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液電混合直線驅(qū)動系統(tǒng)位置控制特性研究
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國家自然科學基金項目(51875385)和山西省重點研發(fā)計劃項目(201803D421040,、201803D121003)


Position Control Performance of Hydraulic Electric Hybrid Linear Drive System
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    摘要:

    提出了一種采用電-機械直線執(zhí)行器和液壓缸的液電混合直線驅(qū)動系統(tǒng),。為消除電-機械直線執(zhí)行器和液壓缸之間的耦合影響,液壓泵和比例閥協(xié)同控制液壓缸輸出力和運行方向,,滿足系統(tǒng)負載力需求,電-機械直線執(zhí)行器用于運動控制,,并補償液壓缸輸出力波動和外部干擾力,。為實現(xiàn)上述目標,設計了基于擴張狀態(tài)觀測器的電-機械直線執(zhí)行器自適應滑??刂品椒?,以估計的負載力調(diào)節(jié)泵壓力和比例閥開度,對液壓缸輸出力進行調(diào)控,。比例閥在系統(tǒng)運行中主要用于控制液壓缸運動方向,,閥開度較大,可顯著降低節(jié)流損失,。通過仿真和試驗分析了系統(tǒng)的運行特性和能效特性,。結果表明,該系統(tǒng)具有良好的位置控制特性,,能量效率高,,較傳統(tǒng)閥控系統(tǒng)能耗減少51%。

    Abstract:

    The existing hydraulic system uses proportional valve or servo valve to control the position of hydraulic cylinder, resulting in very large throttling loss. In order to improve the hydraulic system energy efficiency, a hydraulic electric hybrid linear drive system adopting electro-mechanical linear actuator and hydraulic cylinder was proposed. In order to suppress the coupling effect between the electro-mechanical linear actuator and hydraulic cylinder, the hydraulic pump and the proportional valve were used to control the output force and operation direction of the hydraulic cylinder to meet the load force requirement of the system. The electro-mechanical linear actuator was used to control the operation position of the load. Meanwhile, in the electric motor current control loop of the electro-mechanical linear actuator, the hydraulic cylinder output force fluctuation and external interference force can be compensated. In order to realize the above target, an adaptive sliding mode control method based on extended state observer was designed for the electro-mechanical linear actuator. Based on the load force estimated by the extended state observer, the hydraulic cylinder output force can be openloop controlled by adjusting the pressure of the hydraulic pump and the opening of the proportional valve. In the proposed system, the function of the proportional valve was controlling the move direction of the hydraulic cylinder most of the time. Thus, the throttling loss can be greatly reduced. The operation performance and the energy efficiency characteristics of the hydraulicelectric hybrid driving system were analyzed through simulation and test. The results showed that the proposed system had good position control performance and high energy efficiency. Compared with the traditional valve controlled system, the proposed system’s energy consumption can be reduced by 51%.

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郝云曉,夏連鵬,葛磊,王翔宇,權龍.液電混合直線驅(qū)動系統(tǒng)位置控制特性研究[J].農(nóng)業(yè)機械學報,2020,51(3):379-385. HAO Yunxiao, XIA Lianpeng, GE Lei, WANG Xiangyu, QUAN Long. Position Control Performance of Hydraulic Electric Hybrid Linear Drive System[J]. Transactions of the Chinese Society for Agricultural Machinery,2020,51(3):379-385.

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  • 收稿日期:2019-12-13
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  • 在線發(fā)布日期: 2020-03-10
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