Techno-economic analysis and design of industrial scale solar PV system
Joshi, Aayush (2024)
Katso/ Avaa
Sisältö avataan julkiseksi: 30.07.2026
Diplomityö
Joshi, Aayush
2024
School of Energy Systems, Sähkötekniikka
Kaikki oikeudet pidätetään.
Julkaisun pysyvä osoite on
https://urn.fi/URN:NBN:fi-fe2024061753336
https://urn.fi/URN:NBN:fi-fe2024061753336
Tiivistelmä
A solar PV system consists of various components that interact with both DC and AC to produce electricity. The efficiency and performance of these components depend on the optimal design parameters.
This thesis aims to analyze and optimize the AC and DC side of a solar PV system using a numerical approach and predetermined parameters. The location of the proposed site is Imatra, Finland. The study evaluates the technical and economic performance of the solar PV system for the given location. The equipment used in this study forms a basis for further evaluation and analysis. Along with the predefined parameters, an initial PV system design is created using PVcase optimization and serves as the foundation for PVsyst simulations. Data obtained from the initial design and predetermined parameters helps in various technical and economic evaluations, ultimately identifying the optimal design parameters for the final system configuration. This comprehensive approach ensures an efficient design, tailored to the specific conditions and requirements.
Eventually, a performance evaluation, such as final energy production, performance ratio, and losses was identified using PVsyst simulation of the final layout. Additionally, the capital cost, operational and maintenance cost, and LCOE, an indicator for economic evaluation, are also calculated. The findings underscore the importance of balancing technical optimization with economic feasibility in solar PV system design.
This thesis aims to analyze and optimize the AC and DC side of a solar PV system using a numerical approach and predetermined parameters. The location of the proposed site is Imatra, Finland. The study evaluates the technical and economic performance of the solar PV system for the given location. The equipment used in this study forms a basis for further evaluation and analysis. Along with the predefined parameters, an initial PV system design is created using PVcase optimization and serves as the foundation for PVsyst simulations. Data obtained from the initial design and predetermined parameters helps in various technical and economic evaluations, ultimately identifying the optimal design parameters for the final system configuration. This comprehensive approach ensures an efficient design, tailored to the specific conditions and requirements.
Eventually, a performance evaluation, such as final energy production, performance ratio, and losses was identified using PVsyst simulation of the final layout. Additionally, the capital cost, operational and maintenance cost, and LCOE, an indicator for economic evaluation, are also calculated. The findings underscore the importance of balancing technical optimization with economic feasibility in solar PV system design.