Title :
Voltage rise impacts and generation modeling of residential roof-top photo-voltaic systems
Author :
Wong, Peter K. C. ; Barr, R.A. ; Kalam, Akhtar
Author_Institution :
Jemena, Melbourne, VIC, Australia
Abstract :
Environmental drivers have seen an exponential uptake of residential photo-voltaic (PV) systems in many parts of the world. PV intermittency and unpredictability have presented new challenges to the electricity generation, transmission and distribution sectors. From a power quality perspective, these PV systems cause additional flicker, unbalance and steady-state voltage fluctuations within distribution networks. The installation of residential smart meters with voltage monitoring facility in the state of Victoria, Australia, has detected increased steady state voltage violations at PV sites. To rectify these voltage violations and to allow for future increases in the number of PV installation connections, a model of PV kW output in response to solar irradiance and temperature has been developed. This innovative PV model has been developed from meteorological, irradiance and Smart Meter data without the need for detailed experimentation and testing of individual PV units.
Keywords :
building integrated photovoltaics; power supply quality; smart meters; PV installation connections; PV intermittency; PV unpredictability; distribution networks; environmental drivers; flicker; innovative PV model; power quality; residential rooftop photovoltaic systems; residential smart meters; solar irradiance; steady-state voltage fluctuations; unbalance; voltage monitoring facility; voltage violations; Australia; Correlation coefficient; Electricity; Energy consumption; Meteorology; Smart meters; Voltage control; photo-voltaic systems; power quality; smart meters; solar conversion efficiency; steady state voltage;
Conference_Titel :
Harmonics and Quality of Power (ICHQP), 2014 IEEE 16th International Conference on
Conference_Location :
Bucharest
DOI :
10.1109/ICHQP.2014.6842859