微电机
微電機
미전궤
MICROMOTORS SERVO TECHNIQUE
2015年
4期
84-87,94
,共5页
星载天线控制系统%PI控制%自适应Fuzzy-PI控制
星載天線控製繫統%PI控製%自適應Fuzzy-PI控製
성재천선공제계통%PI공제%자괄응Fuzzy-PI공제
antenna servo control system%PI control%adaptive fuzzy-PI control
针对星载天线伺服控制系统中传统PI控制表现出的对系统参数变化敏感、适应能力差的缺点,文中设计了自适应模糊-PI( Fuzzy-PI)控制器。通过模糊控制对PI参数进行在线自动整定,将模糊控制引入到永磁同步电机的矢量控制中去,由于模糊控制器对系统的数学模型并没有较高要求,因此有较强的鲁棒性。文中控制系统分别采用PI控制和Fuzzy-PI控制策略,然后分别进行位置跟踪仿真,并对程控跟踪过程中转动惯量增大及负载加干扰时的控制系统进行离线仿真,仿真结果表明, Fuzzy-PI控制器能融合两者优点,具有系统响应快,抗负载干扰能力强,鲁棒性好的优点,表明应用该策略可以有效的改善星载天线伺服系统的性能。
針對星載天線伺服控製繫統中傳統PI控製錶現齣的對繫統參數變化敏感、適應能力差的缺點,文中設計瞭自適應模糊-PI( Fuzzy-PI)控製器。通過模糊控製對PI參數進行在線自動整定,將模糊控製引入到永磁同步電機的矢量控製中去,由于模糊控製器對繫統的數學模型併沒有較高要求,因此有較彊的魯棒性。文中控製繫統分彆採用PI控製和Fuzzy-PI控製策略,然後分彆進行位置跟蹤倣真,併對程控跟蹤過程中轉動慣量增大及負載加榦擾時的控製繫統進行離線倣真,倣真結果錶明, Fuzzy-PI控製器能融閤兩者優點,具有繫統響應快,抗負載榦擾能力彊,魯棒性好的優點,錶明應用該策略可以有效的改善星載天線伺服繫統的性能。
침대성재천선사복공제계통중전통PI공제표현출적대계통삼수변화민감、괄응능력차적결점,문중설계료자괄응모호-PI( Fuzzy-PI)공제기。통과모호공제대PI삼수진행재선자동정정,장모호공제인입도영자동보전궤적시량공제중거,유우모호공제기대계통적수학모형병몰유교고요구,인차유교강적로봉성。문중공제계통분별채용PI공제화Fuzzy-PI공제책략,연후분별진행위치근종방진,병대정공근종과정중전동관량증대급부재가간우시적공제계통진행리선방진,방진결과표명, Fuzzy-PI공제기능융합량자우점,구유계통향응쾌,항부재간우능력강,로봉성호적우점,표명응용해책략가이유효적개선성재천선사복계통적성능。
For the conventional PI control′s sensitive to changes of system parameters and the shortcoming of poor adaptability in the satellite antenna servo control system, in this paper, adopted fuzzy-PI control meth-od.This method can realize the online self-tuning of PI parameters, in this way, fuzzy control can be intro-duced into the vector control of PMSM, because the fuzzy controller are not high demand for the mathemati-cal model of the system, there is a strong robustness.PI control and fuzzy-PI control strategy were both used in control system, and then do position tracking simulation and simulate when increased the rotational inertia and load with interference in the tracking process of program control respectively, compared the waveforms of two control ways, show that, the fuzzy-PI controller can integrate the advantages of both systems, with the advantages of fast response, well anti-interference ability and robustness, indicate that the application of the policy can effectively improve antenna servo system′s performance.