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设计并制作如图1所示的光伏发电并网系统。图中,采用交流调压器和单相不控整流电路来模拟光伏电池组件;并网逆变器的输出经交流调压器、变压器并入电网。-Design and production as shown in Figure 1 and the photovoltaic power generation system. Map, using the exchange and single-phase voltage regulator does not control rectifier ci
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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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本文研究了风力发电系统和光伏发电系统的工作特性和最大功率点跟踪原理,简单
介绍了几种常用“MPPT”控制方法。-This paper studies the working characteristic and the maximum power point tracing
principle of wind power generation system and photovoltaic generation system.Simple
introduced some common
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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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光伏分布式电源的模型,在matlab中编码实现-PV distributed power model, Coding in matlab
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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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光伏发电模拟实验,PSIM仿真程序MPPT追踪(Photovoltaic power generation, PSIM, simulation)
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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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The clean energy future that would lie ahead for the world is solar energy. The use of solar energy, principally PV, for different applications, and mainly grid connected, is well suited to most of the rural areas due to the lack of electrification.
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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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