可再生能源集成有源配电系统的电压-无功协调控制

Xiangsheng Lai, Z. Yang, Guangyi Liu, Shuang Gao, Dan Wang, Jia Tang, Zhaoyu Chen, H. Jia
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引用次数: 6

摘要

提出了一种基于电压调节器和无功补偿器的可再生能源现代配电网电压-无功控制策略。主动配电网是指具有先进计算、控制和通信能力的配电网,随着主动配电网的出现,VVC技术重新受到人们的关注。配电系统的数学模型包含了各种分布式发电机的详细建模,特别是风能和太阳能等可再生能源发电机,以及连续时间段内的变化负荷。协调VVC控制策略通过调整稳压器和无功功率注入的值,使电压偏差和总功率损耗最小。针对间歇性可再生能源输出和负荷变化引起的电压起伏,提出了一种VVC控制算法。提出的VVC控制策略在Matlab和GridLAB-D仿真环境中实现,该仿真环境具有详细的分布式发电和负载模型。仿真结果验证了所提出的VVC控制策略在电压平坦化和功率损耗降低方面的有效性。将大规模可再生能源纳入测试多级配电系统,可将负载电压和线路损耗限制在允许的调节范围内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coordinated Volt-VAR control in active distribution systems for renewable energy integration
A Volt-VAR control (VVC) strategy by using voltage regulators and reactive power compensators in the modern distribution grid for renewable energy integration is presented in this paper. Currently, the VVC techniques are gaining renewed interest and attention due to the emergence of active distribution grid, which refers to the distribution grid with advanced capability of computation, control and communication. The mathematical model of the distribution systems contains the detailed modeling of various distributed generators, in particular renewable energy sources such as wind and solar power generators, and the varying load over the continuous time period. The coordinated VVC control strategy adjust the value of the voltage regulator and the reactive power injection to minimize the voltage deviation and the overall power loss. A VVC control algorithm is developed to mitigate the voltage sag or swell associated with the intermittent renewable power output and load variation. The proposed VVC control strategy is implemented in the simulation environment of Matlab and GridLAB-D featured by detailed distributed generation and load models. The simulation results validate the effectiveness of the proposed VVC control strategy in terms of voltage flattening and power loss reduction. The load voltage and line losses can be limited within the allowed regulation range as a large scale renewable energy is integrated into the test multi-level distribution systems.
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