Elektrik Dağıtım Şebekelerinde Yüksek Mukavemetli Akıllı Panoların Saha Uygulaması ve Operasyonel Etkileri
Loading...
Date
Journal Title
Journal ISSN
Volume Title
Publisher
Open Access Color
OpenAIRE Downloads
OpenAIRE Views
Abstract
Elektrik dağıtım şebekelerinde izinsiz müdahaleler ve kayıt dışı enerji kullanımı, hem sistem güvenliğini hem de işletme verimliliğini olumsuz etkilemektedir. Bu çalışmada söz konusu risklerin azaltılmasına yönelik olarak geliştirilen yüksek mukavemetli akıllı panoların tasarımı, saha uygulamaları ve performans analizleri sunulmaktadır. Kompozit gövde ve poliürea kaplama ile güçlendirilen panolar, klasik panolara kıyasla yaklaşık %70 daha yüksek mekanik dayanım sergilemiştir. Entegre darbe, sıcaklık ve kapı açılma sensörleri ile izinsiz erişimler anlık olarak tespit edilip merkeze iletilmiş; kamera ve elektromekanik kilit mekanizması ise güvenliği pekiştirmiştir. Pilot bölge uygulamalarında kurulan 3 adet prototip akıllı pano SCADA sistemiyle entegre edilerek gerçek zamanlı izlenmiştir. Bulgular, akıllı panoların izinsiz müdahaleleri caydırmada, bakım-onarım kesinti sürelerini azaltmada ve enerji sürekliliğini artırmada etkili olduğunu ortaya koymuştur. Çalışmanın sonunda bu teknolojinin sektörde yaygınlaştırılmasına yönelik öneriler tartışılmıştır.
Unauthorized interventions and unregistered energy usage in electricity distribution networks negatively affect both system security and operational efficiency. This study presents the design, field applications, and performance analyses of high-strength smart panels developed to mitigate such risks. Reinforced with a composite body and polyurea coating, the panels demonstrated approximately 70% higher mechanical durability compared to conventional enclosures. Integrated shock, temperature, and door-opening sensors enabled instant detection and transmission of unauthorized access attempts to the central system, while a camera and electromechanical locking mechanism further enhanced security. In pilot applications, 3 prototype smart panels were deployed, integrated with the SCADA system, and monitored in real time. The findings revealed that the smart panels were effective in deterring unauthorized interventions, reducing maintenance-related outage durations, and improving energy continuity. Finally, the study discusses recommendations for the large-scale implementation of this technology in the electricity distribution sector.
Unauthorized interventions and unregistered energy usage in electricity distribution networks negatively affect both system security and operational efficiency. This study presents the design, field applications, and performance analyses of high-strength smart panels developed to mitigate such risks. Reinforced with a composite body and polyurea coating, the panels demonstrated approximately 70% higher mechanical durability compared to conventional enclosures. Integrated shock, temperature, and door-opening sensors enabled instant detection and transmission of unauthorized access attempts to the central system, while a camera and electromechanical locking mechanism further enhanced security. In pilot applications, 3 prototype smart panels were deployed, integrated with the SCADA system, and monitored in real time. The findings revealed that the smart panels were effective in deterring unauthorized interventions, reducing maintenance-related outage durations, and improving energy continuity. Finally, the study discusses recommendations for the large-scale implementation of this technology in the electricity distribution sector.
Description
Keywords
Mühendislik, Elektrik Ve Elektronik, Malzeme Bilimleri, Kompozitler, Enerji Ve Yakıtlar
Fields of Science
Citation
WoS Q
Scopus Q
Source
Volume
16
Issue
1
Start Page
105
End Page
114
