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机构地区:[1]邵阳学院电气工程系,邵阳422400 [2]湖南大学电气与信息工程学院,长沙410082
出 处:《高电压技术》2008年第4期728-733,共6页High Voltage Engineering
基 金:湖南省教育厅优秀青年项目(07B068);湖南省自然科学基金项目(07JJ6081)~~
摘 要:为寻求性能优良、容易实现的配电静止同步补偿器(DSTATCOM)的电压控制策略,根据DSTATCOM系统中的瞬时功率平衡理论,推导出了DSTATCOM用于控制电压时的直接电压控制策略。该控制策略中无需电流检测电路,跟传统的串级控制相比较具有控制简单、响应速度快等优点;针对直接电压控制策略中控制器的控制性能受系统参数影响较大的缺陷,提出了DSTATCOM的直接电压模糊PI控制策略,使根据瞬时功率平衡的直接电压控制具有更好的控制性能;同时考虑到实际电网中的电压不平衡现象普遍存在,在DSTATCOM电压控制器中引入电网电压负序分量的前馈控制,从而有效的提高了DSTATCOM在电网电压不平衡条件下的生存能力。理论分析和仿真结果证明了所提控制方法的正确性和有效性。Based on the balance of the instantaneous power of the distribution static synchronous compensator (DSTATCOM) system the direct output voltage control strategy for voltage control is proposed. In the proposed control strategy, the current detection circuit is not demanded. Compared with the cascade control strategy the pro- posed control strategy has the merits of simple structure and fast response time. But the direct output voltage con- trol strategy has not excellent control performance when the parameters of the system change. In order to overcome this problem the Fuzzy PI control is proposed. The Fuzzy PI can adjust the PI parameters according to the performance index of the control system and has the adaptability. The Fuzzy PI control makes the direct output voltage control strategy possess the better control performance. By consideration of the unbalance of the main source voltage, a negative sequence voltage feedforward control strategy is adopted in order to improve the survival capability of the DSTATCOM under unbalanced conditions. The effective and validity of the control strategy are verified by the theoretic analysis and digital simulation. Under fixed parameter condition the control strategy proposed in this paper has the better dynamical and steady performances than conventional PI control. When the parameters of the control system changed the conventional PI control in lost stability, the performance of the control strategy proposed in this paper is not affected.
关 键 词:配电静止同步补偿器 电压调节 模糊控制 瞬时功率 控制策略 直接电压控制 负序电压控制
分 类 号:TM761[电气工程—电力系统及自动化]
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