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首页> 外文期刊>Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on >Parallel Transient Simulation of Multiphysics Circuits Using Delay-Based Partitioning
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Parallel Transient Simulation of Multiphysics Circuits Using Delay-Based Partitioning

机译:基于延迟分配的多物理场电路并行暂态仿真

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摘要

A parallel transient simulation technique for multiphysics circuits is presented. The technique develops partitions utilizing the inherent delay present within a circuit and between physical domains. A state-variable-based circuit delay element is presented, which implements the coupling between two spatially or temporally isolated circuit partitions. A parallel delay-based iterative approach for interfacing delay-partitioned subcircuits is applied, which achieves the reasonable accuracy of nonparallel circuit simulation if both incorporate the same interblock delay. The partitioned subcircuits are distributed to different cores of a shared-memory multicore processor and solved in parallel. A multithreaded implementation of the methodology using OpenMP is presented. Examples showing superlinear speedup compared to unpartitioned single-core simulation using the direct method are presented. This paper also discusses the impact of load balancing and absolute delay on simulation speedup.
机译:提出了一种用于多物理场电路的并行瞬态仿真技术。该技术利用电路内部以及物理域之间存在的固有延迟来开发分区。提出了一种基于状态变量的电路延迟元件,该元件可实现两个空间或时间隔离的电路分区之间的耦合。应用了基于并行延迟的迭代方法来连接延迟分区的子电路,如果两者都包含相同的块间延迟,则可以实现非并行电路仿真的合理精度。分区的子电路分布到共享内存多核处理器的不同核心,并以并行方式求解。提出了使用OpenMP的方法的多线程实现。给出了与使用直接方法的未分区单核仿真相比显示超线性加速的示例。本文还讨论了负载平衡和绝对延迟对仿真加速的影响。

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