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電動(dòng)裝載機(jī)電液復(fù)合制動(dòng)協(xié)同控制策略研究
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福建省教育廳中青年教師科研項(xiàng)目(JAT201042),、福建省自然科學(xué)基金重點(diǎn)項(xiàng)目(2021J02013)和廈門(mén)市重大科技計(jì)劃項(xiàng)目(3502Z20231013)


Collaborative Control Strategy of Composite Braking for Electric Loader
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    摘要:

    針對(duì)電動(dòng)裝載機(jī)的電液復(fù)合制動(dòng)系統(tǒng),,為滿足多工況制動(dòng)需求以及保障制動(dòng)安全性,,本文提出了一種基于再生制動(dòng)自由行程液壓制動(dòng)閥的電動(dòng)裝載機(jī)液壓制動(dòng)系統(tǒng),。結(jié)合電動(dòng)裝載機(jī)的理想前后輪制動(dòng)力分配曲線以及制動(dòng)意圖識(shí)別得到的制動(dòng)強(qiáng)度,制定了制動(dòng)強(qiáng)度與整車(chē)制動(dòng)力矩需求的分配曲線,;為進(jìn)一步提高再生制動(dòng)力與液壓制動(dòng)力分配的協(xié)調(diào)性,,同時(shí)兼顧制動(dòng)能量回收效率,提出了一種基于行走再生制動(dòng)和液壓制動(dòng)的電液復(fù)合制動(dòng)協(xié)同控制策略,,降低了整車(chē)總制動(dòng)力矩波動(dòng),保證了制動(dòng)模式切換的平順性,。最后,,搭建了基于AMESim-Matlab/Simulink聯(lián)合仿真模型,并搭建試驗(yàn)樣機(jī),,驗(yàn)證了電動(dòng)裝載機(jī)復(fù)合制動(dòng)協(xié)同控制策略的可行性,,結(jié)果表明,該系統(tǒng)能量回收效率可達(dá)71.6%,,制動(dòng)回收率可達(dá)44.5%,,一個(gè)工作循環(huán)實(shí)現(xiàn)節(jié)能7.6%,說(shuō)明本文提出的控制策略具有良好的制動(dòng)性能和能量回收效率,。

    Abstract:

    Considering the electro-hydraulic composite braking system of electric loader, a hydraulic braking system based on hydraulic brake valve with regenerative braking free stroke was proposed to meet the braking requirements of multi-working conditions and ensure braking safety. The stroke of hydraulic brake valve was divided into motor regenerative brake free stroke and hydraulic brake stroke, which was one of the judgment conditions for hydraulic brake system intervention. Based on the ideal curves of front and rear wheel braking force distribution for electric loader and the braking strength obtained from the braking intention identification, a distribution curve between braking intensity and the vehicle torque demand was developed. To further improve the coordination of distribution for regenerative braking force and hydraulic braking force while taking into account energy recovery efficiency, a collaborative control strategy of electro-hydraulic composite braking was proposed. When hydraulic braking system was involved, the regenerative braking torque was changed with the hydraulic braking torque, reducing the fluctuation of vehicle total braking torque and ensuring smoothness during the braking mode switching process. Finally, the co-simulation model based on AMESim-Matlab/Simulink was studied, and an experimental prototype was built to verify the feasibility of collaborative control strategy of composite braking for electric loader. The results showed that the energy recovery efficiency was up to 71.6%, the recovery rate of braking was up to 44.5%, and the energy saving was up to 7.6% in one working cycle. The proposed control strategy had good braking performance and energy recovery efficiency.

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葉月影,吳瑕,林添良.電動(dòng)裝載機(jī)電液復(fù)合制動(dòng)協(xié)同控制策略研究[J].農(nóng)業(yè)機(jī)械學(xué)報(bào),2024,55(6):442-450. YE Yueying, WU Xia, LIN Tianliang. Collaborative Control Strategy of Composite Braking for Electric Loader[J]. Transactions of the Chinese Society for Agricultural Machinery,2024,55(6):442-450.

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  • 收稿日期:2024-01-17
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  • 在線發(fā)布日期: 2024-06-10
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