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Disturbance Observer Based Control for Four Wheel Steering Vehicles With Model Reference 被引量:11
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作者 Shuyou Yu Jing Wang +1 位作者 Yan Wang Hong Chen 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2018年第6期1121-1127,共7页
This paper presents a disturbance observer based control strategy for four wheel steering systems in order to improve vehicle handling stability. By combination of feedforward control and feedback control, the front a... This paper presents a disturbance observer based control strategy for four wheel steering systems in order to improve vehicle handling stability. By combination of feedforward control and feedback control, the front and rear wheel steering angles are controlled simultaneously to follow both the desired sideslip angle and the yaw rate of the reference vehicle model.A nonlinear three degree-of-freedom four wheel steering vehicle model containing lateral, yaw and roll motions is built up, which also takes the dynamic effects of crosswind into consideration.The disturbance observer based control method is provided to cope with ignored nonlinear dynamics and to handle exogenous disturbances. Finally, a simulation experiment is carried out,which shows that the proposed four wheel steering vehicle can guarantee handling stability and present strong robustness against external disturbances. 展开更多
关键词 Disturbance observer based control four wheel steering handling stability model reference.
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Analysis of steering performance of differential coupling wheelset 被引量:5
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作者 Xingwen Wu Maoru Chi +2 位作者 Jing Zeng Weihua Zhang Minhao Zhu 《Journal of Modern Transportation》 2014年第2期65-75,共11页
In order to improve the curving performance of the conventional wheelset in sharp curves and resolve the steering ability problem of the independently rotating wheel in large radius curves and tangent lines, a differe... In order to improve the curving performance of the conventional wheelset in sharp curves and resolve the steering ability problem of the independently rotating wheel in large radius curves and tangent lines, a differential cou- pling wheelset (DCW) was developed in this work. The DCW was composed of two independently rotating wheels (IRWs) coupled by a clutch-type limited slip differential. The differential contains a static pre-stress clutch, which could lock both sides of IRWs of the DCW to ensure a good steering performance in curves with large radius and tangent track. In contrast, the clutch could unlock the two IRWs of the DCW in a sharp curve to endue it with the characteristic of an IRW, so that the vehicles can go through the tight curve smoothly. To study the dynamic performance of the DCW, a multi-body dynamic model of single bogie with DCWs was established. The self-centering capability, hunting stability, and self-steering performance on a curved track were analyzed and then compared with those of the conventional wheelset and IRW. Finally, the effect of coupling parameters of the DCW on the dynamic performance was investigated. 展开更多
关键词 Differential coupling wheelset Independently rotating wheel Conventional wheelset steering performance
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Steering Control of Wheeled Armored Vehicle with Brushless DC Motor 被引量:1
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作者 陈慧岩 王京起 郑培 《Journal of Beijing Institute of Technology》 EI CAS 2005年第3期310-313,共4页
