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PARAMETER OPTIMIZATION OF ELECTRIC POWER STEERING INTEGRATED WITH ACTIVE FRONT STEERING FUNCTION 被引量:1
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作者 王春燕 赵万忠 +1 位作者 刘顺 孙培坤 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2012年第1期96-102,共7页
The dynanaic model of a novel electric power steering(EPS) system integrated with active front steer- ing function and the three-freedom steering model are built. Based on these models, the concepts and the quanti- ... The dynanaic model of a novel electric power steering(EPS) system integrated with active front steer- ing function and the three-freedom steering model are built. Based on these models, the concepts and the quanti- tative expressions of road feel, sensitivity, and operation stability of the steering are introduced. Then, according to constrained optimization features of multi-variable function, a genetic algorithm is designed. Making the road feel of the steering as optimization objective, and operation stability and sensitivity of the steering as constraints, the system parameters are optimized by the genetic and the coordinate rotation algorithms. Simulation results show that the optimization of the novel EPS system by the genetic algorithm can effectively improve the road feel, thus providing a theoretical basis for the design and optimization of the novel EPS system. 展开更多
关键词 vehicle engineering electric power steering active front steering road feel genetic algorithm
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Tracking Performance of Electric Power Steering System Based on the Mixed H_2/H_∞ Strategy 被引量:10
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作者 ZHAO Wanzhong SHI Guobiao +1 位作者 LIN Yi NIE Hong 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2011年第4期584-590,共7页
The tracking performance of motor current is an important factor that affects the assistance torque of electric power steering (EPS) system. Bad tracking performance will cause assistant torque delay, and make road ... The tracking performance of motor current is an important factor that affects the assistance torque of electric power steering (EPS) system. Bad tracking performance will cause assistant torque delay, and make road feeling bad, and is influenced by the input steering torque and system measuring noise. However the existing methods have some shortages on system's robust dynamic performance and robust stability. The mixed H2/H∞ strategy for recirculating ball-type EPS system in a pure electric bus is proposed, and vehicle dynamic model of the system is established. Due to the existence of system model uncertainty, disturbance signals, sensor noises and the demand of system dynamic performance, the indexes of robust performance and road feeling for drivers are defined as the appraisal control objectives. The H∞ method is introduced to design the H∞ controller, and the H2 method is applied to optimize the H∞ controller, thus the mixed H2/H∞ controller is designed. The response of EPS system to the motor current command with amplitude of 20 A, the road disturbance with amplitude of 500 N and the sensor random noise with the amplitude of 1 A is simulated. The simulation results show that the recirculating ball-type EPS system with the mixed H2/H∞ controller can attenuate the random noises and disturbances and track the boost curve well, so the mixed H2/H∞ controller can improve the system's robust performance and dynamic performance. For the purpose of verifying the performance of the designed control strategy, the motor current tracking performance ground tests are conducted with step response input of the steering wheel, double-lane steering test and lemniscate steering test, respectively. The tests show that the mixed H2/H∞ controller for the recirculating ball-type EPS system of pure electric bus is feasible. The designed controller can solve the robust performance and robust stability of the system, thus improve the tracking performance of the EPS system and provide satisfied road feeling for the drivers. 展开更多
关键词 recirculating ball-type electrical power steering eps system tracking performance mixed H2/H∞
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Controller Design for Electric Power Steering System Using T-S Fuzzy Model Approach 被引量:5
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作者 Xin Li Xue-Ping Zhao Jie Chen 《International Journal of Automation and computing》 EI 2009年第2期198-203,共6页
Pressure ripples in electric power steering (EPS) systems can be caused by the phase lag between the driver s steering torque and steer angle, the nonlinear frictions, and the disturbances from road and sensor noise... Pressure ripples in electric power steering (EPS) systems can be caused by the phase lag between the driver s steering torque and steer angle, the nonlinear frictions, and the disturbances from road and sensor noise especially during high-frequency maneuvers. This paper investigates the use of the robust fuzzy control method for actively reducing pressure ripples for EPS systems. Remarkable progress on steering maneuverability is achieved. The EPS dynamics is described with an eight-order nonlinear state-space model and approximated by a Takagi-Sugeno (T-S) fuzzy model with time-varying delays and external disturbances. A stabilization approach is then presented for nonlinear time-delay systems through fuzzy state feedback controller in parallel distributed compensation (PDC) structure. The closed-loop stability conditions of EPS system with the fuzzy controller are parameterized in terms of the linear matrix inequality (LMI) problem. Simulations and experiments using the proposed robust fuzzy controller and traditional PID controller have been carried out for EPS systems. Both the simulation and experiment results show that the proposed fuzzy controller can reduce the torque ripples and allow us to have a good steering feeling and stable driving. 展开更多
关键词 electric power steering eps fuzzy control Takagi-Sugeno (T-S) model parallel distributed compensation (PDC) timedelay linear matrix inequality (LMI).
