搜索资源列表
EV
- 介绍了当前电动汽车充电站建设的3 种典型模式,在此基础之上设计了一种电动汽车充电站监控系统。该系统主要包括软件统一支撑平台、充电监控、配电监控、烟雾报警监视、电池维护监控、快速更换设备监控、数据交换和转发等功能。并介绍了该系统的应用情况,指出了该系统的发展方向。-Describes the current electric vehicle charging station building three kinds of typical patterns, in this based on the
cichechongdian
- 新出国标:《电动汽车电池管理系统与非车载充电机之间的通信协议》.pdf-The new standard abroad: " Electric Vehicle Battery Management system and non-vehicle communication protocol between the charger" . Pdf
bi-directional-DCDC-converter
- 详细介绍了双向直流变化器的结构及控制技术,为电动汽车电池充放电系统的设计提供了一个很好的平台。-Details of the bi-directional changes of the structure and the DC control technology for electric vehicle battery charge and discharge system is designed to provide a good platform.
battery-management-system
- 基于双CAN总线的电动汽车电池管理系统,BMS-Based on dual CAN bus electric vehicle battery management system
Battery-Electric-Vehicle-and-Hybrid-Fuel-cell
- Battery Electric Vehicle and Hybrid Fuel-cell/ Battery Electric Vehicle for EPA P3 2011 Competition
vehicle-battery-SOC-research
- 一篇介绍动力电池管理系统SOC估算研究及设计的论文,希望有所帮助。-Introduced a battery management system research and design SOC estimation papers, hoping to help.
BATTERY-SOC
- 蓄电池核电状态的评估,与MATLAB仿真-This article the lithium ion power battery current- voltage response , through the experiment analyzes the FreedomCar battery model existing shortcomings, puts forward improvement on its, and prove the feasibility of the improv
iPowerCloud
- 汽车远程监控系统具有实时监控车辆的电池信息,电机控制器信息,整车信息车辆运行状态信息、故障信息、电池信息等的显示、查询和存储功能,用户能够实时掌握电动车辆的运行情况,使人、车、路三者紧密协调,为车辆的运营、维护提供快速的安全保障。 系统由两部分组成,一是车载信息终端;二是云端信息服务平台。通过车载信息终端和云端信息服务平台实现对电动车辆的远程监控、故障诊断和信息服务。用户可通过浏览器登陆远程综合信息服务平台,对电动车辆进行管理,同时可获取相应的服务信息。 -Battery Informa
BMSTest
- 模拟BMS,测试充电桩,经测试完好!符合《GB-T 27930-2015 电动汽车非车载传导式充电机与电池管理系统之间的通信协议》,用的USB转CAN外接模块。-Analog BMS, charging pile test, tested good! In line with the communication protocol between the GB-T 27930-2015-board electric vehicle conductive charging unit and bat
GB27930-2015
- 国标,规定了电动汽车BMS和直流充电桩之间,基于CAN的通信协议(GB/T 27930-2015 Communication protocols between off-board conductive charger and battery management system for electric vehicle)
GB_T 31525-2015
- GB T 31525 电动车辆充电设施标志(GB T 31525 Graphical signs - Electric vehicle charging and battery swapping infrastructure signs)
电池SOC估算
- 电池荷电状态的估算是电池管理系统的核心内容估算准确与否,将直接影响到电池管理系统的决策和控制。在结合开路电压法、安时法的基础上。充分利用扩展卡尔曼滤波法的修正功能综合考虑电池充放电倍率、温度和充放电循环次数等因素对电池的影晌,提出了卡尔曼滤波修正算法,并将其应用在插电式混合动力汽车电池管理系统中。(The estimation of battery charge state is the core content of battery management system. Whether th