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超级电容有轨电车节能驾驶方法研究 被引量:1
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作者 张华志 付程成 +3 位作者 肖壮 王青元 冯晓云 何斌 《机车电传动》 北大核心 2022年第5期123-128,共6页
针对超级电容有轨电车节能驾驶问题,系统性考虑车辆牵引/制动特性、区间运行时间约束、线路坡度值变化、超级电容充放电能力等条件,提出一种基于极大值原理的最优操纵规则的改进动态规划算法。文章介绍了有轨电车运行系统模型,构建节能... 针对超级电容有轨电车节能驾驶问题,系统性考虑车辆牵引/制动特性、区间运行时间约束、线路坡度值变化、超级电容充放电能力等条件,提出一种基于极大值原理的最优操纵规则的改进动态规划算法。文章介绍了有轨电车运行系统模型,构建节能驾驶优化问题;基于极大值原理分析总结超级电容有轨电车节能驾驶工况集,结合动态规划思路构建速度轨迹状态空间;采用二分法迭代求解满足准点时间约束的节能驾驶速度曲线。仿真结果表明,改进动态规划算法比常规动态规划算法有更好的求解效率和求解质量,同时超级电容有轨电车的高再生制动利用率会提高电制动工况的使用时机,压缩惰行工况的使用时机。 展开更多
关键词 城市轨道交通 节能优化 再生制动 超级电容有轨电车 改进动态规划 仿真
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基于iCAN协议分布式超级电容监测系统 被引量:2
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作者 龚正大 梁全顺 曾维明 《工业控制计算机》 2009年第2期40-41,共2页
介绍了iCAN现场总线协议的特点,对基于iCAN分布式超级电容监测系统的硬件平台和软件流程作了说明。
关键词 iCAN现场总线 超级电容监测系统 电容电车 硬件平台
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储能式有轨电车的永磁同步电机控制策略优化 被引量:1
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作者 杨高兴 张瑞峰 +2 位作者 路瑶 詹哲军 柴璐军 《微电机》 北大核心 2020年第7期66-70,104,共6页
提出一套有轨电车的永磁同步电机优化控制策略。在d-q轴电流平面内分析永磁同步电机不同限制曲线之间的关系和电流轨迹变化的情况;以转矩为控制目标,在以MTPA曲线、电流极限圆和电压极限椭圆为边界的区域内根据永磁同步电机转矩特性曲... 提出一套有轨电车的永磁同步电机优化控制策略。在d-q轴电流平面内分析永磁同步电机不同限制曲线之间的关系和电流轨迹变化的情况;以转矩为控制目标,在以MTPA曲线、电流极限圆和电压极限椭圆为边界的区域内根据永磁同步电机转矩特性曲线规划电流轨迹;采用MTPA控制和优化弱磁控制相结合的算法进行控制实现;以青岛超级电容储能式胶轮有轨电车为实验平台对该方法进行了现场试验及长时运行考核,永磁同步电机实际输出转矩能准确地跟踪给定转矩,且MTPA控制和优化弱磁控制能平稳运行及切换,证明了所提方法的有效性和实用性。 展开更多
关键词 永磁同步电机 有轨电车 优化弱磁控制 超级电容储能式胶轮有轨电车
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燃料电池混合动力100%低地板有轨电车制动系统研发 被引量:2
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作者 谢春杰 吉振山 陈玄圣 《现代国企研究》 2017年第2期115-,共1页
通过介绍中车唐山机车车辆有限公司燃料电池/超级电容混合动力100%低地板有轨电车,详细阐述了制动系统的功能。文中介绍了燃料电池混合动力100%低地板现代有轨电车采用的液压制动系统。
关键词 燃料电池/超级电容混合动力100%低地板现代有轨电车 液压制动系统
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无轨电车将剪掉“小辫子”
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《城市公交规划与管理》 2004年第4期47-47,共1页
关键词 上海 无轨电车 车辆设计 快速充电景观候车站 电容蓄能变频驱动电车
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Electromagnetic Compatibility Technology of Electric Vehicles and Its Development Trend
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作者 文宝忠 李波 周荣 《China Standardization》 2012年第2期58-61,共4页
The electromagnetic compatibility of electric vehicles is not only the important technology issue in researches,development and industrialization of electric vehicles,but also the key research area of ISO.In this pape... The electromagnetic compatibility of electric vehicles is not only the important technology issue in researches,development and industrialization of electric vehicles,but also the key research area of ISO.In this paper,both national and international standards of electromagnetic compatibility of electric vehicles are analyzed;it is also suggested that our standards of electromagnetic compatibility of electric vehicles be improved from several aspects such as testing items,test procedures,limit value,etc.The electromagnetic environment of electric vehicles is analyzed in terms of interfering sources,providing the solutions to electromagnetic compatibility and measures of reducing electromagnetic interference.Advanced equipments introduced into Chinese electromagnetic compatibility testing laboratories accelerate the pace of the researches on related technologies and standards;China will develop the standards system which covers from the complete electric vehicle to the key components,promote the technology improvement and industrialization work of Chinese electric vehicles,transform the latest achievements and advanced experiences of Chinese electric vehicles industry to the related standards and contribute the development of international standards. 展开更多
关键词 electric vehicles electromagnetic compatibility standards system TREND
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New Approach to Ultracapacitor Technology: What it Can Offer to Electrified Vehicles
