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Protection of permanent faults on DC overhead lines in hybrid converter based HVDC system

机译:基于HVDC系统混合转换器中DC架空线的永久性故障保护

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Due to the popularity of power electronics devices HVDC system becomes potential candidate for grid integration of renewable energy over long transmission. The paper presents hybrid multilevel converter (HMC), which is one of the most suitable replacement for traditional voltage source converters because of fast response during dc link fault on overhead lines. HMC consists of two main parts, one which is director switches (DSs) made from number of series insulated-gate-bipolar-transistors (IGBTs) and second one is wave shaping circuit (WSC) consists of stack of full-bridge sub modules (FSMs). This paper mainly focuses on the modulation techniques and control for the DSs and WSCs. To determine the number of FSM to be inserted, nearest level control (NLC) method is used in this paper. Third harmonic injection and sorting method also discussed for the capacitor voltage balancing. Current and voltage waveforms under normal condition and dc fault condition are analyzed by using MATLAB simulation.
机译:由于电力电子设备的普及,HVDC系统成为可再生能源的潜在候选者,可再生能量长传输。本文介绍了混合多级转换器(HMC),这是传统电压源转换器最合适的更换之一,因为在架空线上的直流链路故障中快速响应。 HMC由两个主要部分组成,其中一个主要部分是由串联绝缘栅极 - 双极 - 晶体管(IGBT)和第二个是波形整体电路(WSC)制成的开关(DSS),由叠层组成( FSMS)。本文主要侧重于DSS和WSC的调制技术和控制。为了确定要插入的FSM的数量,本文使用最近的级别控制(NLC)方法。第三次谐波注入和分选方法还讨论了电容器电压平衡。通过使用MATLAB仿真分析正常情况下的电流和电压波形和DC故障条件。

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