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Power system faces great challenges as it is liable to extreme stress conditions leading to its instability. Therefore, it is essential to keep the system stability and the islanded area energized to avoid complete blackout. The book proposes a new application based on the integration of the Boolean algebra and particle swarm optimization (PSO) for service restoration of islanded sections of the distribution system. The goal is to explore the positive role of the reconfiguration strategy, distributed energy resources (DERs) and capacitor banks (C-Bs) on the stability, reliability and power…mehr

Produktbeschreibung
Power system faces great challenges as it is liable to extreme stress conditions leading to its instability. Therefore, it is essential to keep the system stability and the islanded area energized to avoid complete blackout. The book proposes a new application based on the integration of the Boolean algebra and particle swarm optimization (PSO) for service restoration of islanded sections of the distribution system. The goal is to explore the positive role of the reconfiguration strategy, distributed energy resources (DERs) and capacitor banks (C-Bs) on the stability, reliability and power losses of the distribution networks. Moreover, the work refers to the possibility of continuously supplying the loads especially under islanding conditions after disconnection from the external grid. Different scenarios depending on the system operating conditions, normal or contingency, are studied with the objective of improving the system voltage stability index (VSI) taking into consideration different operating constraints. Typical 33/69 buses IEEE distribution systems are simulated with results show the validation and resilience of the proposed approach compared with other existing methods.
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Autorenporträt
Essam Mazloum Ali was born in 1986 Port Said, Egypt. Studied in El-Azhar University, Cairo, graduated in 2008. A competent professional with nearly 12 of experience in Team Management, Testing & Commissioning of protection system and high voltage product up to 380KV. Currently associated with NECE Ltd. Saudi Arabia, as EHV T&C Project Manager.