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首页> 外文期刊>Sustainable Energy, IEEE Transactions on >Distributed Optimal Voltage Control for VSC-HVDC Connected Large-Scale Wind Farm Cluster Based on Analytical Target Cascading Method
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Distributed Optimal Voltage Control for VSC-HVDC Connected Large-Scale Wind Farm Cluster Based on Analytical Target Cascading Method

机译:基于分析目标级联方法的VSC-HVDC连接大型风电场集群的分布式最优电压控制

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摘要

This article proposes an analytical target cascading (ATC) based distributed optimal voltage control (DOVC) scheme for the voltage-source-converter high-voltage-direct-current (VSC-HVDC) connected large-scale wind farm cluster (WFC). The aims are to minimize the voltage fluctuations of the point of connection (POC), collector buses, and wind turbine (WT) terminal buses inside the WFC while regulating the bus voltages close to the rated voltage and smooth the reactive power outputs of the WTs. With the DOVC scheme, the large-scale strongly coupled sensitivity-based voltage optimization problem is decomposed and solved in the WFC voltage-source-converter (WFCVSC) controller and sub-wind farm controllers in parallel. The DOVC scheme considers the N-1 principle to improve the reliability, and distributes computation burden to several controllers to achieve better scalability of the WFC. The optimization subproblems are solved with local constraints and local measurements while guaranteeing the optimality of the primal optimization problem. A WFC with 5 wind farms and each wind farm consisting of 20 WTs is used to validate the proposed DOVC scheme.
机译:本文提出了一种用于电压 - 源转换器高压直流电流(VSC-HVDC)的分析目标级联(ATC)的分布式最佳电压控制(DOVC)方案连接的大型风电场群(WFC)。目的是最小化WFC内部连接点(POC),收集器总线和风力涡轮机(WT)终端总线的电压波动,同时调节靠近额定电压的总线电压并平滑WTS的无功功率输出。利用DOVC方案,在WFC电压 - 源转换器(WFCVSC)控制器和亚风电场控制器中,大规模强大耦合的基于灵敏度的电压优化问题并行地分解并解决。 DOVC计划考虑了N-1原理来提高可靠性,并将计算负担分配给几个控制器以实现WFC的更好可扩展性。优化子节点用局部约束和局部测量来解决,同时保证原始优化问题的最优性。使用5个风电场和由20个WT组成的每个风电场的WFC用于验证所提出的DOVC计划。

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