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Study on an Improved Model Predictive Control Strategy with Power Self-coordination for VSC-MTDC

机译:改进模型预测控制策略对VSC-MTDC的动力自我协调

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Multi-terminal HVDC transmission based on the development of HVDC is an important way of power transmission of new energy in the future. But its control strategy is complex, especially the coordinated control between stations. A three-terminal parallel VSC-MTDC simulation model in the MATLAB/Simulink platform is built in the article. An improved model predictive control strategy with power self-coordination is put forward. A single converter station takes the model predictive control with power consumption as the cost function. And the coordinated control between converter stations is fulfilled by DC power control which is controlled by the cost function in model predictive control. Thus, coordinated control between converter stations and the control of converter are of organic combination through the cost function. When disturb occurs in any converter station except the main converter or one converter station is out of work, the main converter station provides the power compensation to ensure the system keep working, Without the need for additional coordinated controller design, greatly reducing the economic consumption, improving economic benefit. And each converter station is relatively independent, the system stability is better. In general, the simulation results prove the effectiveness of this method, which provides a new way for VSC-MTDC control.
机译:基于HVDC的开发的多终端HVDC传输是未来新能源传输的重要途径。但其控制策略复杂,特别是站点之间的协调控制。 MATLAB / SIMULINK平台中的三端并行VSC-MTDC仿真模型内置于文章中。提出了一种改进的模型预测控制策略,具有权力自我协调。单个转换器站采用模型预测控制,功耗为成本函数。通过DC功率控制实现转换器站之间的协调控制,该直流功率控制由模型预测控制中的成本函数控制。因此,转换器站之间的协调控制和转换器的控制通过成本函数具有有机组合。当在任何转换器站发生故障外,除主转换器或一个转换器站失效时,主转换器站提供功率补偿,以确保系统继续工作,无需额外的协调控制器设计,大大降低了经济消耗,大大降低了经济消耗,提高经济效益。每个转换器站都相对独立,系统稳定性更好。通常,仿真结果证明了这种方法的有效性,它为VSC-MTDC控制提供了一种新的方式。

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