Considering the steering characters of one type of wheeled armored vehicle, a brushless direct current (DC) motor is adapted as the actuator for steering control. After investigating the known algorithms, one kind o... Considering the steering characters of one type of wheeled armored vehicle, a brushless direct current (DC) motor is adapted as the actuator for steering control. After investigating the known algorithms, one kind of algorithm, which combines the fuzzy logic control with the self-adapting PID control and the startup and pre-hrake control, is put forward. Then a test-bed is constructed, and an experiment is conducted. The result of experiment confirms the validity of this algorithm in steering control of wheeled armored vehicle with brushless DC motor. 展开更多
关键词 steering control DC motor wheeled armored vehicle
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Research on Vehicle Control Technology Using Four-Wheel Independent Steering System 被引量:5
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作者 陈思忠 舒进 杨林 《Journal of Beijing Institute of Technology》 EI CAS 2006年第1期22-26,共5页
The enhancement of vehicle handling stability and maneuverability through active and independent rear wheels control is presented. Firstly, the configuration of four-wheel independent steering prototype vehide is intr... The enhancement of vehicle handling stability and maneuverability through active and independent rear wheels control is presented. Firstly, the configuration of four-wheel independent steering prototype vehide is introduced briefly. Then the concrete overall design of the electronic controllers of four wheel independent steering system (4WIS) is formulated in details. Under the control strategy of zero sideslip angle at mass center, the mathematical model of 4WIS is established to deduce the equations of separated rear wheel steering angles. According to these equations, simulation analysis for 4WIS vehicle performances is finished to show that 4WIS vehicle can improve the maneuverability greatly at low speed and increase the handling stability at high speed. Finally, the road test of 4WIS vehide has performed to verify the correctness of simulation and show that compared with the conventional four wheel steering (4WS) vehicle, the 4WIS vehicle not only improves the kinematical harmony but also decreases steering resistance and lighten abrasion of tires. 展开更多
关键词 four-wheel independent steering system (4WIS) control strategy four-wheel steering system (4WS)
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Fatigue behavior of magnesium alloy and application in auto steering wheel frame 被引量:4
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作者 毛萍莉 刘正 +4 位作者 王长义 郭全英 孙晶 王峰 林立 《中国有色金属学会会刊:英文版》 CSCD 2008年第A01期218-222,共5页
The low-cycle fatigue behaviors of AZ91HP-F,AZ91HP-T6,AZ91HP-T4 and AM50HP-F were investigated,and the potential application of AM50HP-F in steering wheel frame was studied.The steering wheel properties were character... The low-cycle fatigue behaviors of AZ91HP-F,AZ91HP-T6,AZ91HP-T4 and AM50HP-F were investigated,and the potential application of AM50HP-F in steering wheel frame was studied.The steering wheel properties were characterized by bend fatigue and tensile testing,and the fatigue fracture was analyzed by SEM.The results show that the fatigue lives of AZ91HP-F and AZ91HP-T6 have little difference by comparing the low-cycles fatigue properties of different heat treatment states.The crack propagation velocity of AZ91HP-T4 is lower than that of AZ91HP-F and AZ91HP-T6.The die casting technological parameters of the magnesium steering wheel have been optimized with the aid of flow-3D software.The tensile testing results of the different part of magnesium steering wheel show that the ultimate tensile strength and elongation in the wheel arm and wheel rim have no difference and the average value are 220 MPa and 5%,respectively.The fracture is in the brittleness mode and the fatigue crack initiates at the outside of the wheel rim. 展开更多
