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Characteristics of very fast transient currents in ultra high-voltage power system with Hybrid reactive power compensation

机译:具有混合无功补偿的超高压电力系统中非常快速的瞬态电流特性

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Hybrid reactive power compensation (HRPC) consists of a stepped controlled shunt reactor (SCSR) and a series compensation (SC), which will find applications in future ultra high-voltage (UHV) power grids to resolve the problems due to the frequent change of reactive power and bulk power transmission. However, very fast transient currents (VFTCs) are inevitably generated during switching, which would lead to insulation breakdown. In the present work, we first develop the equivalent model for HRPC, following which we deduce the expression of VFTCs in the time domain by using an inverse Laplace transform. The analysis indicates that the amplitude and frequency of VFTCs are both affected by the capacitance of the SCSR and of the SC, as well as the line length, stray capacitance, etc. The oscillating frequency, peak, and amplitude of the main frequency of the VFTCs in the substation can be modified by adjusting the silicon-controlled rectifiers in the SCSR when the disconnecting switch in gas-insulated switchgear is switched on. When the disconnecting switch in the SC is switched on, the VFTC oscillation frequency in SCSR decreases with increasing stray capacitance of SC, but the frequency and peak of the VFTC remains quite large. Increasing the line length between the SC and the SCSR suppresses the VFTC in UHV power systems. These results lay the foundation for developing HRPC methods to suppress VFTCs in UHV substations.
机译:混合无功补偿(HRPC)由步进控制并联电抗器(SCSR)和串联补偿(SC)组成,它们将在未来的超高压(UHV)电网中找到应用,以解决由于频繁更换电网而引起的问题。无功和大功率输电。但是,在开关过程中不可避免地会产生非常快速的瞬态电流(VFTC),这将导致绝缘击穿。在当前的工作中,我们首先开发了HRPC的等效模型,然后使用逆Laplace变换推导了VFTC在时域中的表达。分析表明,VFTC的幅度和频率都受SCSR和SC的电容以及线长,杂散电容等的影响。振荡频率,峰值和幅度的主频率当气体绝缘开关设备中的隔离开关接通时,可以通过调节SCSR中的可控硅整流器来修改变电站中的VFTC。当SC中的隔离开关接通时,SCSR中的VFTC振荡频率会随着SC的杂散电容的增加而降低,但是VFTC的频率和峰值仍然很大。增加SC和SCSR之间的线长会抑制特高压电源系统中的VFTC。这些结果为开发用于抑制特高压变电站中的VFTC的HRPC方法奠定了基础。

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