This work presents a fuzzy based methodology for distribution system feeder reconfiguration considering DSTATCOM with an objective of minimizing real power loss and operating cost. Installation costs of DSTATCOM devic...This work presents a fuzzy based methodology for distribution system feeder reconfiguration considering DSTATCOM with an objective of minimizing real power loss and operating cost. Installation costs of DSTATCOM devices and the cost of system operation, namely, energy loss cost due to both reconfiguration and DSTATCOM placement, are combined to form the objective function to be minimized. The distribution system tie switches, DSTATCOM location and size have been optimally determined to obtain an appropriate operational condition. In the proposed approach, the fuzzy membership function of loss sensitivity is used for the selection of weak nodes in the power system for the placement of DSTATCOM and the optimal parameter settings of the DFACTS device along with optimal selection of tie switches in reconfiguration process are governed by genetic algorithm(GA). Simulation results on IEEE 33-bus and IEEE 69-bus test systems concluded that the combinatorial method using DSTATCOM and reconfiguration is preferable to reduce power losses to 34.44% for 33-bus system and to 45.43% for 69-bus system.展开更多
传统DSTATCOM直接电流控制方法依赖锁相环和坐标变换,实现较为复杂,本文提出一种新型无锁相环的DSTATCOM直接电流控制方法。通过建立DSTATCOM数学模型,依据矢量等效原理计算出配电网电压有功单位分量和无功单位分量,无需锁相环和坐标变...传统DSTATCOM直接电流控制方法依赖锁相环和坐标变换,实现较为复杂,本文提出一种新型无锁相环的DSTATCOM直接电流控制方法。通过建立DSTATCOM数学模型,依据矢量等效原理计算出配电网电压有功单位分量和无功单位分量,无需锁相环和坐标变换便可实现无功补偿控制。仿真验证了该方法的可行性。采用DSP控制器TMS320F2812和智能功率模块PM300DVA120,搭建了DSTATCOM系统实验平台,在开关频率10 k Hz、死区时间4μs下获得良好的实验结果。所提方法物理意义清晰且易于嵌入式控制器实现。实验结果表明,所提方法能实现输出电流超前滞后电压的无功补偿实时控制,具有良好的动静态响应性能。展开更多
基金supported by Borujerd Branch,Islamic Azad University Iran
文摘This work presents a fuzzy based methodology for distribution system feeder reconfiguration considering DSTATCOM with an objective of minimizing real power loss and operating cost. Installation costs of DSTATCOM devices and the cost of system operation, namely, energy loss cost due to both reconfiguration and DSTATCOM placement, are combined to form the objective function to be minimized. The distribution system tie switches, DSTATCOM location and size have been optimally determined to obtain an appropriate operational condition. In the proposed approach, the fuzzy membership function of loss sensitivity is used for the selection of weak nodes in the power system for the placement of DSTATCOM and the optimal parameter settings of the DFACTS device along with optimal selection of tie switches in reconfiguration process are governed by genetic algorithm(GA). Simulation results on IEEE 33-bus and IEEE 69-bus test systems concluded that the combinatorial method using DSTATCOM and reconfiguration is preferable to reduce power losses to 34.44% for 33-bus system and to 45.43% for 69-bus system.
文摘传统DSTATCOM直接电流控制方法依赖锁相环和坐标变换,实现较为复杂,本文提出一种新型无锁相环的DSTATCOM直接电流控制方法。通过建立DSTATCOM数学模型,依据矢量等效原理计算出配电网电压有功单位分量和无功单位分量,无需锁相环和坐标变换便可实现无功补偿控制。仿真验证了该方法的可行性。采用DSP控制器TMS320F2812和智能功率模块PM300DVA120,搭建了DSTATCOM系统实验平台,在开关频率10 k Hz、死区时间4μs下获得良好的实验结果。所提方法物理意义清晰且易于嵌入式控制器实现。实验结果表明,所提方法能实现输出电流超前滞后电压的无功补偿实时控制,具有良好的动静态响应性能。