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A robust control strategy for parallel-connected distributed generation using real-time simulation

机译:实时仿真的并行连接分布式发电鲁棒控制策略

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In the context of renewable energy sources integration, the use of microgrids (MGs) with multiple distributed generation (DG) based on voltage source inverters is the solution to significantly reduce the influence of the unpredictable nature of the renewable energy sources on the grid. This paper focuses on the problem of uncertainties and disturbances found in such applications with various LCL filter parameters, load conditions and network conditions, and the problem of voltage control of inverter-interfaced microgrids with radial structure. The main objectives of this paper are to (i) design a robust low-order voltage controller which ensures robustness as well as desired performance of the microgrid system in spite of uncertain parameters; (ii) validate the complete model of MG under different operating conditions using a digital real-time simulator. This simulator is a beneficial tool that allows the verification of several scenarios with different operating conditions. It accelerates the testing process as compared to offline simulations, where computation time is much larger.
机译:在可再生能源整合的背景下,基于电压源逆变器的微电网(MG)与多分布式发电(DG)的使用是显着降低可再生能源不可预测性对电网影响的解决方案。本文着重探讨在各种LCL滤波器参数,负载条件和网络条件下此类应用中发现的不确定性和干扰问题,以及具有径向结构的逆变器接口微电网的电压控制问题。本文的主要目的是:(i)设计一个鲁棒的低阶电压控制器,即使参数不确定,该控制器也能确保微电网系统的鲁棒性和所需的性能; (ii)使用数字实时仿真器在不同的运行条件下验证MG的完整模型。该模拟器是一个有用的工具,可以验证具有不同操作条件的几种情况。与离线模拟相比,它可以加速测试过程,而离线模拟的计算时间要长得多。

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