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Operation and control design of an input-series-input-parallel-output-series conversion scheme for offshore DC wind systems

机译:海上直流风电系统输入-输入-并行-输出-转换方案的运行与控制设计

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摘要

High-power converters for high voltage direct current (HVDC) transmission systems and collecting networks are attracting increasing interest for application in large offshore wind farms. Offshore wind farms are capable of generating more electric energy at lower cost when compared with onshore wind systems. In this context, DC/DC voltage conversion should be achieved with a power converter that uses readily available semiconductor devices. A modular DC/DC converter can achieve the required system currents and voltages without exceeding semiconductor ratings. In this paper, the operation and control strategy for an Input-Series-Input-Parallel-Output-Series (ISIPOS) energy conversion system for wind systems are presented. The ISIPOS system allows the direct connection of wind turbines to the DC grid. In this research, the design process to control the input and output currents and voltages is explained. In addition, a new method to ensure voltage and current sharing between the different modules is presented and explained. The basic structure, control design, and system performance are tested using MATLAB/SIMULINK. Practical results validate the control design flexibility of the ISIPOS topology when controlled by a TMSF280335 DSP.
机译:用于大型直流风力发电场的高压直流(HVDC)传输系统和收集网络的大功率转换器引起了越来越多的兴趣。与陆上风电系统相比,海上风电场能够以较低的成本产生更多的电能。在这种情况下,DC / DC电压转换应通过使用容易获得的半导体器件的功率转换器来实现。模块化DC / DC转换器可以实现所需的系统电流和电压,而不会超过半导体额定值。本文提出了一种用于风力系统的输入系列-输入-并联-输出系列(ISIPOS)能量转换系统的运行和控制策略。 ISIPOS系统允许风力涡轮机直接连接到直流电网。在这项研究中,解释了控制输入,输出电流和电压的设计过程。另外,提出并解释了一种确保不同模块之间电压和电流共享的新方法。使用MATLAB / SIMULINK测试了基本结构,控制设计和系统性能。实际结果验证了当由TMSF280335 DSP控制时,ISIPOS拓扑的控制设计灵活性。

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