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液压机械无级变速装载机工况在线识别方法
引用本文:杨树军,褚捷豪,彭增雄,李学良,史正旭,张志林.液压机械无级变速装载机工况在线识别方法[J].农业工程学报,2022,38(4):1-11.
作者姓名:杨树军  褚捷豪  彭增雄  李学良  史正旭  张志林
作者单位:1. 燕山大学 河北省特种运载装备重点实验室,河北秦皇岛 066004;2. 北京理工大学 机械与车辆学院,北京 100081
基金项目:国家自然科学基金项目(51675462,52102429)。
摘    要:液压机械无级变速装载机发动机转速与车速解耦,具有节油、高效的优点,为了解决其工况繁多、动力匹配问题,以某液压机械无级变速装载机为研究对象,基于液压机械状态参数开展了装载机负载估计理论分析和仿真,建立了负载估计模型,仿真结果表明该方法能准确估计液压机械段内负载,结果偏差在±4.69%以内.在负载估计方法基础上,建立液压机...

关 键 词:农业机械  液压机械无级变速器  装载机  负载估计  工况识别  控制策略
收稿时间:2021/12/19 0:00:00
修稿时间:2022/2/19 0:00:00

Online identification method for wheel loader working conditions with hydro-mechanical continuously variable transmission
Yang Shujun,Chu Jiehao,Peng Zengxiong,Li Xueliang,Shi Zhengxu,Zhang Zhilin.Online identification method for wheel loader working conditions with hydro-mechanical continuously variable transmission[J].Transactions of the Chinese Society of Agricultural Engineering,2022,38(4):1-11.
Authors:Yang Shujun  Chu Jiehao  Peng Zengxiong  Li Xueliang  Shi Zhengxu  Zhang Zhilin
Institution:1. Hebei Key Laboratory of Special Delivery Equipment, Yanshan University, Qinhuangdao Hebei 066004,China;;2. School of Mechanical Engineering, Beijing Institute of Technology, Beijing 100081, China
Abstract:Abstract: A wheel loader has been widely used for shoveling and short-distance transfer of loose materials, such as loose soil, coal carbon, and garbage, particularly in construction sites, sand yards, brick factories, stations, freight yards, and farmland infrastructure. The multi-purpose and high-efficiency construction machine can also be used for hauling, grading, stacking, and palletizing operations. Generally, the loader can be equipped with hydro-mechanical continuously variable transmission (HMCVT) for fuel-saving and high efficiency, where the engine speed is decoupled from the vehicle speed. However, the engine is easy to stall, when the steering/working system works, due to the various working conditions and difficult power matching of the loader. In this study, the theoretical analysis and simulation research were carried out to estimate the load, where a loader equipped with the HMCVT was taken as the research object. The coupling model of the loader power system was established, including the engine, HMCVT, and steering/working system. The driving load estimation of loader was then implemented to evaluate the driving load of the loader, where the key parameters of hydro-machinery were taken as the input. The load estimation model of the steering/working system was constructed to combine with the driving load estimation, where the engine torque and hydro-machinery input speed were taken as the input. The simulation results show that the new model was accurately estimated the load within the hydro-machinery segment, where the error was within ±4.69%. The working state of the loader steering/working system was clarified under the load estimation. The online identification model of working conditions was established, where the signals (such as vehicle speed, brake pedal opening, and vehicle acceleration) were taken as observation measurements. The working conditions of the loader were divided into the single driving, driving and steering/working combination, shoveling, single working, and rapid deceleration. The working characteristics of the loader under various working conditions were analyzed to propose the coordinated control strategy of integrated engine-HMCVT using binary regulation theory. A systematic analysis was made to clarify the working characteristics of the loader''s V-shaped working condition cycle, where the digging resistance and working resistance were taken as parameters. The loader''s working conditions model and driver model were established on the MATLAB/Simulink platform. The control strategy was then verified to combine with the vehicle dynamics simulation model. Consequently, the current working condition of the loader was accurately identified, where there was a 0.60 s delay in the identification of the loader working condition switching, fully meeting the actual engineering requirements. The control strategy of speed ratio under the working condition was reduced by 2.43 s, while, the operating efficiency increased by 4.42%, and the total fuel consumption reduced by 1.41% in the single operating cycle, compared with the original.
Keywords:hydro-mechanical continuously variable transmission  wheel loader  load estimation  online identification of working conditions  control strategy
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