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Locational Marginal Carbon Emission of Power Grids Approach: Optimal Scheduling of Recycling Electricity/Heat Rural Supply System Based on Waste Feedstock

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成果类型:
期刊论文
作者:
Hongming Yang;Dingzhong Xu;Sheng Xiang;Bangzhe Yin;MingYong Lai;...
作者机构:
[Bangzhe Yin] Shaoyang Power Supply Company, State Grid Hunan Electric Power Company Limited, Shaoyang, China
UNEP DTU Partnership, Technical University of Denmark, Copenhagen, Denmark
Energy Resources, Development and Environment (ERDE) Lab, University of British Columbia, Vancouver, BC NSW, Canada
[Hongming Yang; Dingzhong Xu; Sheng Xiang; MingYong Lai] International Joint Laboratory of Ministry of Education for Operation and Planning of Energy Internet based on Distributed Photovoltaic-Storage Energy, Hunan Provincial Engineering Research Center for Electric Transportation and Smart Distribution Network, School of Electrical and Information Engineering, Changsha University of Science and Technology, Changsha, China
[Archie James Johnston] University of Sydney, Sydney, Australia
语种:
英文
关键词:
100% absorption of distributed renewable energy;Biomass;Boilers;Carbon dioxide;Costs;Fuels;Generators;locational marginal carbon emission;optimal scheduling;Recycling electricity/heat supply system;Resistance heating;waste resource recovery
期刊:
IEEE TRANSACTIONS ON NETWORK SCIENCE AND ENGINEERING
ISSN:
2327-4697
年:
2023
页码:
1-12
机构署名:
本校为第一机构
院系归属:
电气与信息工程学院
摘要:
To improve the power supply ability, heat supply ability, and waste recovery rate, a recycling electricity/heat rural supply system with waste feedstock is established. The energy supply system generates electricity/heat from biomass energy produced by wastes, which is also coupled to distributed renewable energy. The optimal scheduling of the established rural system will improve energy efficiency and cause emission reduction. Firstly, the waste recovery process is presented, and the architecture of the energy supply system is designed for the 100% absorption of renewable...

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