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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
2812EV
- TMS320F2812 重点介绍EV模块中的定时器及其PWM电路-TMS320F2812 EV
akilli-ev-sistemleri--serdar-ates
- in turkish language house outomation system-in turkish language house outomation system
05715944
- The role of an Aggregator Agent for EV in the Electricity Market
A-strategy-of-load-leveling-by-charging-and-disch
- Battery topology to be sleected for EV ancdl oad balancing
IAR_KeyGen_20100428
- IAR kegen 注册机 分别为PartA,PartB,PartC 此注册机针对的是IAR官网上下载的EV版(评估板)-IAR kegen RI PartA, PartB, PartC RI for the IAR official website, download the EV (Evaluation Board)
STM32Discovery
- stm32 EV kit help files
BMSsystem
- EV 电池管理系统主控单元 simulink 仿真模型-EV Battery Management System master unit simulink simulation model
Copy-of-F2812PWM
- dsp adc ev sci spi program
spwm
- 规则采样法毕业论文,基于DSP2812 EV比较控制电机驱动-SPWM control
3KW-eV-net-design
- 利用TMS320LF240系列,采用有效值外环、瞬时值内环的控制方法来保证逆变器良好的输出波形-The TMS320LF240 series, using the effective value of the outer ring and the instantaneous value of the inner loop control method to ensure that the inverter output waveform
CurvrFitting
- 非晶态硅Forouhi-Bloomer模型参数拟合计算 半导体材料对光的吸收作用用k表示。材料的k一般都会随着入射光的波长的改变而改变。其变化规律因材料而异,但是对于同一类型的材料常可以用一种模型来表示。但是对于特定的材料,其模型参数的确定常的通过曲线拟合的方法得到的。 题目: 对于非晶态的硅,其K满足如下模型: 其中A、B、C为系数,且均大于零,并满足4C-B2>0 Eg为禁带宽度,值为1.3 ev , E为能量。 现已知一组E对应的
Icons
- reg reg ev rgegregergreg-regregregregev rgegregergreg
MY-EV-TIME-INT
- DSP定时器功能测试,本程序我亲自在CCS4.2环境中测试过,程序功能虽然简单,但足以说明DSP定时器的功能和使用方法 -DSP timer generate adjustable pulse waveform
EV-Globe-SDK
- EV-Globe SDK二次开发实例,主要介绍了EV-Globe三维应用-EV-Globe SDK secondary development instance, introduced the EV-Globe 3D applications
the-effect-of--EV-on-the-grid
- 关于电动汽车充电桩对电网的影响,电动汽车的接入电网时间分配和优化。-About electric vehicle charging pile for power grid, the influence of electric vehicles connected to the electricity grid time allocation and optimization.
EV-charge
- 电动汽车有序充电 实现住宅小区内电动汽车有序充电优化模式-ev charge
time-ev-charge
- 扩展时间尺度下的电动汽车有序充电策略 电动汽车有序充电-Under the extended time scale electric vehicle charging strategy ordered orderly charging electric vehicles
Impact-of-EV-Charging
- 电动汽车充电策略对高峰需求减少和负荷因数的影响 -Impact of EV Charging Strategies on Peak Demand Reduction and Load Factor Improvement
EV充电国家标准合集
- GB/T 20234-1/2/3 电动汽车交流/直流充电接口(GB/T 20234-1/2/3 Connection set for conductive charging of electric vehicles - Part 1 /Part 2 /Part 3)