Optimal design of photovoltaic solar systems considering shading effect and hourly radiation using a modified PSO algorithm

Author:

Shams Mohammad Hossein1,Kia Mohsen2ORCID,Heidari Alireza3,Zhang Daming3

Affiliation:

1. Department of Electrical and Computer Engineering, Babol Noshivani University of Technology, Babol, Iran

2. Department of Electrical Engineering, Islamic Azad University, Pardis, Iran

3. School of Electrical Engineering and Telecommunications, University of New South Wales, Sydney, Australia

Abstract

Regarding the significant potential of solar energy in Iran, implementation of optimally designed photovoltaic (PV) systems can be effective. Hence, this study proposes two objective functions: first, the maximum possible output energy for a given area and, second, the minimum area receiving a given yearly energy from PV fixed collectors in a solar field, both of which are calculated. In addition, the shading and masking effects are considered in the calculations. A modified particle swarm optimization (MPSO) algorithm is used to solve the optimization problem. The case study of this article is a shopping center in Isfahan-Iran (latitude 32.5°N) with the minimum yearly energy demand of 171 MWh and the 5000 m2 roof area. To evaluate the yearly energy, the calculated hourly radiation approach is applied to the case study. The results show that the maximum possible generated energy is 881 MWh/year for the given area. In addition, to provide the minimum demand, 720 m2 area of roof is needed. To verify the effectiveness of the proposed MPSO, the results are compared with those of obtained by the relevant commercial software.

Publisher

SAGE Publications

Subject

Computer Graphics and Computer-Aided Design,Modelling and Simulation,Software

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