孟祥侠, 李鹏, 张全柱, 赵立永. SVC与传统无功补偿装置在煤矿系统中组合配置[J]. 煤矿安全, 2014, 45(10): 83-85.
    引用本文: 孟祥侠, 李鹏, 张全柱, 赵立永. SVC与传统无功补偿装置在煤矿系统中组合配置[J]. 煤矿安全, 2014, 45(10): 83-85.
    MENG Xiangxia, LI Peng, ZHANG Quanzhu, ZHAO Liyong. Combination Allocation of SVC and Traditional Reactive Compensation in Coal Mine[J]. Safety in Coal Mines, 2014, 45(10): 83-85.
    Citation: MENG Xiangxia, LI Peng, ZHANG Quanzhu, ZHAO Liyong. Combination Allocation of SVC and Traditional Reactive Compensation in Coal Mine[J]. Safety in Coal Mines, 2014, 45(10): 83-85.

    SVC与传统无功补偿装置在煤矿系统中组合配置

    Combination Allocation of SVC and Traditional Reactive Compensation in Coal Mine

    • 摘要: 针对煤矿供配电系统中自然功率因数低、传统的无功分布不尽合理以及非线性冲击负荷造成的电能损耗大、母线电压瞬间波动等问题,探索了技术和经济2方面均较为可行的解决方案:对于煤矿系统中10 kV或6 kV以及660 V母线,均应在母线上集中配置一部分传统无功补偿设备及一部分SVC装置,其中SVC容量应不小于母线所接负荷最大可能波动量;而对于供电距离较远的个别大功率设备,还需单独就地安装无功补偿设备。这种组合配置,不仅解决了煤矿电压瞬间波动、闪变的现象,也能明显降低电能损耗。

       

      Abstract: For large power loss and bus voltage instantaneous fluctuation caused by low natural power-factor, unreasonable distribution of traditional reactive power and un-linear shock load in coal mine power supply and distribution system, a solution was introduced in technique and economy, in which part of the traditional reactive compensation and part of the SVC devices should be centrally allocated on 910 kV or 6 kV and 660 V bus in coal mine, SVC capacity should not be less than maximum possible fluctuation amount of bus load; for remote distance big power device, reactive compensation should be installed separately in the vicinity. This combination not only can solve the coal bus voltage instantaneous fluctuation, but also can reduce power energy loss.

       

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