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《Automation of Electric Power Systems》 2013-04
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Transmission System Planning Considering Capability of Accommodating Intermittent Generation Sources

HUANG Yuchun1,YANG Jiajia1,WEN Fushuan1,WANG Chao2,ZHANG Jing2,XU Qifeng2(1.College of Electrical Engineering,Zhejiang University,Hangzhou 310027,China;2.Zhejiang Electric Power Corporation,Hangzhou 310027,China)  
The ever-increasing penetration of intermittent renewable generation in the power systems gives rise to a higher demand of more accommodating capability and more transmission capability.In the transmission system planning,a compromise must be appropriately made between maximizing the accommodating capability of renewable generation and making fully using of the transmission capacity.Under this background,a bi-level programming model is developed for transmission system planning with the capability of accommodating high penetration of intermittent renewable generation being considered.In the upper model,the economic objective is mainly addressed by minimizing the investment cost associated with transmission planning,while in the lower level the objective is to minimize the sum of the penalties for abandoning wind and for load shedding,and security constraints are checked for different scenarios considering the uncertainties associated with outputs of renewable generation,load fluctuations,and random outages of devices/components.Then,the well-established particle swarm optimization(PSO) algorithm and the commercially available ILOG CPLEX are employed to solve the upper-level and lower-level optimization problems,respectively.Finally,a modified Brazilian southern 46-bus system with three wind farms is used for demonstrating the essential features of the developed model and employed algorithm.
【Fund】: 国家高技术研究发展计划(863计划)资助项目(2011AA05A105);; 浙江省电力公司重点科技项目(11-110105-027)~~
【CateGory Index】: TM715
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