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作 者:李晓波[1] 蒋峰景[2] 李康[1] 闫腾飞[1] 丁欣[1]
机构地区:[1]中国矿业大学信息与电气工程学院,江苏省徐州市221116 [2]国网安徽省电力公司检修公司,安徽省合肥市231131
出 处:《电力系统自动化》2016年第24期111-117,124,共8页Automation of Electric Power Systems
基 金:国家自然科学基金资助项目(51107143)~~
摘 要:传统的有源补偿中性点电压技术是通过向中性点直接注入理论计算得到的电流来实现的,且忽略了系统的绝缘电阻,这会影响中性点电压的抑制效果,并且不能对中性点电压进行柔性控制。当电网异动时,还需要频繁测量电网参数,使得该方法不适应系统结构、参数的变化。采用先向中性点注入某一初始电流,然后利用差分法的思想,同时控制注入电流的大小和相位,最终实现中性点电压的柔性控制。该方法不仅能抑制中性点电压为零,也能控制中性点电压到任意非零的目标值,有收敛速度快、能同时调节注入电流的大小和相位、能适应系统结构和参数的变化等优点,其可行性得到了仿真验证。The method of traditional active compensation for the neutral point voltage is realized by injecting a theoretically calculated current into the neutral point of the distribution network(DN).The insulation resistance of the DN affecting the compensation effect on the neutral point voltage is usually ignored.Neither is it possible to control the neutral point voltage flexibly.When the parameters of DN change,the traditional method has to measure them frequently.So it isnt effective for DN whose system architecture and parameters change frequently.A new method based on the idea of the difference method is proposed.By injecting an initial current into the neutral point of DN,and controlling the amplitude and phase of this current simultaneously,flexible control of neutral point voltage is achieved ultimately.Not only is this method able to suppress the neutral point voltage at zero,but also it can suppress the neutral point voltage to an arbitrary non-zero target.It has such advantages as fast convergence,simultaneous adjustment to the amplitude and phase of the injection current,and wide application range that together make it usable in the DN whose system structure and parameters change frequently.Its feasibility has been verified by simulation.
分 类 号:TM761.12[电气工程—电力系统及自动化]
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