将现有计算机代码转换为超立方体计算机

D. J. Boratynska-Stadnicka, M. Lauby, J. V. Van Ness
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引用次数: 12

摘要

本文介绍了用SYREL程序求电力系统可靠性指标的上下界的方法。它测试一系列意外事件是否违反线路负载或电压限制,然后使用该结果通过树搜索计算可靠性指标。程序的这两个部分经过修改,可以在超立方体计算机上运行。为了利用超多维数据集的功能,必须在程序中进行一个重大更改,将树枚举中使用的偶然性计算结果的存储从磁盘移动到每个节点中可用的大内存中。一个商业单位,iPSC/1-MXD4,在程序开发中被使用。一个后来更强大的模型,iPSC/2,在项目结束时可供测试,其中包括测试结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Converting an existing computer code to a hypercube computer
The authors describe the utilization of SYREL, a computer program which finds the upper and lower bounds on the reliability indices for an electric utility system. It tests a list of contingencies for violations of line loadings or voltage limits, and then uses the results from that to compute the reliability indices by a tree search. These two parts of the program have been modified to run on a hypercube computer. A major change that had to be made in the program in order to utilize the capability of the hypercube was to move the storage of the contingency evaluation results that would be used in the tree enumeration from the disk to the large memory available in each node. A commercial unit, the iPSC/1-MXD4, was used in the program development. A later and more powerful model, the iPSC/2, became available for testing at the end of the project, and test results on it are included.<>
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