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Industrial Networks and Intelligent Systems. 6th EAI International Conference, INISCOM 2020, Hanoi, Vietnam, August 27–28, 2020, Proceedings

Research Article

Design and Evaluation of the Grid-Connected Solar Power System at the Stage of DC BUS with Optimization of Modulation Frequency for Performance Improvement

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  • @INPROCEEDINGS{10.1007/978-3-030-63083-6_21,
        author={Nguyen Duc Minh and Quach Duc-Cuong and Nguyen Quang Ninh and Y Nhu Do and Trinh Trong Chuong},
        title={Design and Evaluation of the Grid-Connected Solar Power System at the Stage of DC BUS with Optimization of Modulation Frequency for Performance Improvement},
        proceedings={Industrial Networks and Intelligent Systems. 6th EAI International Conference, INISCOM 2020, Hanoi, Vietnam, August 27--28, 2020, Proceedings},
        proceedings_a={INISCOM},
        year={2020},
        month={11},
        keywords={Maximum power point tracking Space Vector Pulse Width Modulation Incremental conductance Grid-connected solar power system},
        doi={10.1007/978-3-030-63083-6_21}
    }
    
  • Nguyen Duc Minh
    Quach Duc-Cuong
    Nguyen Quang Ninh
    Y Nhu Do
    Trinh Trong Chuong
    Year: 2020
    Design and Evaluation of the Grid-Connected Solar Power System at the Stage of DC BUS with Optimization of Modulation Frequency for Performance Improvement
    INISCOM
    Springer
    DOI: 10.1007/978-3-030-63083-6_21
Nguyen Duc Minh1,*, Quach Duc-Cuong, Nguyen Quang Ninh1, Y Nhu Do, Trinh Trong Chuong
  • 1: Institute of Energy Science
*Contact email: minhnguyenduc.ies@gmail.com

Abstract

In grid-connected solar panel systems, the power converters play a very im-portant role in control systems, because the characteristics of solar panel system are that the generation power is constantly changing due to dependence on weath-er conditions. This article presents the research results of the application of power electronic converter in grid-connected solar power system. In particular, we focus on building an algorithm to control and simulate the grid-connected solar power system at the DC-BUS stage by setting an optimal set of SVPWM (Space Vector Pulse Width Modulation) modulation frequencies when the pulse width values are different. The simulation results on Matlab/Simulink show that the system op-erates stably, ensures the requirements of DC-BUS grid integration. The set-up system operates safely, has a simple control structure and algorithm, is easy to calibrate and makes it ready for practical applications.

Keywords
Maximum power point tracking Space Vector Pulse Width Modulation Incremental conductance Grid-connected solar power system
Published
2020-11-21
Appears in
SpringerLink
http://dx.doi.org/10.1007/978-3-030-63083-6_21
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