Review of Net Metering Rooftop Solar PV Grid interactive System
DOI:
https://doi.org/10.37591/joaest.v13i1.6242Abstract
As we know that the use of solar energy is increasing day by day in India and other parts of world. Net metering is a billing mechanism that uses solar energy system and adds excess electricity to the grid. Net metering allows residential and commercial customers who generate their own electricity from solar power to sell the electricity they are not using back into the grid. In India many states(Haryana, Delhi ) have already passed net metering laws. In other states, utilities may offer net metering programs. Differences between state legislation, regulatory decisions and implementation policies mean that the mechanism for compensating solar customers varies widely across the country a possible net metering policy is in need of ours. Here we go through the concept of net metering through solar system and analysis of data carried out for the beneficial of consumers for studying the possibilities of net metering in India. Here we also found that simple net metering policy is unable to accommodate various categories of consumers. So making a net metering, which is more scalable, feasible and financially viable is challenge. The net metering process is very much beneficial as it save electricity bills thus save planet too. The net metering is one time investment. It’s a source to use the renewable energy ResourcesReferences
Sustainable net metering model for diversified India Jagruti Thakura, Basab Chakrabortya Rajendra Mishra School of engineering Entrepreneurship, Indian Institute of Technology, Kharagpur and 721302, India.
A review of net metering mechanism for electricity renewable energy sources Andreas Poullikkas*, George Kourtis, Ioannis Hadjipaschalis Electricity Authority of Cyprus, P.O. Box 24506, 1399 Nicosia, Cyprus.
www.sciencedirect.com.
http://timesofindia.indiatimes.com/city/mumbai/TPC-installs-its-first-Net-meter-in Mumbai/articleshow/51013818.cms
A. Sajjad, R. Napoli, and G. Chicco, “Future business model for cellular microgrids,” in Proc. 4th Int. Symp. Business Modeling and Software Design (BMSD), 2014, pp. 209–216.
P. Bronski, J. Creyts, L. Guccione, M. Madrazo, J. Mandel, B. Rader, D. Seif, P. Lilienthal, J. Glassmire, J. Abromowitz, M. Crowdis, J. Richardson, E. Schmitt, and H. Tocco. (2014). The economics of grid defection. Rocky Mountain Institute. Boulder, CO. [Online]. Available: www.rmi.org.
C. Breyer and A. Gerlach, “Global overview on grid-parity,” Prog. Photovoltaics, vol. 21, no. 1, pp. 121–136, 2013.
F. Spertino, P. Di Leo, and V. Cocina, “Which are the constraints to the photovoltaic grid-parity in the main European markets?” Sol. Energy, vol. 105, pp. 390–400, July 2014.
L. Hirth, “Market value of solar power: Is photovoltaics cost-competitive?” IET Renewable Power Generation, vol. 9, no. 1, pp. 37–45, 2015.
I. A. Sajjad, R. Napoli, G. Chicco, and L. Martirano, “A conceptual framework for the business model of smart grids,” in Proc. 16th IEEE Int. Conf. Environment and Electrical Engineering (EEEIC 2016), Florence, Italy, pp. 1–5. doi: 10.1109/EEEIC.2016.7555684.
M. H. Syed, G. M. Burt, J. K. Kok, and R. D’Hulst, “Demand side participation for frequency containment in the web of cells architecture,” in Proc. Int. Symp. Smart Electric Distribution Systems and Technologies
(EDST), 2015, pp. 588–592. [8] J. M. Gantz, S. Massoud Amin, and A. M. Giacomoni, “Optimal capacity
partitioning of multi-use customer-premise energy storage systems,” IEEE Trans. Smart Grid, vol. 5, no.3, pp. 1292–1299, May 2014.
N. G. Paterakis, O. Erdinç, I. N. Pappi, A. G. Bakirtzis, and J. P. S.Catalão, “Coordinated operation of a neighborhood of smart households comprising electric vehicles, energy storage and distributed generation,”
IEEE Trans. Smart Grid, vol. 7, no. 6, pp. 2736–2747, 2016.
European Commission. “Delivering a new deal for energy consumers,”European Commission,Brussels, Belgium. Rep. SWD(2015) 141,final.[11] I. A. Sajjad, G. Chicco, and R. Napoli, “Definitions of demand flexibility for aggregate residential loads,” IEEE Trans. Smart Grid, vol. 7, no. 6,
pp. 2633–2643, Nov. 2016.
M. Liu, F. L. Quilumba, and W.-J. Lee, “A collaborative design of aggregated residential appliances and renewable energy for demand response participation,” IEEE Trans. Ind. Appl., vol. 51, no. 5, pp. 3561–3569, Sept.-Oct. 2015.
G. Tsagarakis, R. C. Thomson, A. J. Collin, G. P. Harrison, A. E. Kiprakis, and S. McLaughlin,“Assessment of the cost and environmental impact of residential demand-side management,” IEEE Trans. Ind. Appl., vol. 52, no. 3, pp. 2486–2495, May-June 2016.
J. Leiva, A. Palacios, and J. A. Aguado, “Smart metering trends, implications
and necessities: A policy review,” Renewable Sustainable Energy Rev., vol. 55, pp. 227–233, Mar. 2016.
E. L. Ratnam, S. R. Weller, and C. M. Kellett, “Scheduling residential battery storage with solar PV: Assessing the benefits of net metering,” Appl. Energy, vol. 155, pp. 881–891, Oct. 2015.
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