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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Dynamic Variable Time-Stepping Schemes for Real-Time FPGA-Based Nonlinear Electromagnetic Transient Emulation
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Dynamic Variable Time-Stepping Schemes for Real-Time FPGA-Based Nonlinear Electromagnetic Transient Emulation

机译:基于FPGA的实时非线性电磁瞬态仿真的动态可变时步方案

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摘要

Electromagnetic transient (EMT) simulation of nonlinear elements in power systems is a particular challenge due to the requirements of an accurate representation and an efficient solution. The existing real-time simulators utilize a piecewise linear representation along with a fixed time step for the solution of nonlinear elements. This paper proposes the detailed methodologies for applying variable time stepping to real-time EMT simulation to improve the simulation accuracy and efficiency. The challenges, the feasible solutions, and corresponding restrictions of applying various variable time-stepping schemes along with nonlinear element solution methods in real time are discussed. The offline simulation and the real-time hardware emulation of two case studies, a full-bridge diode circuit and a power transmission system, are presented. The case studies were implemented on the field-programmable gate array device (Xilinx Virtex-7 XC7VX485T) in real time using high-level synthesis tool to achieve a parallelized and pipelined hardware design with minimum coding effort. The real-time emulation results captured by an oscilloscope are validated against the offline simulation on Saber and PSCAD/EMTDC software tools.
机译:由于需要精确表示和有效解决方案的要求,电力系统中非线性元件的电磁瞬变(EMT)模拟是一个特殊的挑战。现有的实时仿真器利用分段线性表示以及固定时间步长来求解非线性元素。本文提出了将可变时间步进应用于实时EMT仿真的详细方法,以提高仿真的准确性和效率。讨论了实时应用各种可变时间步长方案以及非线性元素求解方法所面临的挑战,可行的解决方案以及相应的限制。给出了两个案例研究的离线仿真和实时硬件仿真,即全桥二极管电路和电力传输系统。使用高级综合工具在现场可编程门阵列器件(Xilinx Virtex-7 XC7VX485T)上实时进行了案例研究,以最少的编码工作即可实现并行化和流水线的硬件设计。通过Saber和PSCAD / EMTDC软件工具上的脱机仿真,可以验证示波器捕获的实时仿真结果。

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