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PLC技术在汽车机电控制系统中的应用 被引量:1
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作者 于笑晨 马振寰 曹雪峰 《汽车测试报告》 2022年第21期49-51,共3页
PLC是一种以计算机技术为核心的可编程控制器,应用于各行各业的工业控制装置,它在程序控制和安装上有显著的优越性。该文在简单介绍PLC技术的基础上,分析PLC技术在汽车机电控制系统中的应用意义,以及PLC技术在汽车机电控制系统中的设计... PLC是一种以计算机技术为核心的可编程控制器,应用于各行各业的工业控制装置,它在程序控制和安装上有显著的优越性。该文在简单介绍PLC技术的基础上,分析PLC技术在汽车机电控制系统中的应用意义,以及PLC技术在汽车机电控制系统中的设计。实践证明,采用PLC技术进行汽车机电控制系统设计与应用,可提高系统的运行效率,有效地解决传统控制系统的管理效率低下问题。 展开更多
关键词 PLC 汽车机电控制 工业控制
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现代汽车机电技术研究
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作者 黄祎雯 《汽车世界》 2020年第10期2-2,共1页
汽车机电技术与汽车制造密切相关,现代汽车机电技术因科学技术水平的提高而改变,使得汽车行业飞速发展。汽车机电一体化技术是现代汽车制造的关键,本文对现代汽车机电技术进行下述分析。
关键词 现代汽车 汽车机电一体化技术 汽车机电控制系统
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Research and Development of a New Calibration Tool for Electronically Controlled Engine Based on KWP2000 被引量:1
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作者 冯静 王俊席 +1 位作者 钟军 卓斌 《Journal of Shanghai Jiaotong university(Science)》 EI 2003年第2期197-201,共5页
Today’s vehicles use electronic control units(ECU) to control engine/transmission, body and other amenities. All the vehicle performance depends on a lot of physical values and influence factors. This leads to a larg... Today’s vehicles use electronic control units(ECU) to control engine/transmission, body and other amenities. All the vehicle performance depends on a lot of physical values and influence factors. This leads to a large number of control and regulation parameters in the ECU software. The ultimate objective of calibration work is the optimum determination of these parameters. Qualitatively excellent results can only be achieved in a shorter time by using a highly efficient calibration system. This paper provided an overview of a new calibration tool based on KWP2000 and gave an example calibration with this tool. 展开更多
关键词 calibration tool KWP2000 electronically controlled engine
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Control Strategies for PM Synchronous Machine Controlled Rectifier Intended for Heavy-Duty Vehicle 被引量:1
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作者 Alexandre De Bernardinis 《Journal of Energy and Power Engineering》 2013年第3期552-570,共19页
In order to charge batteries and supply all the electrical devices like wheel-motors used in a heavy-duty hybrid electric vehicle, a solution consists in using an assembly permanent magnet generator driven by a diesel... In order to charge batteries and supply all the electrical devices like wheel-motors used in a heavy-duty hybrid electric vehicle, a solution consists in using an assembly permanent magnet generator driven by a diesel engine and a three-phase insulated gate bipolar transistor/diodes bridge controlled rectifier connected to the battery. In this work, hysteresis current control strategies combined with a judicious current sensing mode for the assembly permanent magnet synchronous machine-controlled rectifier are investigated. Main issues first concern the different kinds of transistors switching modes allowed by the proposed current sensing mode when the machine operates either as a generator or as a motor. Second, the modulated hysteresis method is presented, which merges the performances of robustness and dynamic of the classical hysteresis method and imposes the switching frequency alike pulsewidth modulation techniques. A test bench at reduced power permits to test the switching modes as well as classical and modulated hysteresis methods for both motor and generator operating modes and to validate the simulation predictions. The digital signal processor algorithm elaborated for the control strategy is flexible and adaptable to all kinds of transistor switchings and machine operating modes. 展开更多
关键词 Hysteresis current control modulated hysteresis method PM synchronous machine hybrid electric vehicle.
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Control of Energy Regeneration for Electric Vehicle 被引量:3
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作者 张毅 冒晓建 +1 位作者 李立明 卓斌 《Journal of Shanghai Jiaotong university(Science)》 EI 2008年第4期430-435,共6页
To extend electric vehicle (EV) running distance, the vehicle energy regeneration (ER) method and vehicle control strategy were designed based on the original vehicle braking system. The ER principle of direct current... To extend electric vehicle (EV) running distance, the vehicle energy regeneration (ER) method and vehicle control strategy were designed based on the original vehicle braking system. The ER principle of direct current (DC) brushless motor was studied, the motor mathematical model and PI control method with torque close-loop were built. This control method was applied to pure EV and the real road tests were evaluated. The ER control does not make any significant uncomfortable influence brake feeling and can save about 10% battery energy based on 3 times economic commission for Europe (ECE) driving cycles. 展开更多
关键词 electric vehicle DC brushless motor energy regeneration CONTROL
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