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15下载:
simulink铅酸蓄电池的仿真模型, 能有效的模拟电池的充放电状态。-simulink simulation model of lead-acid batteries, which can effectively simulate battery charge and discharge status.
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卡尔曼滤波算法的仿真、最小二乘参数估计、整个电池管理系统的simulink仿真-Kalman filter algorithm simulation, least-squares parameter estimation, the whole of the battery management system simulink simulation
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:介绍了一种利用DSP控制的大容量蓄电池自动充电装置的设计。采用高频开关电源技术,给出了基于数
字信号处理器TMS320LF2407的充电装置控制系统的软、硬件设计。借助Matlab中的Simulink仿真工具,采用
在线模糊自整定技术对充电装置控制系统进行仿真,并将仿真结果应用于DSP控制器中,实现对Fuzzy-PID控
制的Kp、Ki、Kd参数的在线自整定,使充电方式能较好的模拟最佳充电曲线,达到理想效果。理论分析和试验都
表明,该充电装置能够有效地提高蓄电池的充电效率,加快
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Simulation design of lead acid battery
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inverter simulation with lead acid battery communication blocks are used
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lithumion acid battery used for simulation of inverter
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nickelcadmium used in battery for inverter simulation
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利用Matlab/Siulink搭建的一个光伏电池充放电模型,通过仿真,能较好地体现光伏电池充放电特性-Use Matlab/Siulink to build a photovoltaic cell charge and discharge model, through simulation, to better reflect the charge and discharge characteristics of the photovoltaic cells
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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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蓄电池仿真模型,应该是可以用的,这仅仅是做一个参考-Battery simulation model should be able to use, just make a
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基于微电网的太阳能光伏发电电池仿真的模型-Solar photovoltaic battery simulation model based on the micro-grid
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光伏发电matlab仿真 mppt 模型建立-Photovoltaic power generation matlab simulation the mppt model to establish
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锂-空气电池的仿真实验代码,在持续放电情况下,电池存活时间为50天。内附代码及环境说明文件。-Simulation of aLithium- air battery. In the case of discharging, the battery survives for 50 days. Code and introduction file included
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Lithium ion battery simulation using simulink. Very Good reference.
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SCI文章,关于电池热失控 ccm
ccm Battery Simulation.zip-ccm Battery Simulation.zip
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grid energy storage battery simulation matlab
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litium battery simulation matlab
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4下载:
电池SOC、SOH等仿真计算(Simulation calculation of battery SOC, SOH, etc)
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该模型主要模拟蓄电池及其电池管理系统,即BMS,其中包括充放电电流计算、电池温度等,可用于电动汽车、燃料电池汽车模拟,也可用于电池建模计算(The model mainly simulates the battery and its battery management system, namely BMS, including charge and discharge current calculation, battery temperature, etc., which can be us
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锂离子电池储能的一阶响应仿真模型,能基本实现电池储能的充放电。(The first-order response simulation model of Li-ion battery energy storage can basically realize the charge and discharge of battery energy storage.)
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