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第3期 赵文清,等:智能水滴算法与SQP相混合的电力环境经济调度 ·351· [6]刘自发,张建华.一种求解电力经济负荷分配问题的改进 and hybrid PSO-SQP methods for solving dynamic eco- 微分进化算法[].中国电机工程学报,2008,28(10): nomic emission dispatch problem with valve-point 100-105. effects[J].Electric power systems research,2013,103: LIU Zifa,ZHANG Jianhua.An improved differential evolu- 192-200. tion algorithm for economic dispatch of power systems[J]. [15]TEYMOURIAN E,KAYVANFAR V.KOMAKI G M,et Proceedings of the CSEE,2008,28(10):100-105. al.Enhanced intelligent water drops and cuckoo search al- [⑦)黄伟,黄婷,周欢,等.基于改进微分进化算法的微电网动 gorithms for solving the capacitated vehicle routing prob- 态经济优化调度[J].电力系统自动化,2014,38(9): lem[J].Information sciences,2016,334-335:354-378. 211-217. [16]SHAH-HOSSEINI H.The intelligent water drops al- HUANG Wei,HUANG Ting,ZHOU Huan,et al.Dynamic gorithm:a nature-inspired swarm-based optimization al- economical dispatch for microgrid based on improved dif- gorithm[J].International journal of bio-inspired computa- ferential evolution algorithm[J].Automation of electric tion,2009,1(1/2):71-79. power systems,2014,38(9):211-217. [17]DUAN Haibin,LIU Senqi,WU Jiang.Novel intelligent [8]龙军,郑斌,郭小璇,等.一种求解环境经济发电调度的交 water drops optimization approach to single UCAV smooth 互式多目标优化方法[刀.电力自动化设备,2013,33(5): trajectory planning[J].Aerospace science and technology, 83-88 2009.13(8442-449. LONG Jun,ZHENG Bin,GUO Xiaoxuan,et al.Interactive [18]BASEMO A,WONG L P,LIM C P,et al.A modified in- multi-objective optimization of environmental and econom- telligent water drops algorithm and its application to optim- ic power generation scheduling[J].Electric power automa- ization problems[J].Expert systems with applications, tion equipment,2013,33(5):83-88. 2014,41(15):6555-6569. [9]ABDELAZIZ A Y,ALIE S,ELAZIM S M A.Implementa- [19]张鼎逆,刘毅.基于改进遗传算法和序列二次规划的再 tion of flower pollination algorithm for solving economic 入轨迹优化[J].浙江大学学报:工学版,2014,48(1): 161-167. load dispatch and combined economic emission dispatch problems in power systems[J].Energy,2016,101:506-518. ZHANG Dingni,LIU Yi.Reentry trajectory optimization [10]徐丈星,耿志强,朱群雄,等.基于SQP局部搜索的混沌 based on improved genetic algorithm and sequential quad- 粒子群优化算法).控制与决策,2012,27(4:557-561. ratic programming[J].Journal of Zhejiang university:en- XU Zhangxing,GENG Zhiqiang,ZHU Qunxiong,et al. gineering science,2014,48(1):161-167. [20]BASU M.Dynamic economic emission dispatch using Chaos particle swarm optimization algorithm integrated nondominated sorting genetic algorithm-II [J].Internation- with sequential quadratic programming local search[J]. al journal of electrical power energy systems,2008, Control and decision,2012,27(4):557-561. 30(2):140-149 [11]陈伟,贾立.间歇过程PSO-SQP混合优化算法研究. 仪器仪表学报,2016,37(2:339-347 作者简介: CHEN Wei,JIA Li.PSO-SQP hybrid optimization al- 赵文清,女,1973年生,教授,博 gorithm for batch processes[J].Chinese journal of scientif- 士,主要研究方向为人工智能与数据 挖掘。发表学术论文50余篇,被 ic instrument..2016,37(2):339-347. SCI、EI检索30余篇。 [12]ELAIW A M,XIA X,SHEHATA A M.Solving dynamic economic emission dispatch problem with valve-point ef- fects using hybrid DE-SQP[C]//Proceedings of Power En- gineering Society Conference and Exposition in Africa.Jo- hannesburg,South Africa,2012:1-6. 罩智补,男,1992年生,硕士研究 生,主要研究方向为人工智能在电力 [13]BASU M.Hybridization of bee colony optimization and 系统中的应用。 sequential quadratic programming for dynamic economic dispatch[J].International journal of electrical power en- ergy systems,2013,441):591-596. [14]ELAIW A M,XIA X,SHEHATA A M.Hybrid DE-SQP刘自发, 张建华. 一种求解电力经济负荷分配问题的改进 微分进化算法[J]. 