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Indirect IDA-PBC for active and reactive power support in distribution networks using SMES systems with PWM-CSC

机译:使用带有PWM-CSC的SMES系统的间接IDA-PBC,用于配电网络中的有功和无功功率支持

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摘要

In this paper an indirect interconnection and damping assignment passivity-based control (IDA-PBC) applied to the three-phase superconducting magnetic energy storage systems (SMES) is proposed to support active and reactive power in distribution systems. The SMES is connected to the distribution network using a pulse-width-modulated current source converter (PWM-CSC), due to its intrinsic current features that are more natural for controlling the current of a superconducting coil. A Hamiltonian function is selected as an hyperboloid representation taking into account the open loop dynamics of the system. The indirect control strategy is used to decouple the dynamical behavior between ac and dc side of the system, which allows to control active and reactive power independently in the ac side, while the dc side of the converter is employed as a supervisor controller for active power interchange. Simulation results demonstrate the efficiency and robustness of the proposed control methodology applied on a low-voltage distribution network under different operative conditions where the tracking errors were less than 6.2%.
机译:本文提出了一种应用于三相超导磁储能系统(SMES)的间接互连和阻尼分配基于无源性的控制(IDA-PBC),以支持配电系统中的有功和无功功率。 SMES通过脉宽调制电流源转换器(PWM-CSC)连接到配电网络,这是因为其固有的电流特性对于控制超导线圈的电流而言更为自然。考虑系统的开环动力学,选择汉密尔顿函数作为双曲面表示。间接控制策略用于使系统的交流和直流侧之间的动力学行为解耦,从而允许在交流侧独立地控制有功和无功功率,而转换器的直流侧用作有功功率的监控器互换。仿真结果表明,在跟踪误差小于6.2%的不同操作条件下,该方法应用于低压配电网络的控制方法的效率和鲁棒性。

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