到LAN计算机上的从子进程。从属子过程同时计算样本,并将结果发送回主子过程。收集所有结果后,最终结果将由主子流程确定。分别讨论了接地网可测性评估,不确定分支估计和监测极点分配优化的并行算法。以具有六十个分支的实验接地网为例,对所提出的并行算法进行了验证。该测试基于具有五台计算机的LAN。结果表明,该方法是可行的,并且可以大大缩短计算时间。

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