中国电机工程学报, 2008, 28(10): 100–105. LIU Zifa, ZHANG Jianhua. An improved differential evolu￾tion algorithm for economic dispatch of power systems[J]. Proceedings of the CSEE, 2008, 28(10): 100–105. [6] 黄伟, 黄婷, 周欢, 等. 基于改进微分进化算法的微电网动 态经济优化调度[J]. 电力系统自动化, 2014, 38(9): 211–217. HUANG Wei, HUANG Ting, ZHOU Huan, et al. Dynamic economical dispatch for microgrid based on improved dif￾ferential evolution algorithm[J]. Automation of electric power systems, 2014, 38(9): 211–217. [7] 龙军, 郑斌, 郭小璇, 等. 一种求解环境经济发电调度的交 互式多目标优化方法[J]. 电力自动化设备, 2013, 33(5): 83–88. LONG Jun, ZHENG Bin, GUO Xiaoxuan, et al. Interactive multi-objective optimization of environmental and econom￾ic power generation scheduling[J]. Electric power automa￾tion equipment, 2013, 33(5): 83–88. [8] ABDELAZIZ A Y, ALI E S, ELAZIM S M A. Implementa￾tion of flower pollination algorithm for solving economic load dispatch and combined economic emission dispatch problems in power systems[J]. Energy, 2016, 101: 506–518. [9] 徐丈星, 耿志强, 朱群雄, 等. 基于 SQP 局部搜索的混沌 粒子群优化算法[J]. 控制与决策, 2012, 27(4): 557–561. XU Zhangxing, GENG Zhiqiang, ZHU Qunxiong, et al. Chaos particle swarm optimization algorithm integrated with sequential quadratic programming local search[J]. Control and decision, 2012, 27(4): 557–561. [10] 陈伟, 贾立. 间歇过程 PSO-SQP 混合优化算法研究[J]. 仪器仪表学报, 2016, 37(2): 339–347. CHEN Wei, JIA Li. PSO-SQP hybrid optimization al￾gorithm for batch processes[J]. Chinese journal of scientif￾ic instrument, 2016, 37(2): 339–347. [11] ELAIW A M, XIA X, SHEHATA A M. Solving dynamic economic emission dispatch problem with valve-point ef￾fects using hybrid DE-SQP[C]//Proceedings of Power En￾gineering Society Conference and Exposition in Africa. Jo￾hannesburg, South Africa, 2012: 1–6. [12] BASU M. Hybridization of bee colony optimization and sequential quadratic programming for dynamic economic dispatch[J]. International journal of electrical power & en￾ergy systems, 2013, 44(1): 591–596. [13] [14] ELAIW A M, XIA X, SHEHATA A M. Hybrid DE-SQP and hybrid PSO-SQP methods for solving dynamic eco￾nomic emission dispatch problem with valve-point effects[J]. Electric power systems research, 2013, 103: 192–200. TEYMOURIAN E, KAYVANFAR V, KOMAKI G M, et al. Enhanced intelligent water drops and cuckoo search al￾gorithms for solving the capacitated vehicle routing prob￾lem[J]. Information sciences, 2016, 334-335: 354–378. [15] SHAH-HOSSEINI H. The intelligent water drops al￾gorithm: a nature-inspired swarm-based optimization al￾gorithm[J]. International journal of bio-inspired computa￾tion, 2009, 1(1/2): 71–79. [16] DUAN Haibin, LIU Senqi, WU Jiang. Novel intelligent water drops optimization approach to single UCAV smooth trajectory planning[J]. Aerospace science and technology, 2009, 13(8): 442–449. [17] BASEM O A, WONG L P, LIM C P, et al. A modified in￾telligent water drops algorithm and its application to optim￾ization problems[J]. Expert systems with applications, 2014, 41(15): 6555–6569. [18] 张鼎逆, 刘毅. 基于改进遗传算法和序列二次规划的再 入轨迹优化[J]. 浙江大学学报: 工学版, 2014, 48(1): 161–167. ZHANG Dingni, LIU Yi. Reentry trajectory optimization based on improved genetic algorithm and sequential quad￾ratic programming[J]. Journal of Zhejiang university: en￾gineering science, 2014, 48(1): 161–167. [19] BASU M. Dynamic economic emission dispatch using nondominated sorting genetic algorithm-Ⅱ[J]. Internation￾al journal of electrical power & energy systems, 2008, 30(2): 140–149. [20] 作者简介: 赵文清,女,1973 年生,教授,博 士,主要研究方向为人工智能与数据 挖掘。发表学术论文 5 0 余篇,被 SCI、EI 检索 30 余篇。 覃智补,男,1992 年生,硕士研究 生,主要研究方向为人工智能在电力 系统中的应用。 第 3 期 赵文清,等:智能水滴算法与 SQP 相混合的电力环境经济调度 ·351·
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