关键词 镁合金 金属结构材料 特性 强度
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All-Electric Aircraft Nose Wheel Steering System with Two Worm Gears
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作者 Zhang Ming Li Chuang +1 位作者 Wu Xin Zhu Yin 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2018年第1期170-180,共11页
As all-electric aircraft has many advantages,an aircraft nose wheel steering system would be developed to the all-electric direction.Concerning the control demand of the nose wheel steering system,based on the basic p... As all-electric aircraft has many advantages,an aircraft nose wheel steering system would be developed to the all-electric direction.Concerning the control demand of the nose wheel steering system,based on the basic principles of nose wheel steering system and the design technique of mechanotronics,an all-electric aircraft nose wheel steering system,composed of a nose wheel steering mechanism of two worm gear and a control servo system of fly-by-wire with both steering and anti-shimmy functions is designed to meet the demand for operation control in the nose wheel steering system.Then,based on the LMS-AMESim software,the simulation model of the system is established to simulate the dynamics for the verification of its steering function.The simulation results indicate that the nose wheel steering system is reasonable,and can meet the requirements of the general project.Furthermore,the prototypes of the steering mechanism and control system are studied to validate the design,and the steering test bench is prepared to test the designed system.The test results,such as steer angle,rotate speed of motor are analyzed in details and compared with the theoretical results.The analysis and comparison results show that the design is reasonable and the property of the prototype can achieve the design objectives. 展开更多
关键词 mechanotronics DESIGN NOSE wheel steering SYSTEM all-electric aircraft DESIGN LANDING gear
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Multi-objective Optimization of Differential Steering System of Electric Vehicle with Motorized Wheels
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作者 赵万忠 王春燕 +2 位作者 段婷婷 叶嘉冀 周协 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2014年第1期99-103,共5页
A differential steering system is presented for electric vehicle with motorized wheels and a dynamic model of three-freedom car is built.Based on these models,the quantitative expressions of the road feel,sensitivity,... A differential steering system is presented for electric vehicle with motorized wheels and a dynamic model of three-freedom car is built.Based on these models,the quantitative expressions of the road feel,sensitivity,and operation stability of the steering are derived.Then,according to the features of multi-constrained optimization of multi-objective function,a multi-island genetic algorithm(MIGA)is designed.Taking the road feel and the sensitivity of the steering as optimization objectives and the operation stability of the steering as a constraint,the system parameters are optimized.The simulation results show that the system optimized with MIGA can improve the steering road feel,and guarantee the operation stability and steering sensibility. 展开更多
