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A Power Loss Ride Through Control Strategy for Variable Speed Drives based on the Modular Multilevel Matrix Converter

机译:基于模块化多级矩阵转换器的可变速度驱动器控制策略,电力损耗乘坐

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Modern variable-speed drives must be able to deal with ride-through faults with dips of 70–90% to ensure the continuity of the process without the energy store station discharge and carry out significant effects to its performance. So, the existent contingencies to such case are tripping-method from grid, robust DC-Link with higher capacitors and additional power electronic hardware. Nevertheless, they comprehend a common drawback for being costly in the industry. Therefore, the Power Loss Ride Through behaviour on variable-speed drives is an important feature which is a worst-case where the system can suffer dips near to 99% on grid. Recently, Modular Multilevel Cascade Converters have been applied in Variable-Speed Drives applications due to their capability to operate at high-power rates and features such as enhanced fault-ride through capability during critical dip voltage (e.g., 99% of amplitude) in grid. Therefore, this paper presents a control strategy based on a transition mechanism between outer control loops on the nested control of a Modular Multilevel Matrix Converter drive with the aim to improve the Power Loss Ride-Through performance through keeping the energy store station uniform and stable. Simulation results obtained using PLECS software are presented to validate the effectiveness of the proposed control strategy.
机译:现代变速驱动器必须能够处理乘坐频率的故障,倾角为70-90%,以确保没有能源储存站放电的过程的连续性,并对其性能进行显着影响。因此,这种情况的存在的突发事件是来自电网的跳闸方法,具有较高电容器和额外的电力电子硬件的强大的直流链路。尽管如此,他们就是在行业中昂贵的共同缺点。因此,通过变速驱动器上的行为乘坐电力损失是一个重要的特征,这是一个最坏的情况,系统可以在网格上遭受靠近99%的次数。最近,模块化多级级联转换器已在变速驱动应用中应用,由于它们以高功率速率和功能在高功率速率和具有增强的故障乘坐的功能(例如,临界倾角(例如,99%的幅度​​)在网格中的功能。因此,本文介绍了基于外部控制回路对模块化多级矩阵转换器驱动器嵌套控制的转换机制的控制策略,其目的是通过保持能量存储站均匀和稳定来改善电力损耗的性能。提出了使用PLECS软件获得的仿真结果以验证所提出的控制策略的有效性。

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