المستودع الرقمي في جامعة الإخوة منتوري قسنطينة 1

Stratégies d’Intégration optimale de sources des énergies renouvelables dans le réseau de distribution électrique en considérant des indices techniques et économiques.

عرض سجل المادة البسيط

dc.contributor.author Settoul, Samir
dc.contributor.author Chenni, Rachid
dc.contributor.author Bouzid, Aissa
dc.contributor.author Kerrour, Fouad
dc.date.accessioned 2022-12-15T07:58:49Z
dc.date.available 2022-12-15T07:58:49Z
dc.date.issued 2022-07-14
dc.identifier.uri http://depot.umc.edu.dz/handle/123456789/13462
dc.description.abstract This work is part of the study of optimal integration of Distributed Generation (DG) based on photovoltaic and wind turbine renewable energy sources on the radial IEEE 33-JB, IEEE 69-JB, and IEEE 118-JB distribution networks which are widely used in literature for the planning and operation of the distribution system. In order to better exploit both photovoltaic and wind turbine sources, recent meta-heuristic optimization methods have been proposed to identify their optimal location and size. These methods are the Sinusoidal Modulated Particle Swarm Optimization algorithm (SMPSO), Moth-flame Optimization algorithm (MFO), Whale Optimization algorithm (WOA) , and also the Salp Swarm Optimization algorithm (SSA). However, the Newton-Raphson method has been used for the calculation of power flow. For an optimal and correct integration, two objective functions have been proposed, the first is used to minimize only the active power losses of the distribution networks by the integration of multi sources of the distributed generation. While the second function is formulated as a new multi-objective function which consists of minimizing the active power loss index (APLI), the voltage deviation index (TVVI) and also minimizing the annual cost of active power losses index (CLI). Another study was carried out using a hybrid algorithm called PSO-MFO which is the result of the hybridization of the Particle Swarm Optimization algorithm (PSO) and Moth-flame Optimization algorithm (MFO), by combining the advantages of these two algorithms. This algorithm is used to optimize the same new multi-objective function by integrating photovoltaic and wind sources, taking into account the intermittent nature of these two sources as well as the variation of the load over 24 hours. The results are with a high solution quality compared to other methods reported in the literature. The simulation results also prove that the proposed algorithms are reliable and applicable for the optimal source integration problem of distributed generation for various distribution networks of different sizes and complexity. fr_FR
dc.language.iso fr fr_FR
dc.publisher Université Frères Mentouri - Constantine 1 fr_FR
dc.subject Génération Distribuée (DG) fr_FR
dc.subject Énergie Renouvelable fr_FR
dc.subject Méthodes d’Optimisation Méta-heuristiques fr_FR
dc.subject Réseau de Distribution fr_FR
dc.subject Minimisation des Pertes Actives fr_FR
dc.subject Déviation de La tension fr_FR
dc.subject Réduction des Coûts fr_FR
dc.subject Distributed Generation (DG) fr_FR
dc.subject Renewable Energy fr_FR
dc.subject Metaheuristic Optimization Methods fr_FR
dc.subject Distribution Network fr_FR
dc.subject Active Losses Minimization fr_FR
dc.subject Voltage Deviation fr_FR
dc.subject Cost Reduction fr_FR
dc.subject التوليد المتوزع fr_FR
dc.subject الطاقات المتجددة fr_FR
dc.subject طرق التحسين fr_FR
dc.subject شبكات التوزيع fr_FR
dc.subject تقليل الخسائر النشطة fr_FR
dc.subject انحراف الجهد fr_FR
dc.subject خفض التكلفة fr_FR
dc.title Stratégies d’Intégration optimale de sources des énergies renouvelables dans le réseau de distribution électrique en considérant des indices techniques et économiques. fr_FR
dc.type Thesis fr_FR


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