关键词 electric vehicle with motorized wheels differential steering multi-island genetic algorithm MULTI-OBJECTIVE
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Steering mechanical analysis for lunar rover wheel
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作者 刘吉成 《High Technology Letters》 EI CAS 2009年第4期423-428,共6页
Facing the requirement of establishing a steering mechanical model for the wheel configuration design,selection of steering motors, dynamic analysis and simulation of the lunar rover, shear force beneaththe steering w... Facing the requirement of establishing a steering mechanical model for the wheel configuration design,selection of steering motors, dynamic analysis and simulation of the lunar rover, shear force beneaththe steering wheel, bulldozing resistance acting on steering wheel rims and side surfaces respectively areconducted on the basis of the wheel-loose soil interaction. The quantitative relation between steering resistancemoment (SRM) and steering radius, dimension of the wheel, soil parameters is established. Tovalidate the model, a single-wheel test bed is employed to test the steering performance of a wheel with0.15735m radius and 0.165m width when the steering radius is 0.00m, 0.04m, 0.08m, 0.12m and0.16m, respectively. The SRM is approached asymptotically with the increasing steering angle and almostproportional to the steering radius. The theoretical results of SRM are compact with the experimental results,which shows that the steering model can predict the experimental results well. 展开更多
关键词 terramechanics steering mechanical model steering radius lunar rover wheel
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Canghe successfully trial-produced right steering wheel car
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《China's Foreign Trade》 2002年第4期59-59,共1页
关键词 Canghe successfully trial-produced right steering wheel car
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Research on the Variable Steering Ratio of Four-Wheel-Steering Vehicle
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作者 林程 陈思忠 任良成 《Journal of Southwest Jiaotong University(English Edition)》 2004年第1期29-35,共7页
The steering characteristic of a four-wheel-steering vehicle is numerically simulated for in-depth research of the handling stability of four-wheel steering. The research results show that the deteriorating tendency o... The steering characteristic of a four-wheel-steering vehicle is numerically simulated for in-depth research of the handling stability of four-wheel steering. The research results show that the deteriorating tendency of the steering stability due to the increase of the vehicle speed is improved obviously in the case of four-wheel steering. The approach of variable steering ratio is discussed. The use of the variable steering ratio can not only raise the steering stability of vechicles at high vehicle speed, but also reduce the dicomfort and steering burden of drivers; and hence is helpful for the subjective evaluation of four-wheel steering vehicles. 展开更多
关键词 Four-wheel steering Handling stability Vehicle dynamics
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Research on Steering Resistance Moment of Wheel Loader
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作者 LIU Haoran 《International Journal of Plant Engineering and Management》 2020年第4期238-252,共15页
