PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Powiadomienia systemowe
  • Sesja wygasła!
Tytuł artykułu

Statistical Analysis of Electrical and Non-Electrical Parameters of Photovoltaic Modules in Controlled Tracking Systems

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents statistical analysis of measurement results of electrical parameters for photovoltaic modules installed in stationary and dual-axis configurations. The parameters which were taken into account included: coefficient of variation, skewness and standard deviation. Also a correlation was determined between independent variables such as insolation, sunshine duration, cloudiness, ambient temperature and atmospheric pressure, and the dependent variable in the form of the daily electricity from photovoltaic conversion. In order to determine the repeatability of electricity waveforms occurring between summer months as well as between summer and winter months, the non-parametric U Mann-Whitney test was used. In order to analyse the repeatability of daily peak hours in which the highest value of the hourly electricity production is observed, the non-parametric Kruskal-Wallis test was used. The tested systems were connected to the power grid and operated independently. Test stands consisting of polycrystalline photovoltaic modules, single-phase on-grid inverters, irradiance sensors and a temperature recorder, were located on the building rooftop of the Faculty of Control Robotics and Electrical Engineering of the Poznan University of Technology in Poland (Central Poland, 52°24.4152′N, 16°55.7958′E) at the height of 30 metres above the ground level. A significant increase in the production of electricity using the PV module spatial positioning system was demonstrated in relation to modules based on the year-round modified design.
Rocznik
Tom
Strony
694--714
Opis fizyczny
Bibliogr. 52 poz., rys., tab.
Twórcy
  • Poznan University of Technology, Poland
  • Poznan University of Technology, Poland
  • Poznan University of Technology, Poland
  • Koszalin University of Technology, Poland
Bibliografia
  • Awasthi, A., Shukla, A.K., Manohar, M., Dondariya, C., Shukla, K.N., Porwal, D. (2020). Review on sun tracking technology in solar PV system, Energy Reports, 6, 392-405.
  • Bednarek, K., Jajczyk, J. (2009). Effectiveness of optimization methods in heavycurrent equipment designing. Przegląd Elektrotechniczny, 85(12), 29-32.
  • Bugała, A., Bednarek, K. (2020). Analiza wydajności energetycznej dwuwirnikowej turbiny wiatrowej o pionowej osi obrotu. Przeglad Elektrotechniczny, 01(96), 206-209. DOI: 10.15199/48.2020.01.4.
  • Bugała, A., Roszyk, O. (2020). Investigation of an Innovative Rotor Modification for a Small-Scale Horizontal Axis Wind Turbine, Energies, 2020, 13(10), 2649-1-2649-18.
  • Chamier-Gliszczynski, N., Krzyzynski, T. (2005). On modelling three-stage system of receipt and automotive recycling. REWAS’04, Global Symposium on Recycling, Waste Treatment and Clean Technology 2005, 2813-2814, Madrid, Spain, 26-29 September 2004, Conference Paper, ISBN: 8495520060.
  • Chamier-Gliszczyński, N. (2010). Optimal Design for the Environment of the Means Transportation: a Case Study of Reuse and Recycling Materials. Sold State Phenomena, 165, 244-249. DOI: 10.4028/www.scientific.net/SSP.165.244
  • Chamier-Gliszczyński, N. (2011). Environmental aspects of maintenance of transport means, end-of life stage of transport means. Eksploatacja i Niezawodnosc - Maintenance and Reliability, 50(2), 59-71. http://ein.org.pl/podstrony/wydania/50/pdf/07.pdf
  • Chamier-Gliszczyński, N. (2011a). Reuse, Recovery and Recycling System of End-of Life Vehicles. Key Engineering Materials, 450, 425-428. DOI: 10.4028/www.scientific.net/KEM.450.425
  • Chamier-Gliszczyński, N. (2011b). Recycling Aspect of End-of Life Vehicles. Recovery of Components and Materials from ELVs. Key Engineering Materials, 450, 421-424. DOI: 10.4028/www.scientific.net/KEM.450.421
  • Chamier-Gliszczynski, (2011c). Sustainable operation of a transport system in cities. Key Engineering Materials, 486, 175-178. DOI: 10.4028/www.scientific.net/KEM.486.175
  • Chamier-Gliszczynski, N. (2017). Travelling cost an assessment criterion of the model of city logistics. Carpathian Logistics Congress (CLC’2016), TANGER Ltd, 287-292.
  • Ciccarelli, F., Di Noia, L., Rizzo, R. (2018). Integration of Photovoltaic Plants and Supercapacitors in Tramway Power Systems, Energies, 11, 410. DOI: 10.3390/en11020410.
  • Dobrzycki, A., Kurz, D., Mikulski, S., Wodnicki, G. (2020). Analysis of the impact of building integrated photovoltaics (BIPV) on reducing the demand for electricity and heat in buildings located in Poland, Energies, 13(10), 2549-1-2549-19. DOI: https://doi.org/10.3390/en13102549.
