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新能源汽车专业毕业论文参考文献

列出论文参考文献的目的是让读者了解论文研究命题的来龙去脉,便于查找,同时也是尊重前人劳动,对自己的工作有准确的定位。因此这里既有技术问题,也有科学道德问题。如下是我为大家收集的新能源汽车专业毕业论文参考文献,欢迎阅读!

[1]徐枭,王巧凤,周荣,新能源汽车发展主要障碍及其解决方案[J],上海汽车,2009,(5):7—10

[2]杨婕,消费者对电动汽车购买意愿实证研究—基于政府产业政策理论[J],特区经济,2012,(2):302—304

[3]李光,影响我国电动汽车产业发展的关键因素研究[J],武汉理工大学学报,2011,(6):14—18

[4]霍风利,我国发展电动汽车产业的'可行性及对策研究[D],中国海洋大学硕士学位论文,2010:23—27

[5]田萍,新能源汽车是新的经济增长点[J],资源与人居环境,2009,(9):74—76

[6]方海洲,胡研,促进新能源汽车快速发展的税收优惠政策影响分析[J],汽车科技,2009,(3):7—10

[7]国家863电动汽车重大科技专项办公室,全球氢能研发及相关政策调查报告[R],2004

[8]德勤全球制造组,电动车现状与消费者期望之比较[J],全球视角,2011,(1)

[9]曾耀明,史忠良,中外新能源汽车产业政策对比分析[J],企业经济,2011,(2):107—109

[10]李东卫,我国新能源汽车产业的挑战及对策[J],广东经济,2011,(2)

[11]迈克尔·波特,竞争优势[M],北京:华夏出版社,1997:280—317

[12]李大元,低碳经济背景下我国新能源汽车产业发展的对策研究[J],经济纵横,2011

[13]罗少文,我国新能源汽车产业发展战略研究[D],复旦大学硕士学位论文,2008

[14]杨海霞,新能源汽车技术路线落定,中国投资[J],2012,(11)

[15]张海波,我国新能源汽车产业技术路线图研究[D],武汉理工大学硕士学位论文,2012

[16]刘浩华,程杨,中国新能源汽车需求风险关键因素研究[J],科技管理研究,2014,(19)

