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FPGA Design and Implementation for Real-Time Electromagnetic Transient Simulation System

机译:实时电磁暂态仿真系统的FPGA设计与实现

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摘要

Real-time electromagnetic transient simulation system involves high computational tasks and is very difficult to achieve small time step. In this paper, we proposes the field programmable gate array (FPGA) design and implementation for real-time electromagnetic transient simulation system with double-precision floating-point calculation. The parallel computing and fully pipelined architecture of the electromagnetic transient program is employed to improve the processing speed. In addition, the nodal equation calculation structure is designed to achieve small time-step. The proposed system can support the simulation of power grid with up to 74 three-phase buses, including transmission line, single-phase two-winding transformer, breakers and several current and voltage sources. The implementation result on FPGA shows that the proposed electromagnetic transient simulation system reach 2 us time-step. Furthermore, the captured real-time oscilloscope results verify high accuracy of the small time-step emulation system compared to the offline simulation of the electromagnetic transient software.
机译:实时电磁暂态仿真系统涉及大量的计算任务,很难实现较小的时间步长。本文针对具有双精度浮点计算的实时电磁暂态仿真系统,提出了现场可编程门阵列(FPGA)的设计与实现。采用电磁暂态程序的并行计算和全流水线架构来提高处理速度。此外,节点方程计算结构旨在实现较小的时间步长。该系统可以支持多达74个三相母线的电网仿真,包括传输线,单相两绕组变压器,断路器以及多个电流和电压源。在FPGA上的实现结果表明,所提出的电磁暂态仿真系统的时间步长为2 us。此外,与电磁暂态软件的离线仿真相比,捕获的实时示波器结果证明了小型时步仿真系统的高精度。

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