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《Proceedings of the Csee》 2004-03
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DYNAMIC REACTIVE-POWER OPTIMIZATION ALGORITHM INCORPORATING ACTION NUMBER CONSTRAINTS OF CONTROL DEVICES

LIU Ming-bo1,ZHU Chun-ming2, QIAN Kang-ling3,LI Fang-hong3 (1. Electric Power College,South China University of Technology, Guangzhou 510640, China; 2. Electric Power Design Institute of Jiangsu Province, Nanjing 210024, China; 3. Guangzhou Branch, Guang-dian Power Grid Group Co. LTD., Guangzhou 510600, China)  
The daily active and reactive power curves of all load buses are divided into 24 segments, and action number constraints of transformers with on-load tap changers and switchable shunt capacitor banks are described by mathematical expressions of their control variables. Hence, an integrated mixed-integer/nonlinear dynamic reactive-power optimization model is presented. The nonlinear primal-dual interior-point algorithm in which penalty functions are incorporated is applied to solving this model. In optimization process, the coordination between discretization of variables and restriction of action number of control devices is realized preferably. Also, the effect of different maximum action number constraints on dynamic reactive-power optimization results is analyzed, and the result based on the proposed method is compared with that based on the static optimization method on a real power system. Furthermore, correctness and effectiveness of the proposed method and success in restricting action numbers of control devices have been validated.
【Fund】: 国家自然科学基金项目(50277013);; 广东省自然科学基金项目(011648)。~~
【CateGory Index】: TM744
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