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吴碧巧,曾 实,王天一. 面向双馈风机的分层型免疫协同进化粒子群算法多参数辨识[J]. 科学技术与工程, 2019, 19(33): 179-185.
WU Bi-Qiao,ZENG Shi.Multi-parameter Identification of CO-Evolutionary Particle Swarm Optimization Algorithm Based on Hierarchical-particleImmune for DFIG[J].Science Technology and Engineering,2019,19(33):179-185.
面向双馈风机的分层型免疫协同进化粒子群算法多参数辨识
Multi-parameter Identification of CO-Evolutionary Particle Swarm Optimization Algorithm Based on Hierarchical-particleImmune for DFIG
投稿时间:2019-03-31  修订日期:2019-08-15
DOI:
中文关键词:  双馈电机  在线参数辨识  粒子群算法  人工免疫算法  精英策略  分层  克隆选择
英文关键词:DFIG  online parameter  identification particle  swarm optimi-zation  elitist strategy  Hierarchical-particle  clone selectio
基金项目:贵州省科技合作计划项目(黔科合LH字[2016]7431号)资助
        
作者单位
吴碧巧 贵州大学大数据与信息工程学院
曾 实 贵州大学电气工程学院
王天一 贵州大学大数据与信息工程学院
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中文摘要:
      双馈异步电机在实际工程运行情况下是一种高度非线性动态系统,并且由于其参数随环境的强变化性,常规方法难以实时得到其高精度参数。结合粒子群算法的高效多模态收敛性能以及免疫机理全局优化能力强等特点,研究了分层型免疫协同进化粒子群算法(CO-Evolutionary Particle Swarm Optimization Algorithm Based on Hierarchical-particle Immune, HICPSO)智能计算模型参数。将该方法应用于双馈电机参数辨识与建模,提出了分层型免疫协同进化粒子群算法的双馈电机在线参数辨识。仿真结果表明该算法只需要采集控制过程中的数据,不需要数据手册的电机设计值等其他参数,且能在双馈电机运行实时跟随电机参数变化。
英文摘要:
      The doubly-fed induction motor is a highly nonlinear dynamic system under actual engineering operation conditions, due to the strong variability of its parameters with the environment, it is difficult for conventional methods to obtain high-precision parameters in real time. Combining the high-efficiency multi-modal convergence performance of the particle swarm optimization algorithm(PSO) and the immune mechanism have the ability of strong global optimization search, the parameters of the Intelligent Calculation Model of Co-evolutionary Particle Swarm Optimization Algorithm Based on Hierarchical-particle Immune (HICPSO) are studied. The method is applied to parameter identification and modeling of doubly-fed machines, and the online parameter identification of doubly-fed machines based on HICPSO is proposed. The simulation results show that the algorithm only needs to collect the data in the control process, does not need other parameters such as the motor design value of the data sheet, and can follow the motor parameter change in real time in the doubly-fed motor operation.
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