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AC voltage control of DC/DC converters based on modular multilevel converters in multi-terminal high-voltage direct current transmission systems

机译:多端子高压直流输电系统中基于模块化多电平转换器的DC / DC转换器的交流电压控制

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摘要

The AC voltage control of a DC/DC converter based on the modular multilevel converter (MMC) is considered under normal operation and during a local DC fault. By actively setting the AC voltage according to the two DC voltages of the DC/DC converter, the modulation index can be near unity, and the DC voltage is effectively utilized to output higher AC voltage. This significantly decreases submodule (SM) capacitance and conduction losses of the DC/DC converter, yielding reduced capital cost, volume, and higher efficiency. Additionally, the AC voltage is limited in the controllable range of both the MMCs in the DC/DC converter; thus, over-modulation and uncontrolled currents are actively avoided. The AC voltage control of the DC/DC converter during local DC faults, i.e., standby operation, is also proposed, where only the MMC connected on the faulty cable is blocked, while the other MMC remains operational with zero AC voltage output. Thus, the capacitor voltages can be regulated at the rated value and the decrease of the SM capacitor voltages after the blocking of the DC/DC converter is avoided. Moreover, the fault can still be isolated as quickly as the conventional approach, where both MMCs are blocked and the DC/DC converter is not exposed to the risk of overcurrent. The proposed AC voltage control strategy is assessed in a three-terminal high-voltage direct current (HVDC) system incorporating a DC/DC converter, and the simulation results confirm its feasibility.
机译:在正常操作下和本地DC故障期间,将考虑基于模块化多电平转换器(MMC)的DC / DC转换器的AC电压控制。通过根据DC / DC转换器的两个DC电压主动设置AC电压,调制指数可以接近于1,并且DC电压被有效地利用以输出更高的AC电压。这显着降低了DC / DC转换器的子模块(SM)电容和传导损耗,从而降低了投资成本,减小了体积并提高了效率。另外,AC电压被限制在DC / DC转换器中两个MMC的可控制范围内。因此,积极地避免了过调制和不受控制的电流。还提出了在局部直流故障(即待机操作)期间对DC / DC转换器的交流电压控制,其中仅阻塞连接在故障电缆上的MMC,而另一个MMC保持交流电压输出为零。因此,可以将电容器电压调节为额定值,并且避免了在DC / DC转换器阻塞之后SM电容器电压的降低。此外,仍然可以像传统方法一样迅速地隔离故障,在常规方法中,两个MMC均被阻塞,并且DC / DC转换器不会承受过电流的风险。在包含DC / DC转换器的三端高压直流(HVDC)系统中评估了提出的交流电压控制策略,仿真结果证实了其可行性。

著录项

  • 作者

    Li Rui; Fletcher John E.;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-20 20:45:54

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