Intelligent Network Integration of Distributed Renewable by Nadarajah Mithulananthan, Duong Quoc Hung, Kwang Y. Lee

By Nadarajah Mithulananthan, Duong Quoc Hung, Kwang Y. Lee

This publication introduces numerous uncomplicated analytical ways to assist the seamless integration of renewable dispensed new release. It specializes in the belief of clever integration, which comprises finding and constructing compatible operational features of renewable allotted iteration. After reviewing the choices to be had, the easiest position could be selected, an properly sized operation can be put in and the main appropriate operational features might be followed. proposing those basic analytical techniques, their step by step implementation and a couple of instances experiences utilizing try distribution platforms, the booklet essentially demonstrates the technical, financial and environmental merits of clever integration.

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By Nadarajah Mithulananthan, Duong Quoc Hung, Kwang Y. Lee

This publication introduces numerous uncomplicated analytical ways to assist the seamless integration of renewable dispensed new release. It specializes in the belief of clever integration, which comprises finding and constructing compatible operational features of renewable allotted iteration. After reviewing the choices to be had, the easiest position could be selected, an properly sized operation can be put in and the main appropriate operational features might be followed. proposing those basic analytical techniques, their step by step implementation and a couple of instances experiences utilizing try distribution platforms, the booklet essentially demonstrates the technical, financial and environmental merits of clever integration.

Show description

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Castillo-Cagigal M, Gutiérrez A, Monasterio-Huelin F, Caamaño-Martín E, Masa D, Jiménez-Leube J (2011) A semi-distributed electric demand-side management system with PV generation for self-consumption enhancement. Energy Convers Manage 52(7):2659– 2666. 017 93. Wei-Fu S, Shyh-Jier H, Chin EL (2001) Economic analysis for demand-side hybrid photovoltaic and battery energy storage system. IEEE Trans Ind Appl 37(1):171–177. 903143 94. Nottrott A, Kleissl J, Washom B (2013) Energy dispatch schedule optimization and cost benefit analysis for grid-connected, photovoltaic-battery storage systems.

Yu R, Kleissl J, Martinez S (2013) Storage size determination for grid-connected photovoltaic systems. IEEE Trans Sustain Energy 4(1):68–81. 2012. 2199339 96. Tant J, Geth F, Six D, Tant P, Driesen J (2013) Multiobjective battery storage to improve PV integration in residential distribution grids. IEEE Trans Sustain Energy 4(1):182–191. 2211387 97. Alam MJE, Muttaqi KM, Sutanto D (2013) Mitigation of rooftop solar PV impacts and evening peak support by managing available capacity of distributed energy storage systems.

Teng JH, Luan SW, Lee DJ, Huang YQ (2013) Optimal charging/discharging scheduling of battery storage systems for distribution systems interconnected with sizeable PV generation systems. IEEE Trans Power Syst 28(2):1425–1433. 2230276 References 19 92. Castillo-Cagigal M, Gutiérrez A, Monasterio-Huelin F, Caamaño-Martín E, Masa D, Jiménez-Leube J (2011) A semi-distributed electric demand-side management system with PV generation for self-consumption enhancement. Energy Convers Manage 52(7):2659– 2666.

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