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Regenerative Braking Control for Trains in a DC MicroGrid Using Dynamic Feedback Linearization Techniques

机译:使用动态反馈线性化技术的直流微电网中列车的再生制动控制

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This paper proposes the integration of a train line for regenerative braking into a DC MicroGrid composed of PV generation, hybrid energy storage system (battery and supercapacitor) and DC local load. The energy generated from regenerative braking is absorbed by the supercapacitor, which is able to deal with bursts of power without affecting the stability of the system. The control scheme is based on singular perturbation analysis, where we can split the overall system in two interconnected subsystems with different time-scales dynamics, solving the non-minimal phase problem for DC/DC converters. Therefore, a simplified control strategy is obtained to control the train’s converter and to assure stability of the whole MicroGrid. Simulation results show that the proposed control strategy can integrate regenerative braking from train as a renewable source in the MicroGrid.
机译:本文提出了将再生制动火车线集成到由光伏发电,混合储能系统(电池和超级电容器)和直流局部负载组成的直流微电网中的方法。再生制动产生的能量被超级电容器吸收,超级电容器能够处理功率突发,而不会影响系统的稳定性。该控制方案基于奇异摄动分析,其中我们可以将整个系统分为两个相互关联的子系统,两个子系统具有不同的时标动态特性,从而解决了DC / DC转换器的非最小相位问题。因此,获得了一种简化的控制策略来控制火车的换流器并确保整个MicroGrid的稳定性。仿真结果表明,所提出的控制策略可以将火车的再生制动集成为MicroGrid中的可再生资源。

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