1) solar energy cell array
太阳能电池阵列
1.
This circuit gets direct coupling between solar energy cell array and storage battery and adopts low power consume single-chip microcomputer P87LPC767 as core in control circuit.
该电路将太阳能电池阵列与蓄电池直接耦合,采用低功耗的单片机P87LPC767作为控制电路的核心,实时测量蓄电池的端电压,通过脉宽调制控制太阳能电池阵列的充电电压,并通过功率管控制蓄电池与负载的通断,实现对蓄电池的放电保护。
2.
This circuit gets direct coupling between solar energy cell array and storage battery,adopts low power consume single chip microcomputer P87LPC767 as co.
该电路将太阳能电池阵列与蓄电池直接耦合,采用低功耗的单片机P87LPC767作为控制回路的核心,实时测量蓄电池的端电压,通过脉宽调制控制太阳能电池阵列的充电电压,并通过功率管控制蓄电池与负载的通断,实现对蓄电池的放电保护。
2) silicon solar cells array
硅太阳电池阵列
1.
Simulation model of silicon solar cells array by using matlab/simulink module based on engineering analytical model of silicon solar cells was built.
根据硅太阳电池工程用数学模型,利用matlab/simulink模块建立了硅太阳电池阵列仿真模型。
3) solar array
太阳电池阵列
1.
Thus, more and more solar energy stations appear, for the sake of the solar array configuration being proper and using energy efficiently, it is necessary to test and analyze the characteristic of solar array.
随着太阳能电站的增多,为合理配置太阳能电站的电池阵列,提高发电效率,需要对太阳电池阵列的特性进行现场测试并做出分析。
2.
With the development of photovoltaic industry, more and more solar energy stations will appear, proper solar array configuration and its energy efficient usage become important.
目前光伏产业迅速发展,太阳能电站逐渐增多,为合理配置太阳能电站的电池阵列,提高发电效率,需要对太阳电池阵列特性进行现场测试并做出分析。
3.
For the rational configuration of the solar arrays in a solar power station, improving efficiency and reducing the costs of power generation, there it is necessary for to test and analyse the characteristics of the solar arrays of on-in site testing and analysis.
为合理配置太阳能电站的电池阵列、提高发电效率、降低发电成本,需要对太阳电池阵列的特性进行现场测试并做出分析。
4) solar array
太阳能电池阵
1.
Based on the solar cell mathematic model,a practical solar array simulator was designed.
太阳能电池阵列模拟器是系统地面测试阶段的重要组成部分,是为了验证太阳能电池的性能和可靠性而建立的。
2.
Deployment dynamics of solar arrays on ground is simulated by using numerical methods.
根据太阳能电池阵在地面展开试验条件下的受力状态,提出了蜗卷弹簧、空气阻力、气浮平台摩擦力、铰链副阻力矩等受力条件的定量计算方法,利用Lagrange方程建立了电池阵展开过程的动力学方程,由此对太阳能电池阵的地面展开试验进行了动力学仿真。
3.
Dynamic procedure of deployment of a solar array in the ground environment was simulated by numerical method,where the air influence was regarded as added generalized mass.
将空气的影响视为附加在电池阵上的广义质量 ,用数值方法模拟了航天器太阳能电池阵在地面试验空气介质中展开时的动力学过程。
5) solar arrays
太阳电池阵
1.
Thermally induced vibration of the main mast of the space station s solar arrays;
某空间站太阳电池阵中央桁架热-结构耦合动力学分析
6) solar array
太阳电池阵
1.
Thermal analysis of solar array with rigid substrate on spacecraft in orbit;
航天器刚性基板太阳电池阵在轨热分析
2.
Method for determining the equivalent capacitance of solar array sample;
太阳电池阵样品等效电容的确定方法
3.
An estimative examination to the hedge electrostatic discharge of high voltage and high power solar array;
高压大功率太阳电池阵防静电措施评价试验
补充资料:非晶硅太阳电池阵列
非晶硅太阳电池阵列
非晶硅太阳电池阵列 万群*祷
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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