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Power Sharing Control Strategy of Multiterminal VSC-HVDC Transmission Systems Utilizing Adaptive Voltage Droop

机译:利用自适应电压降的多端VSC-HVDC输电系统功率共享控制策略

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摘要

This paper presents an adaptive droop-based power-sharing control strategy. The primary objective is to control the sharing of the active power transmitted by a multiterminal voltage-source converter based high voltage direct current network among a number of onshore ac grids or offshore loads based on the desired percentage shares. The shared power is generated by remote generation plants (e.g., offshore wind farms) or is provided as surplus from ac grids. The desired percentage shares of active power are optimized by the system operator in order to fulfil the active power requirements of the connected grids with respect to meeting goals such as supporting energy adequacy, increasing renewable energy penetration, and minimizing losses. The control strategy is based on two hierarchal levels: voltage-droop control as the primary controller and an optimal-power flow based secondary (supervisory) controller for selecting the optimal droop reference voltages. Based on the dc voltage transient and steady-state dynamics, a methodology for choosing the droop gains for droop controlled converters has been developed. The proposed control strategy has been validated through simulation on the CIGRE B4 dc grid test system. The results confirmed the flexibility and effectiveness of the power-sharing control provided by the new control strategy.
机译:本文提出了一种基于自适应下垂的功率共享控制策略。主要目标是基于所需的百分比份额,控制多个陆上交流电网或海上负载之间由基于多端电压源转换器的高压直流网络传输的有功功率的共享。共享电力由远程发电厂(例如海上风电场)产生,或作为交流电网的剩余电力提供。为了满足诸如支持能源充足性,增加可再生能源的普及以及使损失最小化的目标,系统操作员可以优化期望的有功功率的百分比份额,以便满足连接电网的有功功率要求。该控制策略基于两个层次级别:电压降控制作为主要控制器,以及基于最优潮流的次级(监控)控制器,用于选择最佳下垂参考电压。基于直流电压瞬态和稳态动态特性,已开发出一种用于选择下垂控制转换器的下垂增益的方法。通过在CIGRE B4直流电网测试系统上进行仿真,已验证了所提出的控制策略。结果证实了新控制策略提供的功率共享控制的灵活性和有效性。

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