• 제목/요약/키워드: Wire detecting system

검색결과 39건 처리시간 0.028초

Hall 센서를 이용한 엘리베이터 와이어 로프의 비파괴 검출시스템의 개발 (Development of Nondestructive Detecting System for Elevator Wire Ropes using Hall-effect Sensors)

  • 김성덕
    • 센서학회지
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    • 제10권1호
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    • pp.33-41
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    • 2001
  • 와이어 로프는 무거운 중량을 안전하게 운반하거나 기계적인 에너지를 빠르게 전송하는 곳과 같은 산업응용 분야에 광범위하게 사용되어 왔다. 특히, 운전 중 엘리베이터의 와이어 로프가 파손되면 큰 재산 상 손실과 주변 인명의 심각한 상해를 초래할 수 있다. 따라서, 와이어 로프의 정기적인 검사는 매우 중요하다. 와이어 로프의 고장 검출은 로프의 구조, 특성, 결함 특성, 검출방법과 신호처리 방법에 대한 기본적인 이해가 요구된다. 이 연구에서는 엘리베이터에 노화된 와이어 로프에 대한 마모, 단선, 부식과 형붕괴와 같은 결함을 검출하기 위하여, Hall 센서를 결합한 새로운 결함 검출시스템의 개발에 대하여 다룬다. 휴대용 계측기로서 검출기를 사용하기 위하여, Hall 센서를 가진 센싱 부분과 아날로그 신호처리 및 프로그램의 제작에 대한 몇 가지 특성들이 서술되었다. 제작된 검출시스템에 대한 실험과 실장시험 결과 역시 제시되었다. 그 결과, 검출시스템은 사용 중인 노화된 와이어 로프의 결함을 검출하는데 양호한 효율성을 갖는다는 것을 확인하였다.

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Wavelet 변환을 이용한 크레인 와이어 로프 결함 신호처리에 관한 연구 (A Study on Crane Wire Rope Flaws Signal Processing Using Discrete Wavelet Transform)

  • Min, Jeong-Tak;Sohn, Dong-Seop;Lee, Jin-Woo;Lee, Kwon-Soon
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2002년도 추계공동학술대회논문집
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    • pp.155-159
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    • 2002
  • Wire ropes are used in a myriad of various industrial applications such as elevator, mine hoist, construction machinery, lift, and suspension bridge. Especially, wire rope of crane is important component to container transfer. If it happens wire rope failures in operating, it may lead to safety accident, economic power loss by productivity decline, competitive power decline of container terminal and so on. To solve this problem, we developed wire rope fault detecting system as a portable instrument, and this system is consisted of 3 parts that fault detecting part using hall sensor, permanent magnets and analog unit, and digital signal processing part using data acquisition card, monitoring part using wavelet transform, denoising method. In this paper, a wire rope is scanned by this system after makes several broken parts on the surface of wire rope artificially. All detected signal has external noise or disturbance according to circumstances. So, we applied to discrete wavelet transform to extract a signal from noisy data that was used filter. In practical applications of denoising, it is shown that wavelet pursue it with little information loss and smooth signal display. It is verified that the detecting system by denoising has good efficiency for inspecting faults of wire ropes in service. As a result, by developing this system, container terminal could reduce expense because of extension of wire ropes exchange period and could competitive power. Also, this system is possible to apply in several fields like that elevator, lift and so on.

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퍼지 분류기 기반 지능형 차단 시스템 (Intelligent Diagnosis System Based on Fuzzy Classifier)

  • 성화창;박진배;소제윤;주영훈
    • 한국지능시스템학회논문지
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    • 제17권4호
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    • pp.534-539
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    • 2007
  • 본 논문에서는 저압 배선 진단 시스템 개발을 위한 지능형 차단 시스템을 제안한다. 제안된 배선 진단 시스템은 TFDR(Time-Frequency Domain Reflectometry) 알고리즘을 통해 배선이 어떤 상태인지를 보여 주는 시스템이다. 그리고 제안된 진단 시스템으로부터 얻은 신호를 분석하여 이상 종류에 따라 분류하는 시스템을 통해 지능형 차단 시스템을 제안한다. 일반적으로, TFDR을 통해 알아 낼 수 있는 이상의 종류는 damage, open 그리고 short 이다. 각 상황에 대한 효율적인 분류를 위하여 IF-THEN 규칙에 기반 한 분류기가 사용된다. 기존 TFDR이 수행되었던 통신선 케이블의 실험 데이터에 기반 한 실험을 통해 본 제안 내용의 우수성을 보이게 된다.

