4.4 Article

Risk informed design modification of dynamic thermal rating system

Journal

IET GENERATION TRANSMISSION & DISTRIBUTION
Volume 9, Issue 16, Pages 2697-2704

Publisher

INST ENGINEERING TECHNOLOGY-IET
DOI: 10.1049/iet-gtd.2015.0351

Keywords

smart power grids; power system security; power overhead lines; power transmission reliability; risk analysis; weather forecasting; smart power grid; dynamic thermal rating system; security limits; transmission lines; reliability assessment; risk assessment; DTR system; weather estimation model

Funding

  1. Universiti Sains Malaysia (USM)
  2. Ministry of Higher Education Malaysia (MOHE)

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Future grids will be operated much closer to their security limits due to the ever increasing power demands and the restrictions on land and space to build more transmission corridors. As one of the many smart grid technologies, the dynamic thermal rating (DTR) system of transmission lines offers the solution to increase line current capacity without infringing the conductor's maximum operating temperature. Hence, it has emerged as a popular solution for the aforementioned challenges. Owing to that, there is a strong need to assess the integrity of this technology. For this reason, this study presents a systematic framework for assessing the reliability and the risk of a DTR system. The research was carried out in two parts and is able to optimise the risk and the reliability (cost) of the DTR system. In addition, a weather estimation model is proposed to estimate the weather data when the DTR sensors are not functional. This is contrary to the existing literature which suggests that conservative assumptions be made. The results show that the proposed weather estimation model avoids overestimation of the DTR system risk.

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