[17]章荣武,“钻石模型”及其应用:中国船舶工业产业竞争优势分析[D],厦门大学硕士学位,2006

[18]赵亮,BYD公司新能源汽车发展战略研究[D],山东大学硕士学位论文,2013

[19]张坤,安徽汽车产业国际竞争力分析[D],安徽大学硕士学位论文,2011

[20]赵斌,比亚迪新能源汽车消费的影响因素分析[D],中南大学硕士学位论文,2010

[21]顾瑞兰,促进我国新能源汽车产业发展的财税政策研究[D],财政部财政科学研究所博士学位论文,2013

[22]王慧,促进我国新能源汽车产业发展的财税政策研究[D],江西财经大学硕士学位论文,2010

[23]温岳中,基于产业生命周期理论的新能源汽车产业支持政策研究[D],北京交通大学硕士学位论文,2012

[24]方玲,基于成本—效益分析视角的我国新能源汽车产业发展策略研究[D],中南大学商学院硕士学位论文,2013

[25]文凯,借鉴国际经验发展我国新能源汽车产业研究[D],东北财经大学硕士学位论文,2010

[26]陈柳钦,美日欧新能源汽车产业发展的政策支持[J],汽车工程师,2010,(10):22—25

[27]孙浩然,日本新能源汽车产业发展分析[D],吉林大学硕士学位论文,2011

[28]金永花,日本新能源汽车市场推广策略对我国的借鉴[J],东北亚论坛,2012,(3):105—112

[29]高飞,我国电动汽车研发战略联盟模式选择研究[D],河北师范大学硕士学位论文,2012

[30]韩怀玉,我国新能源汽车产业发展的国际比较研究[D],陕西师范大学硕士学位论文,2012

198 评论

流浪猫想家

CAN bus in the electric vehicle monitoring system of Abstract Now, CAN, high-performance and reliability has been recognized and was widely used in industrial automation, marine, medical equipment, industrial equipment, and so on. Field Bus is the development of automation technology One of the focuses of the area known as automated computer LAN. It is a distributed control system to achieve real-time between the nodes, reliable data communications providing strong technical support. CAN bus belonging to the scene of the areas, it is an effective support for real-time control of distributed control or serial communication network. Compared with many of the current RS-485 based on the R line Construction of the Distributed Control System, based on the CAN bus distributed control system has obvious advantages. In this paper, occupies a lot of relevant information based on the comprehensive use of various methods of the CAN bus in the electric vehicle monitoring system in the application of theory and an analysis of development issues, and some of the problems raised his own views. The full text is divided into four parts: The first part of the main topics on the background and content of the subjects studied in the context of topics to write on the CAN bus status and significance in the research described in the content of the object of measurement requirements and complete the task of this paper. The second part, write data acquisition module design, from the SJA1000 CAN-based communications port design, acquisition, the electric car design; electric car design capacity of the collection node consists of three parts. The third part, mainly to write the electric vehicle monitoring network design, the first Fieldbus awakened comparison and choice, selected after the introduction of the CAN bus, the last of the SJA1000 CAN bus controller is introduced. The fourth part is really on the reliability of the system design for discussion, data from the calibration, the anti-jamming software and hardware design of the anti-jamming design in three areas to address the reliability of the system problems. Key words :Fieldbus; CAN bus; SJA1000; nodes;

302 评论

恶魔漫步

Computer aided design of an axial-field PM brushless DC motor for an electric vehicle, Concept of the “KAZ”, the Start of a New Generation in Car Design, Conceptual Design of Hybrid Electric Vehicle for Urban Use in China, Consumer Education - An Essential Element in the Acceptance of the Electric Vehicle, Control and Management Strategies for the Delphi High Power Lithium Battery, Control of a Continuously Operated Pole-Changing Induction Machine, Control of compact hybrid drive consisting of PM motor and planetary transmission CVT,Control of independent rear wheel drives for electric and hybrid vehicles using one neuro-fuzzy controller, Controller-induced parasitic torque ripples in a PM synchronous motor, Coordination of Charging Stations for Electric Vehicles, Coupled Electrochemical and Thermal Analysis of Electric-Vehicle Battery Modules, Current Activities of Standardisation in Japan, Current Status Report on U.S. Department of Energy Electric and Hybrid Electric Vehicle Energy Storage R&D Programs, Current-mode control for sensorless BDCM drive with intelligent commutation tuning, DaimlerChrysler EPIC Minivan Powered by Lithium-Ion Batteries, Design and analysis of a new multiphase polygonal-winding permanent-magnet brushless DC machine, Design and development of the 2001 Michigan Tech FutureTruck, a power-split hybrid electric vehicle, Design and development of the 2002 Comell University hybrid electric vehicle, Design and development of the 2002 Michigan Tech FutureTruck, a parallel hybrid electric vehicle, Design and development of the 2002 Penn State University parallel hybrid electric explorer, the Wattmuncher。翻译计算机辅助设计轴向场永磁无刷直流电动机的电动车,概念的“哈萨克斯坦” ,开始了新一代车设计,概念设计的混合动力电动车在城市中使用,消费者教育-一个基本要素接受电动车,控制和管理战略,德尔福高功率锂电池,控制不断操作变极异步电机,紧凑的控制组成的混合动力驱动永磁电机和行星传动无级变速器,控制独立后轮驱动的电动和混合动力车使用一个神经模糊控制器,控制器诱导寄生转矩脉动的永磁同步电机,协调收费站的电动车,加上电化学与热分析的电动汽车电池模块,当前的活动标准化在日本,目前状况的报告对美国能源部电力和混合动力电动汽车储能研发项目,电流模式控制传感器无刷直流电动机驱动器与智能折算调整,戴姆勒克莱斯勒史诗休旅本站由锂离子电池,设计与分析新的多相多边形绕组永磁无刷直流电机,设计和发展的2001年密歇根理工FutureTruck ,权力分割混合动力电动汽车,设计和发展的2002年康奈尔大学的混合动力电动汽车,设计和开发的技术在2002年密歇根州FutureTruck ,一个平行式混合动力电动汽车,设计和发展的2002年宾夕法尼亚州立大学并联式混合动力电动Explorer时, Wattmuncher

149 评论

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