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Stability analysis of islanded DC microgrid for the proposed distributed control strategy with constant power loads

机译:持续功率负荷提出分布式控制策略的岛DC微电网的稳定性分析

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Droop control by means of virtual resistance in control loop is applied for parallel operation of sources in order to minimize circulating currents. The droop control approach is widely used in DC microgrids. The conventional droop control schemes are unable to mitigate trade-off between effective equal load-sharing (in per unit) and bus voltage regulation for unequal cable line parameters. The stability analysis becomes important when constant power loads (CPLs) are applied to DC bus due to the impact of the negative impedance of CPLs. In this paper, the distributed control scheme is proposed with a digital communication link for an averaging current signal to compensate the cable line voltage drop and load sharing error. The proposed control scheme based on the hysteresis current controller is found robust in terms of simplex tuning procedure than conventional cascaded proportional integral controllers. The stability analysis of the DC microgrid is done with the effect of the proposed distributed controller and CPLs. This analysis covers a specific range of droop gain, communication time delay, and CPLs. The performance analysis of the system is done based on three source units and common CPL. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过控制回路中的虚拟电阻来施加下垂控制以用于源的并联操作,以便最小化循环电流。下垂控制方法广泛用于DC微电网。传统的下垂控制方案无法在有效的等同负载共享(每单位)之间的折衷和用于不等电缆线参数的总线电压调节之间的折衷。由于CPLS对负阻抗的影响,当恒定功率负载(CPLS)施加到DC总线时,稳定性分析变得重要。在本文中,提出了分布式控制方案,其利用用于平均电流信号的数字通信链路来补偿电缆线电压下降和负载共享误差。基于滞后电流控制器的所提出的控制方案在Simplex调谐过程方面被发现比传统的级联比例整体控制器更强大。通过所提出的分布式控制器和CPLS的效果来完成DC微电网的稳定性分析。该分析涵盖了各种下垂增益,通信时间延迟和CPLS的特定范围。系统的性能分析是基于三个源单位和共同的CPL完成的。 (c)2018年elestvier有限公司保留所有权利。

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