The wheel loader as the research object in present article,its steering mechanism is analyzed for the relationship between the steering cylinder displacement and the steering angle,which means,the relationship between... The wheel loader as the research object in present article,its steering mechanism is analyzed for the relationship between the steering cylinder displacement and the steering angle,which means,the relationship between the arm of steering resistance moment and the steering angle.In addition,the relationship between the in-situ steering resistance moment and the wheel angle is also be analyzed by integrating the interaction between the tire and the ground.The Matlab will help to build the mathematical modeling for verification. 展开更多
关键词 wheel loader steering mechanism steering resistance moment steering angle mathematical model
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基于电动方向盘的拖拉机自动导航转向控制方法 被引量:1
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作者 张智刚 黄海翔 +4 位作者 罗锡文 张国城 张闻宇 彭铭达 刘文锴 《农业工程学报》 EI CAS CSCD 北大核心 2024年第1期48-57,共10页
为提高轮式拖拉机自动导航过程中转向控制的精度与稳定性,该研究以雷沃欧豹M704-2H拖拉机作为试验平台,采用电动方向盘作为转向执行机构,分析转向机械间隙对控制精度的影响,针对转向间隙特性设计转向控制算法。首先,为了获得准确的转向... 为提高轮式拖拉机自动导航过程中转向控制的精度与稳定性,该研究以雷沃欧豹M704-2H拖拉机作为试验平台,采用电动方向盘作为转向执行机构,分析转向机械间隙对控制精度的影响,针对转向间隙特性设计转向控制算法。首先,为了获得准确的转向角,利用GNSS(global navigation satellite system)与二轮车模型快速标定虚拟轮转角,标定结果表明:虚拟轮转角的最大误差为1.3°,平均误差为0.11°。然后,对转向系统的机械间隙进行分析,设计一种带有间隙补偿的模糊PD(proportional derivative)转向控制算法,并在Simulink中验证算法的可行性。实车试验结果表明,该算法跟踪方波转角信号的响应时间为1.1 s,最大稳态误差为0.65°,平均稳态绝对误差为0.132°。跟踪正弦波转角信号的平均延时为0.5 s,最大误差为1.91°,平均绝对误差为1.09°。与无间隙补偿算法相比,有间隙补偿算法跟踪方波信号最大稳态误差减小了0.022°,平均稳态绝对误差减少了0.112°,角度误差在±0.2°内的时间提升了71%;跟踪正弦波信号最大误差减小了0.68°,平均绝对误差减小0.23°。田间直线导航转向控制试验结果表明,转角跟踪的绝对平均误差为0.61°,最大跟踪误差为2.82°,转向控制跟踪精度较高,稳定性好,满足导航作业需求。 展开更多
关键词 农业机械 算法 电动方向盘 转角标定 转向控制 机械间隙
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两轴径向独立轮副轨道车辆动力学性能
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作者 杨超 王文静 +3 位作者 邹晓宇 王斌杰 李强 刘志明 《铁道学报》 EI CAS CSCD 北大核心 2024年第2期30-35,共6页
针对独立车轮导向问题提出后倾角导向方法,使独立轮副轨道车辆获得自导向能力。阐述车辆的自导向原理,利用横向轮轨力和后倾角力臂形成摇头力矩,使独立车轮自动转向。关于中心对称的前后独立轮副分别向相反方向转向,使独立车轮处于径向... 针对独立车轮导向问题提出后倾角导向方法,使独立轮副轨道车辆获得自导向能力。阐述车辆的自导向原理,利用横向轮轨力和后倾角力臂形成摇头力矩,使独立车轮自动转向。关于中心对称的前后独立轮副分别向相反方向转向,使独立车轮处于径向位置。采用多体动力学方法分析独立轮副轨道车辆的自导向性能。结果表明:在直线轨道上,后倾角对车辆横向位移和摇头角的影响明显。带后倾角车辆出现类蛇行运动现象。具有后倾角的车辆在直线轨道上能够自动复位。在曲线轨道上,左前导向轮具有较大的冲角。后倾角能够使车辆动态对中,最终回到轨道中心线位置。带后倾角的独立轮副轨道车辆在曲线轨道上具有有限的导向能力。 展开更多
关键词 轨道车辆 自导向 独立车轮 导向性能 类蛇行运动
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线控主动四轮转向汽车控制策略研究 被引量:2
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作者 屈翔 张小锋 +1 位作者 王伟 邱江波 《重庆工商大学学报(自然科学版)》 2024年第2期50-59,共10页
目的针对线控四轮转向汽车横向稳定性不足及控制鲁棒性差等问题,提出一种主动转向反馈控制策略。方法使用Simulink搭建线控转向系统转向执行机构动力学模型,将MATLAB/Simulink与Carsim联合仿真,建立线控四轮转向整车模型;基于二自由度... 目的针对线控四轮转向汽车横向稳定性不足及控制鲁棒性差等问题,提出一种主动转向反馈控制策略。方法使用Simulink搭建线控转向系统转向执行机构动力学模型,将MATLAB/Simulink与Carsim联合仿真,建立线控四轮转向整车模型;基于二自由度模型分析横摆角速度和质心侧偏角对汽车稳定性的影响,推导理想的横摆角速度和质心侧偏角;以横摆角速度增益恒定为依据设计理想传动比,得到期望前轮转角,以横摆角速度误差为控制量设计模糊控制器得到附加前轮转角对期望转角实时修正,实现前轮主动转向;针对横摆角速度和质心侧偏角与理想值之间的误差,加权得到稳定性控制目标;设计自适应积分滑模反馈控制策略输出后轮转角,对理想值进行跟踪,实现后轮主动转向。结果仿真实验结果表明:所搭建的线控转向系统能够准确反映汽车动力学特性。相比无控制的机械前轮转向汽车与横摆反馈控制的四轮转向汽车,线控主动四轮转向汽车在双移线工况下将质心侧偏角控制在0值附近波动,横摆角速度跟踪误差控制在1.149 deg/s以内;在角阶跃工况下将质心侧偏角稳态值控制在0.065 deg,横摆角速度稳态值误差为0.074 deg/s。结论线控主动四轮转向控制策略在双移线和角阶跃工况下控制效果显著,鲁棒性能好,能有效提高汽车的操纵稳定性和主动安全性。 展开更多
关键词 线控主动四轮转向 模糊控制 积分滑模 操纵稳定性
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装载机驾驶室方向盘倾角对肌肉疲劳的影响研究
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作者 田保珍 周垒 +1 位作者 杨刚俊 李占龙 《中国工程机械学报》 北大核心 2024年第2期169-173,共5页
