![一种含VSC-HVDC的交直流系统多目标潮流优化方法](/CN/2015/1/176/images/201510882003.jpg)
基本信息:
- 专利标题: 一种含VSC-HVDC的交直流系统多目标潮流优化方法
- 申请号:CN201510882003.7 申请日:2015-12-04
- 公开(公告)号:CN105321003B 公开(公告)日:2019-08-06
- 发明人: 李扬 , 李亚辉 , 李国庆 , 王振浩 , 辛业春 , 王鹤 , 王朝斌 , 刘芮彤
- 申请人: 东北电力大学 , 国网辽宁省电力有限公司电力科学研究院
- 申请人地址: 吉林省吉林市船营区长春路169号
- 专利权人: 东北电力大学,国网辽宁省电力有限公司电力科学研究院
- 当前专利权人: 东北电力大学,国网辽宁省电力有限公司电力科学研究院
- 当前专利权人地址: 吉林省吉林市船营区长春路169号
- 代理机构: 吉林市达利专利事务所
- 代理人: 陈传林
- 主分类号: G06Q10/04
- IPC分类号: G06Q10/04 ; G06Q50/06
The invention discloses a multi-objective power flow optimization method of a VSC-HVDC (voltage source converter-high voltage direct current) containing alternating-current/direct-current system, which is characterized by comprising the following steps: establishing a model, selecting to-be-optimized variables and optimization objectives, and determining constraint conditions; setting an initial variable, and giving a to-be-optimized variable range; under the condition of taking the to-be-optimized variables as population individuals in the optimization process, in a hybrid encoding mode, randomly generating an initial population according to the to-be-optimized variable range; calculating the power flow of the alternating-current/direct-current system by using an alternate iterating algorithm; getting the corresponding optimization objective function value of each individual in the population; carrying out rapid non-dominated sorting on the individuals in the population, calculating a virtual fitness, and through selection, crossing and variation processing, generating sub-populations; retaining excellent individuals in parent individuals by using an elitist strategy; judging whether algorithm termination conditions are satisfied, if so, turning to a step 9), and completing optimization; otherwise, turning to the step 4); completing the optimization process, and outputting results. The method has the advantages of scientificity, strong applicability, good effect, and the like.
公开/授权文献:
- CN105321003A 一种含VSC-HVDC的交直流系统多目标潮流优化方法 公开/授权日:2016-02-10