智能微电网中的热电联产:分布式能源优化运行

H. Gabbar, F. Islam, M. Tomal
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引用次数: 1

摘要

一个设计和维护良好的热电联产(CHP)电厂可以通过减少能源费用和二氧化碳排放来实现显著的经济和环境效益。最近,各国政府和国际政府以及电网公司越来越多地考虑投资热电联产,以最大限度地发挥热电联产的效益。在高峰和非高峰时段,热电联产电厂的热负荷和电力负荷需求的变化以及公用电网的电价变化,给热电联产运行的控制和性能优化带来了更多的复杂性。本文讨论了基于热电联产的微电网的潜在关键性能指标以及分布式能源特定电网的最佳利用。引入优化算法,使热电联产实现的整体性能最大化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CHP within smart micro energy grid: optimum operation with distributed energy resources
A well-designed and maintained combined heat and power (CHP) plant can deliver significant economic and environmental benefits by reducing energy bills and CO2 emission. Recently, CHP is receiving increasing considerations for investment by national and international governments, as well as power grid companies to maximise the benefits from CHP. The variable demand of heat and power loads from the CHP plant and utility grid changing tariffs during the peak and off peak hours introduce more complexities to the control and the performance optimisation of CHP operation. In this paper, potential key performance indicators of CHP-based micro energy grid and the optimum utilisation of a specific grid with distributed energy sources are discussed. Optimisation algorithm is introduced to maximise the overall performance of CHP implementations.
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