크레인 와이어 로프의 실신간 원격 결함탐지 시스템 개발 (Development of Real-time Remote Detection System for Crane Wire Rope Defect)

  • 이권순;서진호;민정탁;이영진
    • 한국정밀공학회지
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    • 제22권1호
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    • pp.53-60
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    • 2005
  • The wire rope of container crane is a important component to container transfer system and is used in a myriad of various applications such as elevator, mine hoist, construction machinery, and so on. If it happen wire rope failures in operating, it may lead to the safety accident and economic loss, which is productivity decline, competitive decline of container terminal, etc. To solve this problem, we developed the active and portable wire rope fault detecting system. The developed system consists of three parts that are the fault detecting, signal processing, and remote monitoring part. All detected signal has external noise or disturbance according to circumstances. Therefore we applied to discrete wavelet transform to extract a signal from noisy data that was used filter. As experimental result, we can reduce the expense for container terminal because of extension of exchange period of wire rope for container crane and this system is possible to apply in several fields to use wire rope.

시간-주파수 영역 반사파 계측법 기반 XLPE 전력 케이블의 중성선 결함 위치 측정 연구 (Detection and Localization of Neutral Wire Defect of XLPE Power Cable Based on The Time-Frequency Domain Reflectometry)

  • 이춘구;곽기석;윤태성;박진배
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2011년도 제42회 하계학술대회
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    • pp.1790-1791
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    • 2011
  • In this paper, the diagnosis system for detecting and localizing the neutral wire defect in an energized XLPE power cable is proposed. The neutral wire defect is detectd and localized by the time-frequency domain reflectometry. To extract the reflected signal from the neutral wire defect, the adaptive RLS filtering is introduced. To verify the proposed method, the experiments for detecting and localizing neutral wire defect in active XLPE power cable is conducted.

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원격 크레인 와이어 로프 결함 탐지 시스템 개발에 관한 연구 (A Study on Development of Remote Crane Wire Rope Flaws Detection Systems)

  • 민정탁;이진우;이권순
    • 한국항해항만학회지
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    • 제27권1호
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    • pp.97-102
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    • 2003
  • 와이어 로프는 엘리베이트, 건설현장의 리프트, 현수교 등 다양한 산업 현장에 응용되어 지고 있다. 특히, 크레인의 와이어 로프는 컨테이너 이송에 중용한 요소로서 컨테이너 이송 시 로프에 결함이 발생한다면 안전사고, 생산성 저하에 따른 경제력 손실 그리고 컨테이너 터미널의 경쟁력 손실 등 여러 가지 문제점이 초래된다. 이러한 문제점을 해결하기위해 원격 크레인 와이어 로프 결함 탐지 시스템을 개발하였으며, 본 시스템은 크게 결함 탐지부, 신호 처리부, 원격 모니터링부로 구성되어져 있다. 측정된 신호는 외부적 환경으로부터 노이즈를 가지게 되는데 원신호로부터 이러한 노이즈를 제거하기 위하여 이산 웨이브렛 변환을 적용하였다. 그 결과 와이어 로프 결함을 탐지하는데 있어서 좀더 쉽게 결함을 판별할 수 있었다. 결론적으로 이러한 시스템의 개발은 와이어로프의 교체 시기 연장으로 항만의 비용을 절감할 수 있으며, 경쟁력 향상 그리고 엘리베이터, 리프트 등 다양한 산업현장에 이러한 시스템을 적용할 수 있다.

