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Simulation and Analysis of Photovoltaic System Using Virtual Instrumentation

机译:利用虚拟仪器对光伏系统进行仿真与分析

摘要

Renewable energy sources demand has been increasing rapidly due to their abundance in nature, environment friendly and also serves as decentralized power sources in rural areas.Solar energy is one such renewable energy source which produces electricity by means of photovoltaic effect. The disadvantage of solar energy is its output power depends on factors like temperature, intensity of sun light, sun angle of incidence. To extract maximum power from the solar array it has to be operated at maximum power point (MPP).Virtual Instrumentation (VI) is widely used in testing, measurement and control application as it is easy to understand and implement. In this thesis, maximum power point tracking (MPPT) of solar array is demonstrated using a virtual instrument (VI) created in LabVIEW. Voltage and current signals sensed from photo voltaic (PV) array are fed as input to the VI and control signal is obtained as output. The duty cycle of a buck converter which is placed between solar array and the load is controlled using the control signal. Incremental conductance (INC) algorithm is used for creating a LabVIEW VI that tracks maximum power. Faster tracking of power in the range of millisecond is observed.
机译:由于自然资源丰富,环境友好,可再生能源的需求一直在迅速增长,并且作为农村地区的分散能源。太阳能是通过光伏效应发电的一种可再生能源。太阳能的缺点是其输出功率取决于温度,太阳光强度,太阳入射角等因素。要从太阳能电池阵列中获取最大功率,必须以最大功率点(MPP)进行操作。虚拟仪器(VI)易于理解和实施,因此广泛用于测试,测量和控制应用中。本文利用LabVIEW中创建的虚拟仪器(VI)对太阳能电池阵列的最大功率点跟踪(MPPT)进行了演示。从光伏(PV)阵列检测到的电压和电流信号作为输入提供给VI,并获得控制信号作为输出。使用控制信号控制放置在太阳能电池板和负载之间的降压转换器的占空比。增量电导(INC)算法用于创建可跟踪最大功率的LabVIEW VI。观察到在毫秒范围内更快地跟踪功率。

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    Tejaswini K K;

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  • 年度 2015
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