• Title/Summary/Keyword: 다기능 접지저항 측정기

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A study on Development of Multiple function meters for anticorrosion at underground gas pipelines (방식전용 다기능 전위측정기 개발 연구)

  • Park, Gyou-Tae;Lyu, Geun-Jun;Kwon, Jeong-Rock;Lee, Kuk-Jin;Yoon, Myung-Sub;Song, Bo-Hyun
    • Proceedings of the KIEE Conference
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    • 2007.07a
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    • pp.298-299
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    • 2007
  • 매설배관은 관련법규에 따라 방식(anticorrosion)상태나 배관의 효율적인 유지관리를 위하여 배관의 방식전위를 관로를 따라 주기적으로 측정하여 전철의 영향이나 타 배설배관 및 방식시스템의 상황이 파악되어야 한다. 일반적인 방식전위측정기는 토양비저항이 30 내지 40 $M{\Omega}$ 이상의 높은 지역에서의 방식전위측정 시 전위왜곡이 발생하여 정확한 방식상태를 판단하기 곤란한 경우가 있다. 이러한 장애를 극복하고자 입력임피던스를 100$M{\Omega}$으로 설계하여 방식전위 측정시의 왜곡을 개선 및 정확도를 높이고 방식유지관리에 반드시 필요한 직류 및 교류 전압, 전류, 접지저항, 주파수 등을 측정할 수 있는 방식전용 다기능 계측기를 개발하였으며, 이는 측정 및 휴대가 용이하여 현장에 도움을 주고 있다.

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A Study on Smart Ground Resistance Measurement Technology Based on Aduino (아두이노 기반 IT융합 스마트 대지저항 측정 기술 연구)

  • Kim, Hong Yong
    • Journal of the Society of Disaster Information
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    • v.17 no.4
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    • pp.684-693
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    • 2021
  • Purpose: The purpose is to establish a safe facility environment from abnormal voltages such as lightning by developing a smart land resistance measuring device that can acquire real-time land resistance data using Arduino. Method: This paper studied design models and application cases by developing a land resistance acquisition and analysis system with Arduino and a power line communication (PLC) system. Some sites in the wind power generation complex in Gyeongsangnam-do were selected as test beds, and real-time land resistance data applied with new technologies were obtained. The electrode arrangement adopted a smart electrode arrangement using a combination of a Wenner four electrode arrangement and a Schlumberger electrode arrangement. Result: First, the characteristic of this technology is that the depth of smart multi-electrodes is organized differently to reduce the error range of the acquired data even in the stratigraphic structure with specificity between floors. Second, IT convergence technology was applied to enable real-time transmission and reception of information on land resistance data acquired from smart ground electrodes through the Internet of Things. Finally, it is possible to establish a regular management system and analyze big data accumulated in the server to check the trend of changes in various elements, and to model the optimal ground algorithm and ground system design for the IT convergence environment. Conclusion: This technology will reduce surge damage caused by lightning on urban infrastructure underlying the 4th industrial era and design an optimized ground system model to protect the safety and life of users. It is also expected to secure intellectual property rights of pure domestic technology to create jobs and revitalize our industry, which has been stagnant as a pandemic in the post-COVID-19 era.