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作者 Yurii Maletin Natalia Stryzhakova +5 位作者 Sergii Zelinskyi Sergey Chemukhin Dmytro Tretyakov Hugo Mosqueda Natalia Davydenko Dmytro Drobnyi 《Journal of Energy and Power Engineering》 2015年第6期585-591,共7页
Novel carbon-carbon ultracapacitors and hybrid lithium-carbon devices are described. New approach to the design of electrode materials and electrochemical systems followed by the improved design of ultracapacitor cell... Novel carbon-carbon ultracapacitors and hybrid lithium-carbon devices are described. New approach to the design of electrode materials and electrochemical systems followed by the improved design of ultracapacitor cells and modules have resulted in prototypes of superior performance that was verified by independent tests in the Institute of Transportation Studies, UC (ultracapacitor) Davis, in JME Inc., in Wayne State University, and in some other labs. All the test results confirm the superlative performance of the devices developed: carbon-carbon ultracapacitors demonstrate the extremely low inner resistance resulting in the highest power capability and efficiency that also alleviates the cooling requirements and improves safety. Our "parallel" hybrid devices demonstrate substantially higher energy density than competing LIC (lithium ion capacitor) technologies keeping at the same time the high power density, comparable with the best carbon-carbon ultracapacitors available in the market. In order to make ultracapacitor technology even more attractive to automakers, new organic electrolytes (not ionic liquids) have been developed and are currently under testing at temperatures about 100 ℃ and voltages up to 3.0 V. 展开更多
关键词 ULTRACAPACITOR hybrid device high power large energy.
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Comparison of the topologies for a hybrid energy-storage system of electric vehicles via a novel optimization method 被引量:1
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作者 ZHANG Shuo XIONG Rui ZHOU Xuan 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第7期1173-1185,共13页
The combination of batteries and ultracapacitors has become an effective solution to satisfy the requirements of high power density and high energy density for the energy-storage system of electric vehicles.Three aspe... The combination of batteries and ultracapacitors has become an effective solution to satisfy the requirements of high power density and high energy density for the energy-storage system of electric vehicles.Three aspects of such combination efforts were considered for evaluating the four types of hybrid energy-storage system(HESS)topologies.First,a novel optimization framework was proposed and implemented to optimize the voltage level of a battery pack and an ultracapacitor pack for the four types of HESS topologies.During the optimization process,the dynamic programming(DP)algorithm was iteratively applied to determine the optimal control actions.The simulation results with DP were used to evaluate the energy efficiency of different HESS topologies at different voltage levels.Second,the optimized voltage level of the battery and ultracapacitor in each topology indicates that a higher voltage level usually results in a better system performance.The simulation results also illustrate that the optimized rated voltage level of the battery pack is approximately 499.5 V,while for the ultracapacitor pack,the optimized voltage level is at its maximum allowed value.Note that the constraint of the battery voltage is initialized at200–600 V.Third,the control rules for different HESS topologies were obtained through the systematic analysis of the simulation results.In addition,advantages and disadvantages of the four topologies were summarized through evaluation of the efficiency and operating currents of the batteries and the ultracapacitor. 展开更多
关键词 electric vehicles lithium-ion battery ULTRACAPACITOR hybrid energy-storage system TOPOLOGY dynamic programming
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