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摘要:功率控制是CDMA系统中的关键技术之一.本文利用SystemView软件对CDMA系统反向闭环
功率控制进行了仿真.结果表明,通过适当的功率控制算法可以在保证一定误帧率的基础上降低移
动台的发射功率,增加系统容量,并延长移动台电池的使用时间.
关键词:CDMA 功率控制 仿真-Abstract : Power Control in CDMA Systems is one of the key technologies. By using the SystemView softw
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电池模型 用于电动车和电网之间的充放电仿真-The battery model is used to charge and discharge between electric vehicles and grid simulation
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三阶蓄电池数学模型pscadd实现可以很好的实现充放电的仿真
-Pscadd of third-order battery mathematical model can achieve a good simulation of the charge and discharge
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具有最大功率点跟踪功能的光伏电池,采用matlab编写,可以用于光伏系统的仿真实验-pv battery with mppt function, written under matlab,it can be used in pv system simulation
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PSCAD环境下DC----DC变换器的仿真,可以作为光伏及蓄电池并网运行前端直流电压的变换 -PSCAD environment simulation DC---- DC converter can be used as PV and battery and network operation front of the DC voltage conversion
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You can monitor battery level.
AVR Studio 4 is used. C code is developed. Atmega8 is interfacing IC-Atmega8, AVR Studio 4 , WinAVR , Simulation code for Battery level monitoring
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这个一个关于储能电池充放的仿真,电路采用了DC_DC变换控制。-The storage battery charge and discharge about simulation, the circuit uses DC_DC conversion control
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铅酸蓄电池的MATLAB仿真模型,能够实现充放电过程-MATLAB simulation model of lead-acid battery, charging and discharging process can be realized
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这是一个关于matlab的电池充放电的仿真的程序。希望对大家有帮助-This is a matlab simulation of battery charge and discharge procedures. I hope everyone has to help
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光伏电池仿真,光伏电池模型建立,最大功率跟踪控制,蓄电池充放电控制-Photovoltaic cell simulation, photovoltaic cell model, maximum power tracking control, battery charge and discharge control
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光伏蓄电池的仿真模型,有点问题,但是能用在微电网中-PV battery simulation model, a little problem, but can be used in microgrid
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固体氧化物燃料电池的仿真模型,适用于简单的仿真研究(simulation model of Solid Oxide Fuel Cell,suitable for simple simulation research)
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a simple simulation of islanded microgrid with battery
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该模型是一个典型的蓄电池模型,可以用在新能源和微电网仿真方面。可以提供一些参考,希望有所帮助(The model is a typical battery model, which can be used in the simulation of new energy and micro grid. Can provide some reference, hope to help)
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在安时计量方法的基础上, 采用基于折算库仑效率的卡尔曼滤波算法估计蓄电池荷电状态(SOC),并
将此方法应用于 HEV6580混合动力电动汽车镍氢电池管理系统。系统实现的功能包括: 数据监测、数据显示、CAN
通信、SOC估计、热管理和安全报警。经电池试验台模拟工况试验验证, 电池管理系统各子系统达到设计要求且工
作稳定。改进 SOC估计方法解决了传统安时计量法不能估计初始 SOC、难于准确测量库仑效率的问题, 为电池管
理系统稳定工作提供保证(Based on the countin
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grid energy storage battery simulation matlab
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电池仿真估算,对模型进仿真,获得电池的剩余电压(Battery simulation estimates, simulation of the model, the battery residual voltage)
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这个例子展示了高压电池,如混合动力汽车中使用的电池。该模型使用一个现实的直流链路电流配置文件,它源于一个动态的驾驶周期。总模拟时间为3600秒。(This example shows a high-voltage battery like those used in hybrid electric vehicles. The model uses a realistic DC-link current profile, which originates from a dynamic drivin
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电池SOC、SOH等仿真计算(Simulation calculation of battery SOC, SOH, etc)
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进行电池仿真用数据,由电流,电压和SOC构成。由于使用电池模型仿真做成,因此最大电流进行了归一化,没有用实际的电流进行,可自行放大和缩小。
包括UDDS放电数据和三个恒流放电数据和三个间隔恒流放电数据(The data for battery simulation is composed of current, voltage and SOC. Because the battery model is simulated, the maximum current is normalized a
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