Towards energy-efficient and cost-effective DC nanaogrid: A novel pseudo hierarchical architecture incorporating V2G technology for both autonomous coordination and regulated power dispatching

Author:

Yu Hang,Shang Yitong,Niu Songyan,Cheng Chong,Shao Ziyun,Jian Linni

Publisher

Elsevier BV

Subject

Management, Monitoring, Policy and Law,Mechanical Engineering,General Energy,Building and Construction

Reference46 articles.

1. The role of renewable energy in the global energy transformation;Gielen;The role of renewable energy in the global energy transformation.,2019

2. Velni JMJIToIA;Salazar;Energy management of islanded nanogrids through nonlinear optimization using stochastic dynamic programming.,2020

3. An enhanced SOCP-based method for feeder load balancing using the multi-terminal soft open point in active distribution networks;Ji;An enhanced SOCP-based method for feeder load balancing using the multi-terminal soft open point in active distribution networks.,2017

4. A review of microgrid development in the United States – A decade of progress on policies, demonstrations, controls, and software tools;Feng;A review of microgrid development in the United States–A decade of progress on policies,2018

5. Energy management for an electro-thermal renewable–based residential microgrid with energy balance forecasting and demand side management;Pascual;Appl Energy,2021

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