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A Generalized N Terminal Current Order Control Scheme for LCC MTDC

机译:LCC MTDC的广义N终端电流顺序控制方案

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This research work proposes a current order sharing technique for LCC MTDC power system. LCC MTDC architecture has great advantages over other HVDC transmission technologies because of its huge power handling capability, simple design and less initial and maintenance cost. Simple two terminal HVDC technology have evolved so much but the MTDC technology still have some outstanding problems which need to be addressed. Current order sharing between MTDC terminals plays an important role in stable DC transmission and lack of suitable current order sharing causes DC voltage collapse or current saturation problems for terminals. A dynamic current order sharing technique is developed for LCC MTDC system in which terminal current order is being calculated based on current ratio of respective terminal to total current. The technique has ability to readjust current order for each terminal in case of any disturbance. A generalized nrec × ninv terminals current order calculation method is also proposed for MTDC system. The method is investigated under fault conditions in PSCAD to check its feasibility. The results prove that the proposed technique self-adjusts current order as the fault is cleared or any terminal has lost operation.
机译:本研究工作提出了LCC MTDC电力系统的电流顺序共享技术。由于其巨大的功率处理能力,简单的设计和较少的初始和维护成本,LCC MTDC架构具有巨大优势。简单的两个终端HVDC技术已经发展得如此多,但MTDC技术仍然有一些需要解决的问题。 MTDC终端之间的当前订单共享在稳定的直流传输中起重要作用,并且缺乏适当的电流顺序共享导致直流电压折叠或终端的当前饱和问题。为LCC MTDC系统开发了动态电流顺序共享技术,其中基于各个终端与总电流的电流比计算终端电流顺序。该技术能够在任何干扰的情况下都有能够为每个终端重新计算每个终端的电流顺序。广义的n REC ×N. INV 对于MTDC系统,还提出了终端电流顺序计算方法。根据PSCAD的故障条件调查该方法,以检查其可行性。结果证明,当故障被清除或任何终端运行时,所提出的技术自我调整电流顺序。

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