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H∞ control of novel active steering integrated with electric power steering function 被引量:8
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作者 ZHAO Wan-zhong LI Yi-jun +2 位作者 WANG Chun-yan ZHAO Ting GU Xiao-yue 《Journal of Central South University》 SCIE EI CAS 2013年第8期2151-2157,共7页
Based on the traditional active steering system, a novel active steering system integrated with electric power steering function was introduced, which can achieve the functions of both active steering and electric pow... Based on the traditional active steering system, a novel active steering system integrated with electric power steering function was introduced, which can achieve the functions of both active steering and electric power steering. In view of the interference from road random signal and sensor noise in the novel active steering system, the H∞ control model of the novel active steering system was built. With satisfying steering feel, good robust performance and steering stability being the control objectives, the H∞ controller for the novel active front steering (AFS) system was designed. The simulation results show that the novel AFS system with H∞ control strategy can attenuate the road interference quickly, and there is no resonance peak in the bode diagram. It can make the driver obtain more useful information in the low frequency range, and attenuate the road interference better in the high frequency range, thus the driver can get more satisfying road feeling. Therefore, the designed H∞ controller can synthesize the advantages of both robust performance and robust stability, and has certain contribution to the design of novel AFS system. 展开更多
关键词 vehicle engineering active steering electric power steering H∞ control
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Integration optimization of novel electric power steering system based on quality engineering theory 被引量:4
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作者 赵万忠 赵婷 +3 位作者 李怿骏 王春燕 张宗强 段婷婷 《Journal of Central South University》 SCIE EI CAS 2013年第6期1519-1526,共8页
The dynamic model of a novel electric power steering (EPS) system integrated with active front steering function (the novel EPS system) is built. The concepts and quantitative expressions of the steering road feel... The dynamic model of a novel electric power steering (EPS) system integrated with active front steering function (the novel EPS system) is built. The concepts and quantitative expressions of the steering road feel, steering sensibility, and steering operation stability are introduced. Based on quality engineering theory, the optimization algorithm is proposed by integrating the Monte Carlo descriptive sampling, elitist non-dominated sorting genetic algorithm (NSGA-II) and 6-sigma design method. With the steering road feel and the steering portability as optimization targets, the system parameters are optimized by the proposed optimization algorithm. The simulation results show that the system optimized based on quality engineering theory can improve the steering road feel, guarantee steering stability and steering portability and thus provide a theoretical basis for the design and optimization of the novel electric power steering system. 展开更多
关键词 vehicle engineering electric power steering active front steering road feel genetic algorithm
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Model development and parameter investigation of a column-type electric power steering system 被引量:1
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作者 陈慧鹏 陈立平 王君明 《Journal of Shanghai University(English Edition)》 CAS 2009年第6期466-473,共8页
