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首页> 外文期刊>IEEJ Transactions on Electrical and Electronic Engineering >Integrated Coordination Improvement of Droop Control for Medium and Low Voltage DC Distribution Network
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Integrated Coordination Improvement of Droop Control for Medium and Low Voltage DC Distribution Network

机译:中和低电压直流分布网络下垂控制的综合协调改进

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摘要

In view of the traditional droop control, when the DC distribution network is disturbed or faulted, the transient voltage stability of the DC distribution network is poor due to the nonlinearity of the system and the fixed droop coefficient. The actual operation of the converter station margin cannot be considered, which is prone to full load problem. In order to solve the above problem, firstly, we propose an adaptive comprehensive coordinated improvement droop control strategy, including an outer loop adaptive droop control part which considers the power margin and voltage deviation compensation respectively, as well as an inner loop current adaptive discrete sliding mode control part. Moreover, the power margin and voltage deviation of each converter station are considered comprehensively, through a real-time adaptive adjustment of the droop coefficient, to reasonably distribute the unbalanced power within the DC grid after disturbance and reduce the deviation of the DC voltage. Finally, we use a four-terminal medium and low voltage DC distribution of the system to attain the simulation results as an example which verifies the effectiveness and correctness of the proposed control strategy. (c) 2022 Institute of Electrical Engineers of Japan. Published by Wiley Periodicals LLC.
机译:鉴于传统的下垂控制,当DC分布网络受到干扰或故障时,由于系统的非线性和固定的下垂系数,直流分布网络的瞬时电压稳定性很差。无法考虑转换器站边缘的实际操作,这很容易出现全负载问题。为了解决上述问题,首先,我们提出了一种自适应的全面协调改进的下垂控制策略,包括外圈自适应下垂控制部件,分别考虑了功率余量和电压偏差补偿,以及内部环路电流自适应自适应离散滑动滑动滑道模式控制零件。此外,通过对下垂系数的实时自适应调整,全面考虑了每个转换器站的功率光缘和电压偏差,从而在干扰后合理地分布了DC网格中不平衡的功率,并减少了DC电压的偏差。最后,我们使用系统的四末端介质和低压直流分布来实现仿真结果,以验证拟议控制策略的有效性和正确性。 (c)2022日本电气工程师研究所。由Wiley Wendericals LLC出版。

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