  • Duda, J., Karkula, M. (2019). A hybrid heuristics for order-picking and route planning in warehouses. 8th Carpathian Logistics Congress (CLC’2018), TANGER Ltd, 185-190.
  • European Commision (2020). Roof top wind turbine for urban areas. Horizon2020.
  • Fahmi, M., Rajkumar, R., Arelhi, R. (2015). Study on the Effect of Super capacitors in Solar PV System for Rural Application in Malaysia, 50th International Universities Power Engineering Conference. DOI: 10.1109/UPEC.2015.7339921.
  • Gabryelewicz, I., Krupa, P., Sąsiadek, M., (2018),Safety Culture: Influence of a Human Factor on the Process of Shaping Work Safety, Proceedings of the 31 International Business Information Management Association Conference – IBIMA, Milan, Italy, 2018, 4720-4727, ISBN: 9780999855102 https://ibima.org/accepted-paper/safetyculture-influence-of-a-human-factor-on-the-process-of-shaping-work-safety/
  • Hanczar, P., Kaleta, J., Karkula, M. (2017). Combined use of simulation and optimization models as a decision support tool for robust inventory routing problems. Carpathian Logistics Congress (CLC’2016), TANGER Ltd., 105-111.
  • Izdebski, M. (2014). The use of heuristic algorithms to optimize the transport issues on the example of municipal services companies. Archives of Transport, 29(1), 27-36. DOI: 10.5604/08669546.1146961
  • Izdebski, M., Jacyna, M. (2018). The organization of municipal waste collection: The decision mode. Rocznik Ochrona Środowiska, 20, 919-933.
  • Izdebski, M., Jacyna-Gołda, I., Gołebiowski, P., Plandor, J. (2020). The optimization tool supporting supply chain management in the multi-criteria approach. Archives of Civil Engineering, 66(3), 505-524. DOI: 10.24425/ace.2020.134410
  • Jacyna, M., Wasiak, M., Lewczuk, K., Chamier-Gliszczyński, N., Dąbrowski, T. (2018). Decision Problems in Developing Proecological Transport System. Rocznik Ochrona Srodowiska, 20(2), 1007-1025.
  • Jacyna, M., Klodawski, M., Szczepanski, E. (2016). Designing and management of storage facilities: The SIMMAG3D as an advanced decision support system. Transport Means Proceedings of the International Conference, 2016, 846-851.
  • Jajczyk, J. (2016). Use of Personal Computers with Multi-core Processors for Optimisation Using the Genetic Algorithm Method. Proceedings of 2016 17th international conference computational problems of electrical engineering (CPEE).IEEEXplore Electronic. DOI: https://doi.org/10.1109/CPEE.2016.7738731.
  • Jajczyk, J., Filipiak, M., Dąbrowski T. (2020) Reducing the Use of Electrochemical Sources of Electricity Through the Use of Wireless Power Supply, Rocznik Ochrona Srodowiska, 22(1), 444-455.
  • Jajczyk, J., Kasprzyk, L. (2008). The Use of Coupled Temperature and Electromagnetic Fields in Optimization Problems. Proceedings of the 6th IASME/WSEAS International Conference on Heat Transfer, Thermal Engineering and Environment. WSEAS Mechanical Engineering Series, 226-231.
  • Jajczyk, J., Słomczyński, K. (2019). A dedicated battery for an electric bike. Computer applications in electrical engineering 28. 01033. ITM Web of Conferences. DOI: 10.1051/itmconf/20192801033
  • Karkula, M., Stryhunivska, O. (2017). The use of virtual factory concepts and modelsfor facilitating Logistics systems and operations. Carpathian Logistics Congress (CLC’2016), TANGER Ltd., 456-462.
  • Kasprzyk, L., Tomczewski, A., Bednarek, K. (2010). Efficiency and economic aspects in electromagnetic and optimization calculations of electrical systems. Przeglad Elektrotechniczny, 12, 57-60 (in Polish).
  • Kasprzyk, L., Tomczewski, A., Bednarek, K., Bugała, A. (2017). Minimisation of the LCOE for the hybrid power supply system with the lead-acid battery. E3S Web of Conferences 19, 01030, 1-6. DOI: 10.1051/e3sconf/20171901030.
  • Kostrzewski, M. (2017). Simulation methods in the comparative analysis of car spareparts distribution systems. Carpathian Logistics Congress CLC’2016, TANGER Ltd, 204-209.
  • Kostrzewski, M. (2017a). Implementation of distribution model of an international company with use of simulation method. 12th International Scientific Conference of young Scientists on Sustainable, Modern and Safe Transport, Procedia Engineering, 192, 445-450. DOI: 10.1016/j.proeng.2017.06.077
  • Kuczynski, W., Kaminski, K., Znaczko, P., Chamier-Gliszczynski, N., Piatkowski, P. (2021). On the Correlation between the Geometrical Features and Thermal Efficiency of Flat-Plate Solar Collectors. Energies, 14, 261. DOI: https://doi.org/10.3390/en14020261
  • Kurz, D., Nawrowski, R. (2019). Thermal time constant of PV roof tiles working under different conditions. Applied Sciences, 9(8). DOI: https://doi.org/10.3390/app9081626.