In this paper, the performance of a column-type electric power steering (EPS) system and vehicle has been studied and a detailed mathematical model for the system has been established. Based on the mathematic model ... In this paper, the performance of a column-type electric power steering (EPS) system and vehicle has been studied and a detailed mathematical model for the system has been established. Based on the mathematic model of the optimization design for steering feel, the parameters of the EPS system and vehicle on steering performance have been investigated. Moreover, the effects of the parameters on system stability have been analyzed and compared by the method of absolute sensitivity and the results are given in the end. 展开更多
关键词 electric power steering eps parameter optimization steering sensitivity STABILITY steering feel
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Performance optimization of electric power steering based on multi-objective genetic algorithm 被引量:2
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作者 赵万忠 王春燕 +1 位作者 于蕾艳 陈涛 《Journal of Central South University》 SCIE EI CAS 2013年第1期98-104,共7页
The vehicle model of the recirculating ball-type electric power steering (EPS) system for the pure electric bus was built. According to the features of constrained optimization for multi-variable function, a multi-obj... The vehicle model of the recirculating ball-type electric power steering (EPS) system for the pure electric bus was built. According to the features of constrained optimization for multi-variable function, a multi-objective genetic algorithm (GA) was designed. Based on the model of system, the quantitative formula of the road feel, sensitivity, and operation stability of the steering were induced. Considering the road feel and sensitivity of steering as optimization objectives, and the operation stability of steering as constraint, the multi-objective GA was proposed and the system parameters were optimized. The simulation results show that the system optimized by multi-objective genetic algorithm has better road feel, steering sensibility and steering stability. The energy of steering road feel after optimization is 1.44 times larger than the one before optimization, and the energy of portability after optimization is 0.4 times larger than the one before optimization. The ground test was conducted in order to verify the feasibility of simulation results, and it is shown that the pure electric bus equipped with the recirculating ball-type EPS system can provide better road feel and better steering portability for the drivers, thus the optimization methods can provide a theoretical basis for the design and optimization of the recirculating ball-type EPS system. 展开更多
关键词 vehicle engineering electric power steering multi-objective optimization genetic algorithm
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Optimal design and applicability of electric power steering system for automotive platform 被引量:2
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作者 Abolfazl KHALKHALI Mohammad Hassan SHOJAEEFARD +1 位作者 Masoud DAHMARDEH Hadi SOTOUDEH 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第4期839-851,共13页
