Optimal Dispatch of Multi-Microgrids  System Based On Affine Arithmetic
            
                编号:113
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                更新:2021-12-09 10:46:34
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                摘要
                With the development of the integrated energy system, a distribution area is usually composed of multiple microgrid systems, forming the multi-microgrid system of electricity, gas and heat combined supply. In order to maximize the interests of energy service companies, this paper establishes an interval optimization scheduling model of multi-microgrid integrated energy systems considering multi-energy complementarity and energy interaction between multi-micro grid. In addition, in order to solve the disadvantages of traditional interval optimization methods that are too conservative, affine arithmetic is used to represent the uncertainty of prediction variables, and the correlation between prediction variables of different microgrids is traced by the noise terms in affine arithmetic. Finally, the effectiveness and applicability of this method are analyzed by comparing with monte Carlo simulation method and traditional interval optimization method.   
             
            
                关键词
                Affine Arithmetic,Interval Optimization,Multi-Microgrids,Uncertainty,Integrated Energy System
             
            
            
                    稿件作者
                    
                        
                                    
                                        
                                                                            
                                    Xiangjie Wang
                                    Fuzhou University;College of Electrical Engineering and Automation
                                
                                    
                                                                                                                        
                                    Wendi Zheng
                                    Fuzhou University;College of Electrical Engineering and Automation
                                
                                             
                          
    
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