Multi-objective stochastic techno-economic-environmental optimization of distribution networks with G2V and V2G systems
Author:
Funder
Engineering and Physical Sciences Research Council
Publisher
Elsevier BV
Subject
Electrical and Electronic Engineering,Energy Engineering and Power Technology
Reference44 articles.
1. R. United Nations, Code red’ for human driven global heating, warns UN chief. URL https://news.un.org/en/story/2021/08/1097362.
2. Designing, optimizing and comparing distributed generation technologies as a substitute system for reducing life cycle costs, CO2 emissions, and power losses in residential buildings;Sadeghi;Energy,2022
3. From hierarchical control to flexible interactive electricity services: A path to decarbonisation;Ilić;Electr. Power Syst. Res.,2022
4. Energy consumption of the countries in the context of economic development and energy transition;Komarova;Energy Rep.,2022
5. Are electric vehicle targets enough? The decarbonization benefits of managed charging and second-life battery uses;Dean;Transp. Res. Rec.,2022
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