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      Integrated Protection Unit Design for Power Networks

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      https://www.riss.kr/link?id=A101866189

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      다국어 초록 (Multilingual Abstract)

      This paper presents an hardware design solution for integrated protection of distribution systems (Network Protection Unit) by combining transient polarity comparison technique, which is based on the detection and processing of fault generated transie...

      This paper presents an hardware design solution for integrated protection of distribution systems (Network Protection Unit) by combining transient polarity comparison technique, which is based on the detection and processing of fault generated transient current signals. The integrated protection relays installed at each substation of a distribution network are communicated with the Network Protection Unit through specially designed Packet Transport Network (PTN) for fast and reliable transmission of transient polarity current signals. The relay detects the faulted generated super-imposed current signals. The transient polarity identification algorithm is then applied to the super-imposed signals to identify the polarity of the signal detected. The Network Protection Unit can collect all the transient polarity current signals under its protection area. Then The direction of a fault is determined by comparison of the polarity of the signals derived from all the line sections connected to the substation. The actual faulted section is identified by the Network Protection Unit through comparing the directional information from various stations. Simulation results presented in the paper demonstrate the feasibility of the scheme.

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      목차 (Table of Contents)

      • Abstract
      • 1. Introduction
      • 2. Basic Principle of the Scheme
      • 3. Relay System Design Principle
      • 3.1 Relay Platform Design
      • Abstract
      • 1. Introduction
      • 2. Basic Principle of the Scheme
      • 3. Relay System Design Principle
      • 3.1 Relay Platform Design
      • 3.2 Protection Algorithm Design
      • 4. The Hardware Design of Network Protection Unit
      • 5. System Response Evaluation
      • 6. Conclusions
      • References
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