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详细介绍了光伏电池的模型,包括建模方法,太阳能电池的性质,最大功率跟踪原理等-Detailed model of the photovoltaic cells, including the modeling method, the nature of solar cells, maximum power tracking theory, etc
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一个用PSCAD编写的并网型微网系统,含有风力发电系统和光伏发电系统-A PSCAD written and grid-connected micro-grid system, with wind power systems and photovoltaic power generation system
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matlab仿真的boost升压电路,应用于光伏发电逆变并网中。-The boost circuit, boosting circuit is applied to the simulation model of photovoltaic power generation in the.
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离网光伏发电系统仿真 光伏电池 Boost电路 逆变-Off-grid PV power system simulation Boost circuit photovoltaic inverter
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本文首先分别从光伏电池特性、Buck电路基本原理,最大功率跟踪方法、PI补偿、PWM调制等方面分别进行分析设计,最后利用Simulink对光伏发电系统进行了仿真,并对其进行最大功率跟踪。-Firstly separately the PV cell characteristics, Buck circuit basic principle, the maximum power point tracking method, PI compensation, PWM modulation and
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光伏发电系统最大功率跟踪方法中,电导增量法的S函数-Maximum power tracking method for photovoltaic power generation system, the S function of the conductance increment method
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单相单级太阳能光伏功率点跟踪,及并网参数设计,可作为参考-Single-stage solar photovoltaic power point tracking, Network and the design parameters, as a reference
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基于MATLAB的光伏单元最大功率点跟踪,使用了MPPT算法(MATLAB based photovoltaic unit maximum power point tracking, using the MPPT algorithm)
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电力电子小型光伏发电系统,非常好用,有pid(Power Electronics Small photovoltaic power generation system, very easy to use, there pid)
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Research on Inverter Technology of Photovoltaic Power System
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微电源为光伏发电单元,储能设备是蓄电池作,当光伏电池工作在最大功率点,满足蓄电池和负荷供电的情况下,系统能量仍有剩余时,经过变换器向大电网输送能量;当光伏电池工作在最大功率点、蓄电池工作在最大放电模式仍不能满足负荷需求时,应由交流大电网向直流微电网补充能量。(Micro power supply for the photovoltaic power generation unit, a storage device is a storage battery, when the photovolt
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5KW的光伏PSCAD模型,可运行,适用于光伏电站并网仿真分析(5KW's photovoltaic PSCAD model, which can be run, is suitable for the simulation and analysis of grid connected photovoltaic power station)
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光伏阵列是多片光伏模组的连接,也是更多光伏电池的连接,光伏阵列是最大规模的光伏发电系统。(Photovoltaic array is the connection of multiple photovoltaic modules, and is also the connection of more photovoltaic cells. Photovoltaic array is the largest photovoltaic power generation system.)
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光伏发电DC-DC 仿真,利用H 桥型双向 DC/DC 变换器的原理
其电压极性不变,但电流的极性却不同,因此能够实现能量的双向流动,功率可以向两个方向流动,而能量流动的方向可由负载大小以及光伏电池的发电特性而决定。对于储能装置的电路拓扑结构,本文采用 H 桥型 Buck/Boost 直流变换器来完成对蓄电池充电放电的控制。(DC-DC simulation of photovoltaic power generation)
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光伏发电模型用来模拟一天内24小时段的光伏出力变化曲线(Photovoltaic power generation model used to simulate the photovoltaic output change curve during the 24-hour period of the day)
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光伏及逆变器matlab模型,对光伏发电进行动态仿真(Photovoltaic and inverter matlab model for dynamic simulation of photovoltaic power generation.)
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搭建的独立型光伏发电系统,包括光伏电池模型,MPPT算法和蓄电池的充放电控制,三相离网逆变器的Vf控制。(The independent photovoltaic power generation system consists of photovoltaic cell model, MPPT algorithm and battery charging and discharging control, Vf control of three-phase off-grid inverter.)
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基于PSCAD仿真软件的光伏发电系统模型实例,fortran语言(The example of photovoltaic power generation system model)
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本文分析微网中微电源包括光伏发电、风力发电、微燃机、柴油发电机和燃料电池的电气特性,构建微电网优化运行的模型,以微网的经济成本和环境成本最小为目标函数,充分考虑了电压越限、功率平衡、微电源出力限制等约束条件,应用鸡群算法进行求解。 解决了粒子群算法易早熟、易陷入局部最优解的问题。并通过典型的微网系统进行仿真分析,仿真结果验证了该算法的有效性。(In this paper, the electrical characteristics of micro-power sources in micro
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分布式光伏发电系统的仿真基于matlab为基础(Off-gridSimulation of distributed photovoltaic power generation system based on MATLAB)
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