The ongoing need for better fuel economy and lower exhaust pollution of vehicles has increased the employment of electric power steering(EPS)in automotives.Optimal design of EPS for a product family reduces the develo... The ongoing need for better fuel economy and lower exhaust pollution of vehicles has increased the employment of electric power steering(EPS)in automotives.Optimal design of EPS for a product family reduces the development and fabrication costs significantly.In this paper,the TOPSIS method along with the NSGA-Ⅱis employed to find an optimum family of EPS for an automotive platform.A multi-objective optimization problem is defined considering road feel,steering portability,RMS of Ackerman error,and product family penalty function(PFPF)as the conflicting objective functions.The results for the single objective optimization problems and the ones for the multi-objective optimization problem,as well as two suggested trade-off design points are presented,compared and discussed.For the two suggested points,performance at one objective function is deteriorated by about 1%,while the commonality is increased by 20%–40%,which shows the effectiveness of the proposed method in first finding the non-dominated design points and then selecting the trade-off among the obtained points.The results indicate that the obtained trade-off points have superior performance within the product family with maximum number of common parts. 展开更多
关键词 product family optimization optimal platform design NSGA-Ⅱ TOPSIS electric power steering
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Precise Compound Control of Loading Force for Electric Load Simulator of Electric Power Steering Test Bench 被引量:1
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作者 Changhua Dai Guoying Chen +1 位作者 Changfu Zong Buyang Zhang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2022年第1期255-265,共11页
Electric load simulator(ELS) systems are employed for electric power steering(EPS) test benches to load rack force by precise control. Precise ELS control is strongly influenced by nonlinear factors. When the steering... Electric load simulator(ELS) systems are employed for electric power steering(EPS) test benches to load rack force by precise control. Precise ELS control is strongly influenced by nonlinear factors. When the steering motor rapidly rotates, extra force is directly superimposed on the original static loading error, which becomes one of the main sources of the final error. It is key to achieve ELS precise loading control for the entire EPS test bench. Therefore, a three-part compound control algorithm is proposed to improve the loading accuracy. First, a fuzzy proportional–integral plus feedforward controller with force feedback is presented. Second, a friction compensation algorithm is established to reduce the influence of friction. Then, the relationships between each quantity and the extra force are analyzed when the steering motor rapidly rotates, and a net torque feedforward compensation algorithm is proposed to eliminate the extra force. The compound control algorithm was verified through simulations and experiments. The results show that the tracking performance of the compound control algorithm satisfies the demands of engineering practice, and the extra force in the ELS system can be suppressed by the net torque corresponding to the actuator’s acceleration. 展开更多
关键词 electric load simulator electric power steering Extra force Compound control
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Study on Characteristic of Electric Power Assist Steering System 被引量:1
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作者 许镇琳 王豪 +2 位作者 尚喆 张海华 王家军 《Transactions of Tianjin University》 EI CAS 2003年第3期211-213,共3页
