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Modeling and HiL Real-Time Simulation for the Secondary LFC in Time-Delay Shipboard Microgrids

机译:时滞舰载微电网中次要LFC的建模和HiL实时仿真

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摘要

In this paper, a time-varying model-free nonlinear sliding mode control is applied for the secondary load frequency control (LFC) of a shipboard microgrid (MG) with time delay, system uncertainty, and multi-step load variation. Since the satisfactory performance of the suggested controller depends on its parameters' values, a modified black hole optimization algorithm (MBHA) is utilized to set the optimal values of these coefficients. Finally, the new time-varying proposed technique is validated and implemented in hardware-in-the-loop (HiL) based on OPAL-RT to integrate the fidelity of physical simulation and the flexibility of numerical simulation.
机译:本文将具有时变,无模型的非线性滑模控制应用于具有时间延迟,系统不确定性和多级负载变化的舰船微电网(MG)的次级负载频率控制(LFC)。由于所建议控制器的满意性能取决于其参数值,因此使用了改进的黑洞优化算法(MBHA)来设置这些系数的最优值。最后,基于OPAL-RT在硬件在环(HiL)中对新提出的时变技术进行了验证和实现,以整合物理模拟的保真度和数值模拟的灵活性。

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