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- W2008163339 abstract "Proper sizing of photovoltaic (PV) array and motor/pump subsystem are essential for maximum utilisation of PV water pumping systems. A proper matching of electromechanical loads to a PV array is a great problem in many PV systems. This is mainly related to the non-linear, solar irradiance and cell temperature-dependent voltage and current characteristics of the PV array generator. In a proper matching system, the electrical energy supplied to the load is close to the maximum available array energy. The load matching factor is one of the basic comparison method used in the optimisation of PV water pumping systems. Optimisation of PV pumping system can be made from a simple non-linear mathematical model and from experimental data. From this optimisation technique, array configuration can be determined using the required rated power of the motor/pump subsystem and the I-V characteristic of a single cell. Conversely, the optimal size of motor/pump subsystem can be determined from a known array configuration. In this study, October field experiment data was taken to calculate the load matching factor of the PV system using K36 type Kyocera Solar modules (8 in series by 4 in parallel) and Grundfos made M402/SP5A-7 motor/pump with SA1500 dc/ac inverter interfacing device. The field test result shows that an optimum load matching factor of 0.72 can be achieved in October for this type of PV system in this works field study area. It is possible to achieve a higher load matching factor by carefully selecting the proper size of the array and the motor/pump subsystem. The load matching factor is used to prove the design quality of the PV system. The result shows that the load matching factor mainly depends on the solar radiation seasonal variations, and the array and the load characteristics." @default.
- W2008163339 created "2016-06-24" @default.
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- W2008163339 date "1995-12-01" @default.
- W2008163339 modified "2023-09-27" @default.
- W2008163339 title "PHOTOVOLTAIC WATER PUMPS COUPLED WITH DC/AC INVERTER" @default.
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- W2008163339 doi "https://doi.org/10.1080/01425919508914304" @default.
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