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基于车载通信的卡车控制策略研究
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作者 孙豪 汪亚芳 姜科楠 《专用汽车》 2024年第9期43-45,共3页
卡车运输是现代物流运输的主力军,传统卡车控制策略主要依赖于司机经验,存在效率低下、安全风险高等问题。随着车载通信和智能网联技术的发展,基于车载通信的卡车协同控制和云端辅助决策控制成为提高卡车运输效率和安全性的新路径。据此... 卡车运输是现代物流运输的主力军,传统卡车控制策略主要依赖于司机经验,存在效率低下、安全风险高等问题。随着车载通信和智能网联技术的发展,基于车载通信的卡车协同控制和云端辅助决策控制成为提高卡车运输效率和安全性的新路径。据此,首先概述了车载通信技术,分析了当前卡车控制策略存在的问题,然后提出了基于车载通信的卡车控制策略。研究结论可显著提高道路运输效率、降低卡车能耗与事故风险,提升卡车控制稳定性。 展开更多
关键词 车载通信 卡车控制策略 优化方向
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Comparison of two suspension control strategies for multi-axle heavy truck 被引量:5
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作者 陈一锴 何杰 +2 位作者 M.King 冯忠祥 张卫华 《Journal of Central South University》 SCIE EI CAS 2013年第2期550-562,共13页
Two simple and effective control strategies for a multi-axle heavy truck, modified skyhook damping (MSD) control and proportional-integration-derivative (PID) control, were implemented into functional virtual prototyp... Two simple and effective control strategies for a multi-axle heavy truck, modified skyhook damping (MSD) control and proportional-integration-derivative (PID) control, were implemented into functional virtual prototype (FVP) model and compared in terms of road friendliness and ride comfort. A four-axle heavy truck-road coupling system model was established using FVP technology and validated through a ride comfort test. Then appropriate passive air suspensions were chosen to replace the rear tandem suspensions of the original truck model for preliminary optimization. The mechanical properties and time lag of dampers were taken into account in simulations of MSD and PID semi-active dampers implemented using MATLAB/Simulink. Through co-simulations with Adams and MATLAB, the effects of semi-active MSD and PID control were analyzed and compared, and control parameters which afforded the best comprehensive performance for each control strategy were chosen. Simulation results indicate that compared with the passive air suspension truck, semi-active MSD control improves both ride comfort and road-friendliness markedly, with optimization ratios of RMS vertical acceleration and RMS tyre force ranging from 10.1% to 44.8%. However, semi-active PID control only reduces vertical vibration of the driver's seat by 11.1%, 11.1% and 10.9% on A, B and C level roads respectively. Both strategies are robust to the variation of road level. 展开更多
关键词 MSD control PID control heavy truck SUSPENSION ride comfort road damage
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