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Multi-FPGA digital hardware design for detailed large-scale real-time electromagnetic transient simulation of power systems

机译:多FPGA数字硬件设计,用于电力系统的详细大规模实时电磁暂态仿真

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摘要

Large-scale electromagnetic transient simulation of power systems in real-time using detailed modelling is computationally very demanding. This study introduces a multi-field programmable gate array (FPGA) hardware design for this purpose. A functional decomposition method is proposed to map FPGA hardware resources to system modelling. This systematic method lends itself to fully pipelined and parallel hardware emulation of individual component models and numerical solvers, while preserving original system characteristics without the need for extraneous components to partition the system. Proof-of-concept is provided in terms of a 3-FPGA and 10-FPGA real-time hardware emulation of a three-phase 42-bus and 420-bus power systems using detailed modelling of various system components and iterative non-linear solution on a 100 MHz FPGA clock. Real-time results are compared with offline simulation results, and conclusions are derived on the performance and scalability of this multi-FPGA hardware design.
机译:使用详细的模型对电力系统进行实时的大规模电磁瞬态仿真在计算上要求很高。为此,本研究介绍了一种多场可编程门阵列(FPGA)硬件设计。提出了一种功能分解方法,将FPGA硬件资源映射到系统建模中。这种系统的方法适用于单个组件模型和数值求解器的完全流水线和并行硬件仿真,同时保留了原始系统特性,而无需使用多余的组件来划分系统。使用各种系统组件的详细建模和迭代非线性解决方案,通过三相42总线和420总线电源系统的3-FPGA和10-FPGA实时硬件仿真来提供概念验证。在100 MHz FPGA时钟上。将实时结果与离线仿真结果进行比较,得出关于这种多FPGA硬件设计的性能和可扩展性的结论。

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