A pinion-type electric power steering (EPS) equipped on a sedan is reached in this paper. A three-freedom dynamic model of this system is created. The variables affecting assist character is analyzed. The formulas of ... A pinion-type electric power steering (EPS) equipped on a sedan is reached in this paper. A three-freedom dynamic model of this system is created. The variables affecting assist character is analyzed. The formulas of simpled steering resistance force and the relationship between assist gain and vehicle speed are presented for the first time. Assist character is found based on the parameters of a sedan at last. This assist character is fit for the control rule of the EPS system through analyzing this character. The assist character figure offers reference for system design and control. Furthermore, this research method has generality for assist character of different kinds of vehicles. 展开更多
关键词 VEHICLE electric power steering assist steering assist characteristic
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Electrical power assisted steering for EVs and HEVs
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作者 Ma Haibo Yang Ying 《Engineering Sciences》 EI 2011年第1期60-65,共6页
Electrical power assisted steering (EPAS) is one of the key components, especially for electrical vehicle. It has attracted much attention for their advantages with respect to improved fuel economy and has been widely... Electrical power assisted steering (EPAS) is one of the key components, especially for electrical vehicle. It has attracted much attention for their advantages with respect to improved fuel economy and has been widely adopted as automotive power-steering equipment in recent years. EPS (electrical power steering) controllers contain MCU (microprocessor control unit) to implement the complex control algorithms. EPS control strategy development is the core technology of the whole system. To achieve the better performance of driving, both mechanical structures and electrical structures are totally designed as a whole. Model-based development is recommended to software design. There are several trends about EPS’ future, such as high power EPS development, high voltage EPS development and steering-by-wire technology. 展开更多
关键词 electrical power assistant steering brushless motor non-contact sensor control strategy model-based development
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基于功能安全的汽车EPS系统安全冗余研究
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作者 曹子健 吴长水 陈礼 《上海工程技术大学学报》 CAS 2024年第1期23-29,共7页
电动助力转向(electric power steering,EPS)系统是车辆常用的转向执行器,其失效将严重影响驾乘人员的安全。为提高EPS系统的安全性与可靠性,基于功能安全标准建立EPS系统安全冗余机制:基于ISO26262对EPS系统进行研究,通过相关项定义、... 电动助力转向(electric power steering,EPS)系统是车辆常用的转向执行器,其失效将严重影响驾乘人员的安全。为提高EPS系统的安全性与可靠性,基于功能安全标准建立EPS系统安全冗余机制:基于ISO26262对EPS系统进行研究,通过相关项定义、危害分析与风险评估(HARA),得到系统的功能安全目标与需求,并对其进行分配;设计EPS系统架构、容错机制,以提高系统的安全性;最后,对所设计的安全冗余机制进行台架试验。结果表明,在单侧桥驱芯片故障、单侧电机位置传感器故障、双侧电机位置传感器故障等故障注入的情况下,系统能够实现预期响应,满足功能安全目标,验证了所设计安全冗余机制的有效性。 展开更多
关键词 电动助力转向系统 功能安全 系统架构 故障注入
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大齿条力冗余R-EPS转向器开发及验证
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作者 张吉 赵向青 费二威 《汽车实用技术》 2024年第5期63-66,共4页
为了满足前轴载荷较大乘用车电动助力转向产品的需要,对大齿条力冗余R-EPS转向系统进行开发,全新设计了齿条、滚珠丝杠及皮带传动等机构,制定了R-EPS电控系统冗余方案,设计了电控系统失效时的容错机制,通过转向手力调校和匹配,转向手力... 为了满足前轴载荷较大乘用车电动助力转向产品的需要,对大齿条力冗余R-EPS转向系统进行开发,全新设计了齿条、滚珠丝杠及皮带传动等机构,制定了R-EPS电控系统冗余方案,设计了电控系统失效时的容错机制,通过转向手力调校和匹配,转向手力和转向跟随性均满足车辆使用需求,产品经台架试验和整车道路试验验证了产品性能优良、安全可靠。 展开更多
关键词 电动助力转向 大齿条力 冗余转向
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含特殊转向工况的汽车EPS电动机控制策略 被引量:9
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作者 贝绍轶 赵景波 +2 位作者 刘海妹 孙立军 陈龙 《系统仿真学报》 CAS CSCD 北大核心 2009年第18期5886-5891,5895,共7页
电动助力转向(EPS)电动机的控制是EPS系统设计的关键之一。建立了汽车三自由度转向模型和EPS系统动力学模型,设计了EPS助力特性和包含回正过程补偿、紧急避让过程补偿、满载大角度转弯补偿等特殊转向工况的电动机控制策略,利用Matlab/Si... 电动助力转向(EPS)电动机的控制是EPS系统设计的关键之一。建立了汽车三自由度转向模型和EPS系统动力学模型,设计了EPS助力特性和包含回正过程补偿、紧急避让过程补偿、满载大角度转弯补偿等特殊转向工况的电动机控制策略,利用Matlab/Simulink进行了仿真,与不包含特殊工况补偿的情况进行了性能比较及分析。仿真结果表明,含特殊转向工况的汽车EPS电动机控制策略具有更好的操纵性能和安全性能。这对指导EPS电动机控制策略的开发、功能的增强和优化以及转向操纵安全的提高都具有重要的工程应用意义。 展开更多
