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Synergistic Evolutionary Model for Dynamic Evaluation of Energy Saving and Emission Reduction in Thermal Power Enterprise

机译:火电企业节能减排动态评价的协同进化模型

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Through analyzing the complexity of energy saving and emission reduction system in thermal power enterprise, we can find that this system affected by various elements within the system, policies and technologies in the external environment. Therefore, in order to evaluate the performance of energy saving and emission reduction in thermal power plants, both the complex nonlinear relationships among internal elements and the environmental impact should be considered. The state variables of system were determined based on collaborative learning theory, meanwhile a synergistic evolutionary model for dynamic evaluation of energy saving and emission reduction in thermal power enterprise was proposed. Based on the actual data of a thermal plant, the empirical results showed that the grid electricity and soot emissions of per kwh are the order parameters in this system, which plays a key role on the evolution of the energy saving and emission reduction system. Furthermore, the order parameters are the foundation of the performance evaluation.
机译:通过对火电企业节能减排系统的复杂性进行分析,可以发现该系统受到外部环境中系统,政策和技术等各个要素的影响。因此,为了评估火力发电厂的节能减排性能,应同时考虑内部要素之间的复杂非线性关系和环境影响。基于协同学习理论,确定了系统的状态变量,同时提出了火电企业节能减排动态评价的协同进化模型。根据火电厂的实际数据,经验结果表明,每千瓦时的电网电力和烟尘排放是该系统的有序参数,对节能减排系统的发展起着关键作用。此外,订单参数是性能评估的基础。

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