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P-ECHPS自適應非奇異快速終端滑模控制器設計
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國家自然科學基金項目(51275211)、江蘇省高校自然科學基金項目(14KJB580003)、江蘇大學高級人才科研啟動基金項目(15JDG093)、中國博士后科學基金項目(2016M590417)和江蘇省科技成果轉化專項基金項目(BR2015168)


Design of Adaptive Nonsingular Fast Terminal Sliding Mode Controller for P-ECHPS
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    摘要:

    以永磁轉差離合器式電控液壓助力轉向系統(tǒng)(P-ECHPS)為研究對象,建立了其關鍵部件永磁轉差離合器(PMSC)調速模型及P-ECHPS各子系統(tǒng)模型。針對P-ECHPS系統(tǒng)在轉向過程中存在多種不確定性因素且要求響應速度快的特點,采用非奇異快速終端滑模與自適應控制相結合的方法,對PMSC進行調速控制,進而實現(xiàn)對P-ECHPS系統(tǒng)助力的控制。仿真分析結果表明,該方法能確保PMSC輸出轉速快速地跟蹤理想轉速,收斂速度比滑模控制和非奇異終端滑模控制分別提高了近82.9%和66.7%,具有很強的魯棒性,較好地實現(xiàn)了可變助力特性。

    Abstract:

    The permanent magnet slip clutchelectronically controlled hydraulic power steering system which is referred as P-ECHPS was proposed. The speed control model of permanent magnet slip clutch (PMSC) which is the key transmission part of P-ECHPS was established and all subsystems of P-ECHPS including of mechanical systems, hydraulic systems and three degrees of freedom steering dynamics system were also established in Matlab/Simulink. The variable assist characteristic curves were designed by analyzing the requirements of steering system under different speeds. According to the variable assist characteristic curves and the model of steering pump, the ideal speed of steering pump was obtained. For P-ECHPS containing various uncertain factors during steering process, such as parameter perturbation and external disturbance, and requirement of fast response, the adaptive nonsingular fast terminal sliding mode was used to control the speed of PMSC. Further it can realize the indirect control of P-ECHPS. The controller was designed according to the adaptive nonsingular fast terminal sliding mode control strategy. Through simulation, the results show that adaptive nonsingular fast terminal sliding mode control can ensure the output speed of PMSC track to the ideal speed quickly and has great robustness. The convergence rate of adaptive nonsingular fast terminal sliding mode control respectively increased by about 82.9% and 66.7% than that of sliding mode control and nonsingular terminal sliding mode control. It can also realize variable assist characteristic accurately to meet the handling stability and energy efficiency.

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江浩斌,龔曉慶,耿國慶,陳龍,唐斌,王愛仙. P-ECHPS自適應非奇異快速終端滑模控制器設計[J].農業(yè)機械學報,2016,47(9):374-381. Jiang Haobin, Gong Xiaoqing, Geng Guoqing, Chen Long, Tang Bin, Wang Aixian. Design of Adaptive Nonsingular Fast Terminal Sliding Mode Controller for P-ECHPS[J]. Transactions of the Chinese Society for Agricultural Machinery,2016,47(9):374-381.

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  • 收稿日期:2016-05-03
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  • 在線發(fā)布日期: 2016-09-10
  • 出版日期: 2016-09-10
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