首页> 外文期刊>International Journal of Electrical Power & Energy Systems >Optimal operation of hybrid high voltage direct current and alternating current networks based on OPF combined with droop voltage control
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Optimal operation of hybrid high voltage direct current and alternating current networks based on OPF combined with droop voltage control

机译:基于OPF结合下降电压控制的混合高压直流和交流电网的优化运行。

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This study focuses on the operation and control of HVDC multi-terminal systems that transmit the power being generated in offshore wind farms to the terrestrial AC grids. The aim of the paper is to propose and validate an algorithm to ensure optimal operation of HVDC-HVAC systems. This algorithm is implemented in a central controller that, knowing the electrical characteristics of the DC and AC systems, the power generation from the wind farms and the power demand, executes periodically an AC/DC Optimal Power Flow (OPF) and sends the appropriate voltage references to the grid side converter's control. The voltage control of the DC grid is distributed and based on droop law, implemented in grid side converters. The droop offset is modified periodically so as to adapt to the actual operating conditions and ensure optimal operation according to a specified objective function. Dynamic simulations show the system optimal operation in terms of loss minimization under wind speed changes, loss of communications and demand variation. These results are validated experimentally after implementing the control scheme in an HVDC scaled experimental platform. Dynamic simulations are also performed to show that the system can still be operated based on the proposed strategy even during contingencies implying the disconnection of a power system element (converter and DC cable).
机译:这项研究的重点是高压直流输电的多终端系统的运行和控制,该系统将海上风电场中产生的电力传输到地面交流电网。本文的目的是提出并验证一种算法,以确保HVDC-HVAC系统的最佳运行。该算法在中央控制器中实施,该中央控制器了解DC和AC系统的电气特性,风电场的发电量和电力需求,并定期执行AC / DC最佳功率流(OPF)并发送适当的电压参考电网侧变流器的控制。直流电网的电压控制是分布式的,并基于下垂定律,在电网侧转换器中实现。会定期修改下垂偏移量,以适应​​实际运行条件并确保根据指定的目标函数实现最佳运行。动态仿真显示了在风速变化,通信损失和需求变化下的损失最小化方面,系统处于最佳运行状态。这些结果在HVDC规模化实验平台上实施控制方案后,通过实验进行了验证。还执行了动态仿真,以表明即使在暗示电源系统元件(转换器和DC电缆)断开的意外情况下,系统仍可以基于建议的策略进行操作。

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