Energy-saving cruise control method for heavy-duty transport vehicle based on pump-valve coordinated drive

被引:0
|
作者
Wang, Huashuai [1 ,2 ]
Zhang, Yanbin [1 ,3 ]
Liu, Rongsheng [2 ]
机构
[1] Henan Univ Sci & Technol, Sch Mechatron Engn, Luoyang 471003, Henan, Peoples R China
[2] Henan Inst Technol, Sch Mech Engn, Xinxiang, Peoples R China
[3] Ctr Machinery Equipment Adv Mfg Henan Prov, Luoyang, Peoples R China
关键词
Heavy-duty transport vehicle; hydrostatic drive; cruise control; energy-saving; hydraulic system; PERFORMANCE; EFFICIENT;
D O I
10.1177/09544070241283119
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
In order to realize the dual-goal of the improvement in the cruise performance and fuel economy of the heavy-duty transport vehicle (HDTV) for the transfer of the prefabricated box-girder in the construction of high-speed railway, a pump-valve parallel coordinated drive scheme is designed on the basis of the hydrostatic drive system of the HDTV, which combines the load-sensing valve control system and hydrostatic pump control system. Furthermore, the pump-valve coordinated controller (PVC) is also proposed to ensure the cooperation of the two systems, which adopts power following control strategy to control engine speed, the pump and motor displacement respectively, thus achieving the rough adjustment of the cruise velocity. The linear quadratic regulator (LQR) based on the full-state closed-loop feedback is introduced in PVC to control the proportional direction-valve (EPDV) and compensate for the velocity errors, thus realizing the fine adjustment of cruise velocity. A semi-physical experimental test-platform for the HDTV is established to conduct contrast tests between the rule-based controller (RBC) and the proposed PVC under different operating conditions. The results indicate that the PVC effectively reduces the velocity error, the total error is decreased by 80.6% and that of the maximum error is 43.4% under empty-load conditions, and under heavy load conditions, the total error is lowered by 82.1% and that of the maximum error is 46.8%. Moreover, the PVC also brings down the fuel consumption rate of the HDTV, with a maximum reduction of 27.6% and a minimum of 11.4%.
引用
收藏
页数:16
相关论文
共 50 条
  • [41] Layered energy-saving speed planning and control method for electric vehicle on continuous signal lights road
    Jiao, Jing
    Zang, Liguo
    Mao, Yulin
    Xue, Cheng
    Peng, Xinlei
    HELIYON, 2023, 9 (11)
  • [42] Energy-saving Control Method of Air Conditioning in Mushroom House Based on Model Predictive Control
    Zhang X.
    Kong X.
    Zheng W.
    Wang M.
    Shan F.
    Bao F.
    Nongye Jixie Xuebao/Transactions of the Chinese Society for Agricultural Machinery, 2024, 55 (03): : 352 - 361
  • [43] Variable valve actuation-based combustion control strategies for efficiency improvement and emissions control in a heavy-duty diesel engine
    Guan, Wei
    Pedrozo, Vinicius B.
    Zhao, Hua
    Ban, Zhibo
    Lin, Tiejian
    INTERNATIONAL JOURNAL OF ENGINE RESEARCH, 2020, 21 (04) : 578 - 591
  • [44] Driver Steering Control and Full Vehicle Dynamics Study Based on a Nonlinear Three-Directional Coupled Heavy-Duty Vehicle Model
    Li, S. H.
    Ren, J. Y.
    MATHEMATICAL PROBLEMS IN ENGINEERING, 2014, 2014
  • [45] Energy-Saving Control Method of Building Central Air Conditioning Based on Genetic Algorithm
    Wang, Lihui
    ADVANCES IN MULTIMEDIA, 2022, 2022
  • [46] Energy-Saving Control in Multistage Production Systems Using a State-Based Method
    Li, Yang
    Cui, Peng-Hao
    Wang, Jun-Qiang
    Chang, Qing
    IEEE TRANSACTIONS ON AUTOMATION SCIENCE AND ENGINEERING, 2022, 19 (04) : 3324 - 3337
  • [47] Energy-Saving Control Method for Factory Mushroom Room Air Conditioning Based on MPC
    Wang, Mingfei
    Zheng, Wengang
    Zhao, Chunjiang
    Chen, Yang
    Chen, Chunling
    Zhang, Xin
    ENERGIES, 2023, 16 (22)
  • [48] An IDP-Based Adaptive Range-Domain Predictive Cruise Control Strategy of Intelligent Connected Heavy-Duty Commercial Vehicles
    Li, Xingkun
    Wang, Guohui
    Lu, Ziwang
    Wang, Yuhai
    Wang, Yufeng
    Tian, Guangyu
    Qiche Gongcheng/Automotive Engineering, 2024, 46 (08): : 1346 - 1356
  • [49] Real-Time Predictive Energy-Saving Control for Electric Vehicle Based on Road Slope Prediction
    Wu, Dongmei
    Lin, Zhenfeng
    Du, Changqing
    Li, Yang
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2023, 2023
  • [50] Continuous Steering Stability Control Based on an Energy-Saving Torque Distribution Algorithm for a Four in-Wheel-Motor Independent-Drive Electric Vehicle
    Zhai, Li
    Hou, Rufei
    Sun, Tianmin
    Kavuma, Steven
    ENERGIES, 2018, 11 (02)