关键词 汽车 电动助力转向 eps 电动机 补偿
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基于遗传算法的EPS系统参数优化 被引量:14
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作者 赵万忠 施国标 +2 位作者 林逸 石培吉 李强 《吉林大学学报(工学版)》 EI CAS CSCD 北大核心 2009年第2期286-290,共5页
根据纯电动大客车电动助力转向(EPS)系统工作的具体要求,开发了适合纯电动大客车EPS系统使用的循环球式电动助力转向器,建立了纯电动大客车循环球式EPS系统动力学模型及整车二自由度转向模型。在此基础上提出了系统转向路感、转向灵敏... 根据纯电动大客车电动助力转向(EPS)系统工作的具体要求,开发了适合纯电动大客车EPS系统使用的循环球式电动助力转向器,建立了纯电动大客车循环球式EPS系统动力学模型及整车二自由度转向模型。在此基础上提出了系统转向路感、转向灵敏度以及转向操稳性的概念,并根据多元函数有约束优化问题的特点应用遗传算法对系统参数进行了优化设计。仿真结果表明:基于遗传算法优化的系统参数提高了系统的转向路感和转向操稳性。 展开更多
关键词 车辆工程 电动助力转向系统 路感 操稳性 遗传算法
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电动汽车EPS曲线型助力特性的设计及试验 被引量:18
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作者 赵景波 周冰 +1 位作者 李秀莲 贝绍轶 《电机与控制学报》 EI CSCD 北大核心 2011年第12期96-102,共7页
为了研究助力特性对汽车的操纵稳定性和转向路感的影响,建立电动助力转向(EPS)系统动力学模型和汽车三自由度转向模型,设计转向盘力矩函数和车速感应函数,确定曲线型助力特性曲线的参数和形式。基于某微型轿车设计实车试验系统,进行原... 为了研究助力特性对汽车的操纵稳定性和转向路感的影响,建立电动助力转向(EPS)系统动力学模型和汽车三自由度转向模型,设计转向盘力矩函数和车速感应函数,确定曲线型助力特性曲线的参数和形式。基于某微型轿车设计实车试验系统,进行原地转向试验、双纽线试验和蛇形试验。试验结果表明:曲线型助力特性可以在转向轻便性和路感之间达到一个较理想的平衡点;原地转向试验的转向轻便性峰值和标准差分别提高48.11%和49.65%,双纽线试验的转向轻便性峰值和标准差分别提高60.03%和57.84%,蛇形试验的转向轻便性峰值和标准差分别提高41.94%和41.36%;EPS控制有效提高了汽车的转向轻便性,降低了驾驶员的疲劳强度。 展开更多
关键词 电动汽车 电动助力转向 曲线型助力特性 轻便性 路感
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自适应模糊神经网络在EPS中的应用 被引量:12
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作者 王华强 袁浩 杨滁光 《合肥工业大学学报(自然科学版)》 CAS CSCD 北大核心 2011年第2期188-191,共4页
文章介绍了汽车电动助力转向系统(EPS)的组成及工作原理;为解决汽车EPS系统非线性问题,将模糊逻辑与神经网络相结合,采用了基于T-S(Takagi-Sugeno)模型的自适应神经网络模糊推理系统(ANFIS)控制策略;仿真试验验证了系统模型和控制理论... 文章介绍了汽车电动助力转向系统(EPS)的组成及工作原理;为解决汽车EPS系统非线性问题,将模糊逻辑与神经网络相结合,采用了基于T-S(Takagi-Sugeno)模型的自适应神经网络模糊推理系统(ANFIS)控制策略;仿真试验验证了系统模型和控制理论的有效性和正确性。 展开更多
关键词 电动助力转向 神经网络 模糊推理 减法聚类
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低附着路面条件的EPS控制策略 被引量:27
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作者 赵林峰 陈无畏 +1 位作者 秦炜华 杨军 《机械工程学报》 EI CAS CSCD 北大核心 2011年第2期109-114,共6页
低附着路面上,车辆自回正力矩显著降低,传统电动助力转向控制策略不能很好地克服这一不利影响,导致车辆回正性能降低,路感丧失甚至带来驾驶员对车辆的误操纵,或导致车辆不能及时回正;在建立基于整车动力学的电动助力转向系统模型的基础... 低附着路面上,车辆自回正力矩显著降低,传统电动助力转向控制策略不能很好地克服这一不利影响,导致车辆回正性能降低,路感丧失甚至带来驾驶员对车辆的误操纵,或导致车辆不能及时回正;在建立基于整车动力学的电动助力转向系统模型的基础上,经电动机电流和转矩传感器测得转矩值,拟合得到当前路面条件下的自回正力矩,同时通过转向盘转角信息计算理想路面条件下的名义自回正力矩,结合路面估计算法,将被识别的路面附着系数等级分为高、中、低,设计基于路面附着系数的助力电流控制策略和基于时变滑模变结构控制的回正控制策略,仿真结果表明可有效改善车辆在低附着路面上的操纵路感和回正性能。建立基于LabVIEW PXI的电动助力转向(Electric power steering,EPS)硬件在环试验平台,并对控制策略进行试验验证,试验结果和仿真结果基本一致。 展开更多
关键词 电动助力转向系统 低附着路面 控制策略 路感 回正性能
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旋转变压器位置检测在EPS中的应用 被引量:13
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作者 陈慧 马跃强 王磊 《传感器与微系统》 CSCD 北大核心 2006年第4期70-71,74,共3页
对角度传感器——旋转变压器的原理以及其数字化检测做了详细的介绍,系统地阐述了旋转变压器角位置检测的几种常用的方法,并从中选出一种方法应用到电动助力转向系统当中。简述了旋转变压器数字变换器(RDC)集成电路AD2S83及它们在电动... 对角度传感器——旋转变压器的原理以及其数字化检测做了详细的介绍,系统地阐述了旋转变压器角位置检测的几种常用的方法,并从中选出一种方法应用到电动助力转向系统当中。简述了旋转变压器数字变换器(RDC)集成电路AD2S83及它们在电动助力转向系统中的应用,达到了该系统对角度测量±1.2°的精度要求。 展开更多
关键词 角度传感器 旋转变压器-数字变换器 电动助力转向系统
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基于免疫模糊PID的EPS控制仿真研究 被引量:6
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作者 谭光兴 简文国 +1 位作者 高远 李珊 《计算机仿真》 CSCD 北大核心 2014年第9期170-173,276,共5页
研究提高汽车电动助力转向系统(EPS)的助力转向性能和轻便性的优化控制问题。传统PID控制参数优化前,需专家知识经验,且响应能力和跟随性能较差,影响EPS控制性能。为了提高EPS助力转向性能和轻便性,提出了采用免疫反馈控制和模糊控制相... 研究提高汽车电动助力转向系统(EPS)的助力转向性能和轻便性的优化控制问题。传统PID控制参数优化前,需专家知识经验,且响应能力和跟随性能较差,影响EPS控制性能。为了提高EPS助力转向性能和轻便性,提出了采用免疫反馈控制和模糊控制相结合的免疫模糊PID控制EPS转向柱转角的策略。首先,在EPS数学模型的基础上,建立输入为转向盘转角、输出为转向柱转角的EPS系统助力特性模型,并设计了免疫模糊PID控制器。其次,根据稳定性试验的相关标准,选取不同的转向工况,在Matlab中进行EPS控制仿真,并与常规PID控制的EPS进行比较,通过加入干扰验证改进算法的鲁棒性。结果表明改进算法能有效地提高EPS系统的快速响应能力和跟随性能,改善转向系统的助力转向性能。 展开更多
关键词 免疫模糊比例-积分-微分 电动助力转向 仿真 参数优化
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