A Study on Wire Rope Flaws Signal Processing using Discrete Wavelet Transform

  • Min, Jeong-Tak;Lee, Jin-Woo;Lee, Kwon-Soon
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2002년도 ICCAS
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    • pp.97.1-97
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    • 2002
  • $\textbullet$ Abstract $\textbullet$ Introduction $\textbullet$ Wire Rope Detecting System $\textbullet$ Signal Processing $\textbullet$ Experiment $\textbullet$ Conclusion $\textbullet$ Reference

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고속카메라를 이용한 전차선 마모 검측 영상처리 알고리즘 개발 (Development of a Technique for Detection of Contact Wire Wear using High-Speed Camera)

  • 박영;조용현;조철진;김원하
    • 한국전기전자재료학회논문지
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    • 제23권8호
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    • pp.632-637
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    • 2010
  • The measurement of contact wire wear in electric railways is one of the key test parameters to increase speed and maintain safety in electric railways. Wear caused by continuous interaction between pantographs and contact wires has a negative effect on current collection quality and severely damaged contact wires might cause hazardous accidents. This paper introduces a non-contact optical-based contact wire wear measuring system that will replace conventional wear detecting methods conducted by maintenance vehicles or workers. The system is implemented by high-speed cameras that can collect images of contact wires during vehicle operation, a laser used to create images profile of the contact wire surface, and a computer used to process the collected images. The proposed system is designed to assist maintenance of overhead contact lines by creating geometrically plotted images of contact wires to detect contact wire wear during operation on conventional lines or high-speed lines.

IOT기술을 이용한 유무선 통합 가스검출 시스템 구현 (System of gas sensor for conbinating wire and wireless using Internet of Things)

  • 방용기;강경식
    • 대한안전경영과학회지
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    • 제17권4호
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    • pp.297-304
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    • 2015
  • This study concerns the integrated gas sensor system of wire and wireless communication by using IoT(Internet of Things) technology. First, communication part is that it delivers the detection information, which transferred by wire or wireless communication and required control procedure based on a wireless module that receives the gas leakage information from wired or wireless detector, to administrator or user's terminal. Second, receiver part is that it shows the location and information, which received from the wired detector formed by a detecting sensor's node as linking with the communication part, and transfers these to the communication part. Third, wireless detector formed as a communication module of a detecting sensor node is that it detects gas leakage and transfers the information through wireless as a packet.Fourth, wired detector communicated with the receiver part and formed as a communication module of a detecting sensor node is that it detects gas leakage, transfers and shows the information as a packet. Fifth, administrator's terminal is that it receives gas leakage information by the communication part, transfers the signal by remote-control, and shut off a gas valve as responding the information. Sixth, database is that it is connected with the communication part; it sets and stores the default values for detecting smoke, CO., and temperature; it transfers this information to the communication part or sends a gas detecting signal to user's terminal. Seventh, user's terminal is that it receives each location's default value which stored and set at the database; it manages emergency situation as shutting off a gas valve through remote control by corresponding each location's gas leakage information, which transferred from the detector to the communication part by wireless.It is possible to process a high quality data regarding flammable or toxic gas by transferring the data, which measured by a sensor module of detector, to the communication part through wire and wireless. And, it allows a user to find the location by a smart phone where gas leaks. Eventually, it minimizes human life or property loss by having stability on gas leakage as well as corresponding each location's information quickly.

Ultrasonic guided wave approach incorporating SAFE for detecting wire breakage in bridge cable

  • Zhang, Pengfei;Tang, Zhifeng;Duan, Yuanfeng;Yun, Chung Bang;Lv, Fuzai
    • Smart Structures and Systems
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    • 제22권4호
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    • pp.481-493
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    • 2018
  • Ultrasonic guided waves have attracted increasing attention for non-destructive testing (NDT) and structural health monitoring (SHM) of bridge cables. They offer advantages like single measurement, wide coverage of acoustical field, and long-range propagation capability. To design defect detection systems, it is essential to understand how guided waves propagate in cables and how to select the optimal excitation frequency and mode. However, certain cable characteristics such as multiple wires, anchorage, and polyethylene (PE) sheath increase the complexity in analyzing the guided wave propagation. In this study, guided wave modes for multi-wire bridge cables are identified by using a semi-analytical finite element (SAFE) technique to obtain relevant dispersion curves. Numerical results indicated that the number of guided wave modes increases, the length of the flat region with a low frequency of L(0,1) mode becomes shorter, and the cutoff frequency for high order longitudinal wave modes becomes lower, as the number of steel wires in a cable increases. These findings were used in design of transducers for defect detection and selection of the optimal wave mode and frequency for subsequent experiments. A magnetostrictive transducer system was used to excite and detect the guided waves. The applicability of the proposed approach for detecting and locating wire breakages was demonstrated for a cable with 37 wires. The present ultrasonic guided wave method has been found to be very responsive to the number of brokenwires and is thus capable of detecting defects with varying sizes.