为分析装载机驾驶员在驾驶过程中手臂肌肉的疲劳情况,设计并完成动态旋转方向盘试验,测试并比较3种方向盘倾角(A型为24°、B型为25°、C型为31°)对肌肉疲劳的影响情况。采用现场真机实验的方法,选取左臂中三角肌为测试对象... 为分析装载机驾驶员在驾驶过程中手臂肌肉的疲劳情况,设计并完成动态旋转方向盘试验,测试并比较3种方向盘倾角(A型为24°、B型为25°、C型为31°)对肌肉疲劳的影响情况。采用现场真机实验的方法,选取左臂中三角肌为测试对象,聘请14名驾驶员作为被试人员,运用表面肌电测量方法并提取操控方向盘时的表面肌电数据,采用单因素方差分析方法分析3种测量结果并对MPF进行两两比较,实验结果为A型和B型之间不存在显著性差异(P>0.05),C型与A型和B型均存在显著性差异(P<0.05);表明不同的方向盘倾角对肌肉疲劳有较大影响。通过研究得出结论,C型方向盘倾角较容易疲劳,A型和B型不容易疲劳,在仅考虑方向盘倾角的前提下,A型和B型的方向盘倾角优于C型。在装载机驾驶室人机设计中,为降低驾驶员肌肉疲劳,建议方向盘盘面应采用较平缓设计方式,该结论可为后续的方向盘倾角设计提供参考。 展开更多
关键词 装载机驾驶室 方向盘倾角 MPF 肌肉疲劳 表面肌电技术
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汽车线控转向系统稳定性控制策略研究
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作者 孙有平 李崧 +2 位作者 何江美 吴光庆 王国春 《重庆理工大学学报(自然科学)》 CAS 北大核心 2024年第7期37-43,共7页
以汽车线控转向系统为研究对象,构建滑模观测器对汽车质心侧偏角进行实时估计,用于主动前轮转向控制器设计。以汽车线性二自由度模型为参考模型,设计了基于扰动补偿的主动前轮转向滑模控制器,由主动转向控制器决策出额外附加前轮转角,... 以汽车线控转向系统为研究对象,构建滑模观测器对汽车质心侧偏角进行实时估计,用于主动前轮转向控制器设计。以汽车线性二自由度模型为参考模型,设计了基于扰动补偿的主动前轮转向滑模控制器,由主动转向控制器决策出额外附加前轮转角,使车辆响应跟随理想横摆角速度与质心侧偏角,改善汽车的横向稳定性。通过所建立的Carsim和Simulink联合仿真平台,在双移线低路面附着系数,有、无侧向风的工况下验证了主动转向控制策略的有效性。 展开更多
关键词 滑模控制 主动前轮转向 扰动观测器 稳定性控制
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四轮转向干预下电动助力转向控制策略研究
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作者 许艳 刘阳毅 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第2期144-150,共7页
四轮转向(4WS)车辆相较于前轮转向(FWS)车辆具有更高的灵活性,其后轮转向在提高车辆操稳性的同时转向阻力矩也发生变化,使得原电动助力转向系统助力策略与四轮转向车辆不匹配,对行车安全产生影响.本文以线性二自由度车辆模型为基础,对... 四轮转向(4WS)车辆相较于前轮转向(FWS)车辆具有更高的灵活性,其后轮转向在提高车辆操稳性的同时转向阻力矩也发生变化,使得原电动助力转向系统助力策略与四轮转向车辆不匹配,对行车安全产生影响.本文以线性二自由度车辆模型为基础,对比分析了前轮转向车辆与四轮转向车辆的转向特性,提出电动助力转向修正控制策略.仿真结果表明,角阶跃工况下,有助力修正的四轮转向车辆,驾驶员操纵方向盘力矩与驾驶前轮转向车辆基本一致,既保证了四轮转向车辆低速时的操纵轻便性,也兼顾了高速时的操纵稳定性. 展开更多
关键词 车辆工程 四轮转向 电动助力转向 转向干预
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基于变前视距离的四轮同步转向农机改进纯跟踪控制
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作者 沈跃 赵莎 +3 位作者 张亚飞 何思伟 冯瑞 刘慧 《农业机械学报》 EI CAS CSCD 北大核心 2024年第3期21-28,共8页
路径跟踪控制是提高自主导航系统控制精度的关键。针对在复杂农田作业环境下转弯时纯跟踪算法跟踪精度不高的问题,本文提出了一种基于改进纯追踪模型的四轮同步转向农机路径跟踪控制算法。建立了基于四轮同步转向农机的运动学模型和纯... 路径跟踪控制是提高自主导航系统控制精度的关键。针对在复杂农田作业环境下转弯时纯跟踪算法跟踪精度不高的问题,本文提出了一种基于改进纯追踪模型的四轮同步转向农机路径跟踪控制算法。建立了基于四轮同步转向农机的运动学模型和纯跟踪模型,在此基础上考虑航向误差得到改进纯跟踪模型,进行RTK定位坐标修正,根据量化误差的评价函数搜索前视区域最优目标点,得到最优前视距离。本文算法能实时确定四轮同步转向农机改进纯跟踪模型中的前视距离,使航向误差和横向误差最小化,实现目标点的自适应优化。仿真结果表明,本文方法转弯时平均绝对横向误差减至0.035 m,平均绝对航向误差减至0.212°;水田实验结果表明,当四轮同步转向农机作业速度为3.6 km/h时,四轮转向农机轨迹跟踪平均绝对横向误差减至0.109 m,平均绝对航向误差减至2.799°,转弯跟踪精度显著提高。 展开更多
关键词 水田 四轮同步转向 改进纯追踪控制 前视距离 自适应优化
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基于舵向结构原理的新型机器人底盘系统设计
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作者 张声岚 江豪 +2 位作者 李施施 姜鑫诚 张烈平 《桂林理工大学学报》 CAS 北大核心 2024年第3期541-548,共8页
为了提高轮式底盘机器人的灵活性、应对复杂地形的适应能力,提出了一种舵向结构的高机动性移动机器人。该机器人通过舵向结构在运动过程中对速度和方向分别控制以适应地形变化,在提高运动效率的同时也减少了运动分量对轮组造成的磨损。... 为了提高轮式底盘机器人的灵活性、应对复杂地形的适应能力,提出了一种舵向结构的高机动性移动机器人。该机器人通过舵向结构在运动过程中对速度和方向分别控制以适应地形变化,在提高运动效率的同时也减少了运动分量对轮组造成的磨损。使用Solidworks和MATLAB分别对机器人的运动过程和控制系统仿真,研制出物理样机并进行组合运动、绕点运动等测试,结果表明:该机器人能够通过4个轮组的组合运动实现整体控制,在4 s内以0.3 m/s的速度绕半径为15 cm的圆运动一周,误差保持在1 cm以内,验证了该机器人的灵活性。 展开更多
关键词 舵轮结构 串级PID控制 双闭环控制 全向运动 CAN通信
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智能座舱方向盘收纳隐藏系统功能设计
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作者 高家兵 刘慧建 +3 位作者 吴罡 李彩霞 潘伟 钱勇 《汽车实用技术》 2024年第7期24-28,共5页
随着汽车智能技术的发展,人们对驾乘体验的智能化需求日益增多,智能座舱和智能底盘是实现这一需求的关键总成。方向盘迎宾功能是智能座舱体现舒适性和体验性的核心功能,同时,未来高等级智能驾驶汽车实现完全自主驾驶后方向盘还应具有收... 随着汽车智能技术的发展,人们对驾乘体验的智能化需求日益增多,智能座舱和智能底盘是实现这一需求的关键总成。方向盘迎宾功能是智能座舱体现舒适性和体验性的核心功能,同时,未来高等级智能驾驶汽车实现完全自主驾驶后方向盘还应具有收纳隐藏功能,以进一步拓展良好的驾乘舒适性和体验性。文章研究一种既有传统方向盘迎宾功能,又有收纳隐藏功能的智能座舱方向盘收纳隐藏系统,通过对方向盘收纳隐藏系统的构成、工作原理、控制逻辑等方面的研究,进行方向盘收纳隐藏系统的功能设计,包括电动调节功能、迎宾功能、方向盘翻转功能、电调管柱长距离收纳功能、可拓展功能等,满足了未来智能线控转向系统中的路感模拟装置需具备收纳隐藏的新技术要求。 展开更多
关键词 智能座舱 方向盘 收纳隐藏系统功能 控制逻辑
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