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An equivalent circuit method for modelling and simulation of modular multilevel converter in real-time HIL test bench

机译:实时HIL测试台中模块化多电平转换器建模与仿真的等效电路方法

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In China, two modular multilevel converter (MMC) projects were recently commissioned, and other two are currently under construction. The real time hardware-in-the-loop (HIL) test bench played an important role in validating the manufacturer's controllers. The full detail MMC model does not fit with the HIL test bench, which has to solve the circuit containing numerous switches and handle a large amount of inputs and outputs (I/Os) at a small time step for real time simulation. The main challenge is to find a method to model and simulate the MMC systems with sufficient detail, accuracy, and speed. This paper presents an equivalent circuit method for the HIL test bench. The circuit inside sub-module (SM) is represented by mathematical equations, implemented in CPU or field-programmable gate array (FPGA), and solved in parallel to achieve real time performance. This method based test bench is used in those MMC projects in China and connected to the manufacturer's controllers for HIL tests. The model accuracy and simulation speed achieved by this method met the requirements of the HIL tests. In this paper, various scenarios are tested in an MMC HVDC study system. The results achieved by the proposed method have high agreement with those of a reference model in EMTP-RV.
机译:在中国,最近委托了两个模块化多电平转换器(MMC)项目,另外两个正在建设中。实时硬件在环(HIL)测试平台在验证制造商的控制器方面发挥了重要作用。详细的MMC模型不适用于HIL测试平台,该平台必须解决包含众多开关的电路,并在很短的时间步内处理大量的输入和输出(I / O),以进行实时仿真。主要的挑战是找到一种以足够的细节,准确性和速度来对MMC系统进行建模和仿真的方法。本文提出了一种适用于HIL测试台的等效电路方法。子模块(SM)内部的电路由数学方程式表示,可以在CPU或现场可编程门阵列(FPGA)中实现,并且可以并行求解以实现实时性能。这种基于方法的测试平台在中国的MMC项目中使用,并连接到制造商的控制器进行HIL测试。通过该方法获得的模型精度和仿真速度满足了HIL测试的要求。在本文中,在MMC HVDC研究系统中测试了各种方案。所提出的方法所获得的结果与EMTP-RV中的参考模型具有高度的一致性。

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