  • Malhotra S. (2007). Design and Construction Considerations for Offshore Wind Turbine Foundations in North America. Proceedings of the 26TH International Conference on Offshore Mechanics and Arctic Engineering, June 10-15, 2007, San Diego, California.
  • Markosea K., Jasna M., Subha P., Antony A. (2020). Performance enhancement of organic/Si solar cell using CNT embedded hole selective layer, Solar Energy, 211, 158-166.
  • Merkisz-Guranowska, A. (2010). Issues related to the optimization of location of vehicle recycling network entities. Archives of Transport, 22(3), 303-318. DOI: 10.2478/v10174-010-0018-x
  • Merkisz-Guranowska, A (2012). Bicriteria models of vehicles recycling network facility location. Archives of Transport, 24(2), 187-202. DOI: 10.2478/v10174-012-0012-6
  • Merkisz-Guranowska, A. (2018). Waste recovery of and-of-life vehicles. IOP Conference Series: Materials Science and Engineering, 421(3), 032019. DOI: 10.1088/1757-899X/421/3/032019
  • Nelatury, S. (2013). A maximum power point tracking algorithm for photovoltaic Applications, Energy Harvesting and Storage: Materials, Devices, and Applications IV, edited by Nibir K. Dhar, Palani Balaya, Achyut K. Dutta. Proc. of SPIE, 8728.
  • Nowak, L., Knypiński, Ł., Jędryczka, C., Kowalski, K. (2015). Decomposition of the compromise objective function in the permanent magnet synchronous motor optimization. COMPEL – The International Journal For Computation and Mathematics in Electrical and Electronic Engineering, 34(2), 496-504.
  • Ramos-Hernanz, J., Uriarte, I., Lopez-Guede, J.M. et al. (2020). Temperature based maximum power point tracking for photovoltaic modules. Science Report 10, 12476. DOI: https://doi.org/10.1038.
  • Roth, P., Georgiev, A., Boudinov, H. (2004). Design and construction of a system for- Sun-tracking. Renewable Energy 29, 393-402. DOI: http://dx.doi.org/10.1016/S0960-1481(03)00196-4.
  • Rubio, F.R., Oretga, M.G., Gordillo, F., Lopez-Martinez, M. (2007). Application of new contro strategy for Sun tracking system. Energy Convers. Manage. 48, 2174-2284. DOI: http://dx.doi.org/10.1016/j.enconman.2006.12.020.
  • Tomczewski, A., Kasprzyk, L. (2018).Optimisation of the structure of a wind farm – kinetic energy storage for improving the reliability of electricity supplies. Applied Science, 8(1439), 1-18.
  • Tomczewski, A., Kasprzyk, L., Nadolny, Z. (2019). Reduction of Power Production Costs in a Wind Power Plant-Flywheel Energy Storage System Arrangement. Energies 2019, 12(10), 1942. DOI: https://doi.org/10.3390/en12101942.
  • Trzmiel, G., Głuchy, D., Kurz, D. (2020). The impact of shading on the exploitation of photovoltaic installations, Renewable Energy, 153, 480-498. DOI: https://doi.org/10.1016/j.renene.2020.02.010.
  • Wei D. (2010). Dye Sensitized Solar Cells, International Journal of Molecular Sciences 11, 1103-1113. DOI:10.3390/ijms11031103.
  • Wędrychowicz, M., Bydałek, A., Skrzekut, T., Noga, P., Gabryelewicz, I., Madej, A., (2019). Analysis of the mechanical strength, structure and possibilities of using waste phosphogypsum in aluminum powder composites, SN Applied Sciences, 1(9), 1-8. DOI: 10.1007/s42452-019-0995-1
  • Woźniak, W., Nawrocki, W., Stryjski, R., Jakubowski, J. (2017). Identification and Reduction of Product Defects in Mass Production at Toyota Motor Manufacturing, Poland. Proceedings of the 30th International Business Information Management Association Conference – IBIMA, Madrid, Spain 2017, 4774-4782. ISBN: 9780986041990 https://ibima.org/accepted-paper/identification-and-reduction-of-product-defectsin- mass-production-at-toyota-motor-manufacturing-poland/
  • Woźniak, W., Sąsiadek, M., Stryjski, R., Mielniczuk, J., Wojnarowski, T. (2016). An algorithmic concept for optimising the number of handling operations in an intermodal terminal node. Proceedings of the 28th International Business-Information-Management-Association Conference, IBIMA Seville, Spain, 2016, 1-7, 1490-1500. ISBN: 9780986041983
  • Znaczko, P., Szczepanski, E., Kaminski, K., Chamier-Gliszczynski, N., Kukulski, J. (2021). Experimental Diagnosis of the Heat Pipe Solar Collector Malfunction. A Case Study. Energies, 14, 3050. DOI: https://doi.org/10.3390/en14113050
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-6d71fcb3-c1ca-410d-9327-ef6015266d5e
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.