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A fully automated reconfigurable calculation engine dedicated to the real-time simulation of high switching frequency power electronic circuits

机译:全自动可重构计算引擎,专用于高开关频率功率电子电路的实时仿真

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摘要

Real-time simulation allows rapid deployment and thorough testing of prototyped hardware in the automotive and aerospace industries. However, the simulation of power electronic circuits (PECs) in the context of PC-based simulations is challenging for several reasons, and imposes a limit in the 1-5 kHz range to the achievable switching frequencies. As FPGA devices gain computing power, conducting the real-time simulation of PECs on chip becomes an attractive alternative. This paper demonstrates the feasibility of high-performance floating-point calculation engines aimed for the real-time simulation of PECs on high-end and low-cost FPGAs as well. The paper discusses emerging paradigms for reconfigurable floating-point computing that favor optimal performance and offer near double precision arithmetic at a minimal hardware cost. The effectiveness of the approach is demonstrated by considering three different circuit topologies and simulating their high-frequency stimulation (20 kHz) using the same automated calculation engine. The considered circuits are a boost converter, a two-level three-phase bridge, and a two-level-three-phase bridge driven by a boost converter.
机译:实时仿真可以在汽车和航空航天工业中快速部署和全面测试原型硬件。但是,基于PC的仿真环境中的电力电子电路(PEC)的仿真由于许多原因而具有挑战性,并且对可实现的开关频率施加了1-5 kHz范围的限制。随着FPGA器件获得计算能力,在芯片上进行PEC的实时仿真成为一种有吸引力的选择。本文还演示了高性能浮点计算引擎的可行性,该引擎还旨在在高端和低成本FPGA上实时仿真PEC。本文讨论了可重构浮点计算的新兴范例,这些范例支持最佳性能并以最小的硬件成本提供了近乎双精度的算法。通过考虑三种不同的电路拓扑并使用相同的自动计算引擎模拟它们的高频刺激(20 kHz),证明了该方法的有效性。所考虑的电路是升压转换器,两级三相电桥和由升压转换器驱动的两级三相电桥。

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