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Optimization of Power Generation Rights Under the Requirements of Energy Conservation and Emission Reduction
[摘要] In recent years, the energy crisis and greenhouse effect problem have caused wide public concern, if these issues cannot be resolved quickly, they will bring troubles to people's lives.In response, many countries around the world have implemented policies to reduce energy consumption and greenhouse gas emissions. In our country, the electric power industry has made great contribution to the daily life of people and the development of industry, but it is also an industry of high consumption and high emission.In order to realize the sustainable development of society, it is necessary to make energy conservation and emission reduction in the power industry as an important part of the realization of this goal.In this context, power generation trade has become a hot topic in energy conservation and emission reduction.Through the electricity consumption of the units with different power efficiency and coal consumption rate,it can achieve the target of reducing coal consumption, reducing network loss, reducing greenhouse gas emission, and increasing social benefit,and so on. This article put forward a optimal energy model on the basis of guaranteeing safety and environmental protection.In this paper, they used the IEEE30, IEEE39, IEEE57 and IEEE118 node system as an example, and set up the control groups to prove the practicality of the presented model.The solving method of this model was interior-point method.
[发布日期]  [发布机构] School of Information Engineering, Nanchang University, Nanchang; 330031, China^1;Ganzhou Power Supply Company, State Grid Jiangxi Electric Power Company, Ganzhou; 341000, China^2;Nanchang Power Supply Company, State Grid Jiangxi Electric Power Company, Nanchang; 330000, China^3
[效力级别] 无线电电子学 [学科分类] 
[关键词] Coal consumption;Coal consumption rate;Electric power industries;Electricity-consumption;Energy conservation and emission reductions;Interior-point method;Power efficiency;Reduce energy consumption [时效性] 
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