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- W4212912805 abstract "AbstractIn remote areas, losses due to transmission of electrical energy from main grid are very high. In such cases, local generators such as solar photovoltaic (SPV) generators, wind generators, and diesel generators are used to meet up local demand. Individual operation of these generators is highly unreliable, and hence, individual generator is linked to the grid. Here, the operation of SPV plant feeding power to the grid using P–Q control technique has been analyzed. For analysis, the system is modelled in MATLAB/Simulink. The capacity of SPV plant is kept 100 kWp, and its output is given to the maximum power point tracker (MPPT). The MPPT tracks the maximal output power of SPV plant using perturb and observe (P&O)-based algorithm and supplies it to the grid. In the control algorithm, the grid side voltage is transformed from abc to αβ by means of parks transformation, and then, on implementing phase-locked loop (PLL) the required Vd and Vq values are obtained. In similar manner, the inverter currents are decoupled along d–q axis. The reference value for the d–q frame is generated from the differences of Preference (reference active power) and iactual (actual active power) using PI controller. The compared output is used to generate the triggering pulses for the inverter, so that the inverter supplies required active power to the grid. The obtained outcomes demonstrate that the SPV plant effectively controls the active power fed to the grid by implementation of proposed P–Q control algorithm.KeywordsSolar photovoltaic (SPV) plantPhase-locked loop (PLL)Active power controlP–Q control algorithmGrid connected" @default.
- W4212912805 created "2022-02-24" @default.
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- W4212912805 date "2022-01-01" @default.
- W4212912805 modified "2023-10-13" @default.
- W4212912805 title "Intelligent Modelling and Analysis of P–Q Control Technique for SPV Plant Supplying Power to Grid" @default.
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- W4212912805 doi "https://doi.org/10.1007/978-981-16-6081-8_7" @default.
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