用于电力电子电路仿真的多处理器

T. Sterling, J. Kassakian, Ε. Y. Chan
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引用次数: 0

摘要

电力电子电路仿真要求大幅度提高数字处理的性价比。多处理器提供了一种可能的方法,通过应用VLSI技术来降低成本,同时利用并发计算来提高性能。多处理器由于进程交互和资源访问争用而遭受开销。采用一种松散耦合的多处理器体系结构,结合逐次逼近线性方程求解算法,最大限度地减少进程与处理器之间的交互和开销,提高效率。由于电力电子电路拓扑特性的变化,子过程在处理器之间的分布出现了一个主要的障碍。通过每个开关采用“同伴”电阻,将改变开关的影响定位到未约化基尔霍夫平衡方程和元素v-i约束的特定子集,从而解决了这个问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A multiprocessor for power electronic circuit simulation
Power electronic circuit simulation demands substantial improvements in the performance-to-cost of digital processing. Multiprocessors offer one possible method of reducing costs through the application of VLSI technology while increasing performance by exploiting concurrent computation. Multiprocessors suffer from overhead due to process interaction and resource access contention. A loosely coupled multiprocessor architecture is combined with a successive approximation linear equation solution algorithm to minimize process and processor interaction and overhead for high efficiency. A major obstacle occurs in the distribution of the subprocesses among the processors as a consequence of the changing topologies characteristic of power electronic circuits. The problem is resolved by localizing the effects of changing switches to specific subsets of the unreduced Kirchoff equilibrium equations and element v-i constraints through the adoption of a "companion" resistor by eacli switch.
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