• 제목/요약/키워드: Sensor Management

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무선 센서 네트워크 환경에서의 에너지 효율성을 고려한 태스크 스케줄링 기법 (Task Scheduling Technique for Energy Efficiency in Wireless Sensor Networks)

  • 이진호;최훈;백윤주
    • 한국통신학회논문지
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    • 제31권9A호
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    • pp.884-891
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    • 2006
  • 무선 센서 네트워크에서의 센서 노드는 배터리로 동작하기 때문에 에너지에 대한 제약이 있다. 따라서 무선 센서 노드를 위한 효율적인 전력 관리 기법과 스케줄링 기법 설계가 중요한데, 본 논문에서는 운영체제 레벨의 소비 에너지를 줄이기 위한 알고리즘을 제안한다. 효율적인 배터리 사용을 위해 상황에 따라 필요한 컴포넌트에만 전원을 인가함으로써 센서노드의 에너지 소비를 줄일 수 있다. 본 논문에서는 제안한 알고리즘을 시뮬레이션 한 결과 기존의 duty 사이클과 비교하여 최대 56%의 에너지가 절약되었음을 알 수 있다.

온실 복합생장환경 관제 시스템 구현 (Implementation of Complex Growth-environment Control System in Greenhouse)

  • 조현욱;조종식;박인곤;서범석;김찬우;신창선
    • 디지털산업정보학회논문지
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    • 제7권1호
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    • pp.1-9
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    • 2011
  • In this paper, Wireless sensor network technology applied to various greenhouse agro-industry items such as horticulture and local specialty etc., we was constructed automatic control system for optimum growth environment by measuring growth status and environmental change. existing monitoring systems of greenhouse gather information about growth environment depends on the temperature. but in this system, Can be efficient collection and control of information to construct wireless sensor network by growth measurement sensor and environment monitoring sensor inside of the greenhouse. The system is consists of sensor manager for information processing, an environment database that stores information collected from sensors, the GUI of show the greenhouse status, it gather soil and environment information to soil and environment(including weather) sensors, growth measurement sensor. In addition to support that soil information service shows the temperature, moisture, EC, ph of soil to user through the interaction of obtained data and Complex Growth Environment information service for quality and productivity can prevention and response by growth disease or disaster of greenhouse agro-industry items how temperature, humidity, illumination acquiring informationin greenhouse(strawberry, ginseng). To verify the executability of the system, constructing the complex growth environment measurement system using wireless sensor network in greenhouse and we confirmed that it is can provide our optimized growth environment information.

Wireless sensor networks for long-term structural health monitoring

  • Meyer, Jonas;Bischoff, Reinhard;Feltrin, Glauco;Motavalli, Masoud
    • Smart Structures and Systems
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    • 제6권3호
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    • pp.263-275
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    • 2010
  • In the last decade, wireless sensor networks have emerged as a promising technology that could accelerate progress in the field of structural monitoring. The main advantages of wireless sensor networks compared to conventional monitoring technologies are fast deployment, small interference with the surroundings, self-organization, flexibility and scalability. These features could enable mass application of monitoring systems, even on smaller structures. However, since wireless sensor network nodes are battery powered and data communication is the most energy consuming task, transferring all the acquired raw data through the network would dramatically limit system lifetime. Hence, data reduction has to be achieved at the node level in order to meet the system lifetime requirements of real life applications. The objective of this paper is to discuss some general aspects of data processing and management in monitoring systems based on wireless sensor networks, to present a prototype monitoring system for civil engineering structures, and to illustrate long-term field test results.

압전진동자를 이용한 초음파형 풍향풍속계 (The Ultrasonic Type Wind Sensor with Piezoelectric Actuator)

  • 이선길;문영순;최시영
    • 센서학회지
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    • 제22권4호
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    • pp.292-296
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    • 2013
  • The ultrasonic wind sensor that pass through the air, beating the delivery of ultrasonic wind speed increases or decreases by the physical characteristics of the wind speed and the direction of the sensor, the transmission and reception of ultrasonic time difference measured by a two-axis vector wind and wind speed measured by calculating a device that converts the digital signal is Anemometer and wind direction meteorological facilities management, management of the ship sail used for various purposes, including, but used the existing 3-cup (mechanical) anemometer wind rotor caused by mechanical wear parts replacement due to the short-term, the reliability of the product is low, parts replacement, and according to the characteristics caused the car, there is a problem in high maintenance costs. In addition, because the bearings use of the marine environment and the cryogenic environment was constrained. In this study, the excellent long-term reliability, using ultrasonic-type environment that is not constrained to produce wind anemometer located $90^{\circ}$ conformal road using four piezoelectric sensors were fabricated structures, the piezoelectric oscillator circuit produces a rash and receiving transmit and receive speeds the car through the two-axis vector calculation to measure wind velocity processor firmware programming, and its characteristics were tested.

센서 데이터의 시계열 특성을 고려한 딥러닝 모델 기반의 공압 실린더 고장 감지 시스템 구현 (Real-time Fault Detection System of a Pneumatic Cylinder Via Deep-learning Model Considering Time-variant Characteristic of Sensor Data)

  • 김병수;송근명;이민정;백수정
    • 산업경영시스템학회지
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    • 제47권2호
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    • pp.10-20
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    • 2024
  • In recent automated manufacturing systems, compressed air-based pneumatic cylinders have been widely used for basic perpetration including picking up and moving a target object. They are relatively categorized as small machines, but many linear or rotary cylinders play an important role in discrete manufacturing systems. Therefore, sudden operation stop or interruption due to a fault occurrence in pneumatic cylinders leads to a decrease in repair costs and production and even threatens the safety of workers. In this regard, this study proposed a fault detection technique by developing a time-variant deep learning model from multivariate sensor data analysis for estimating a current health state as four levels. In addition, it aims to establish a real-time fault detection system that allows workers to immediately identify and manage the cylinder's status in either an actual shop floor or a remote management situation. To validate and verify the performance of the proposed system, we collected multivariate sensor signals from a rotary cylinder and it was successful in detecting the health state of the pneumatic cylinder with four severity levels. Furthermore, the optimal sensor location and signal type were analyzed through statistical inferences.

웹 기반의 센서네트워크 질의 및 데이타 관리 (A Web-based Sensor Network Query and Data Management)

  • 황광일;엄두섭
    • 한국정보과학회논문지:시스템및이론
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    • 제33권11호
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    • pp.820-829
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    • 2006
  • 최근 무수한 센서 노드들로 구성된 무선 센서 네크워크는 물리적인 환경을 감독하고 분석하는데 많은 기여를 할 것으로 기대된다. 그러나, 센서 네트워크는 매우 많은 노드들이 통신에 참여하고 전력이 제한된다는 점에서 기존의 네트워크와 매우 차별된다. 이러한 독특한 특징 때문에 센서네트워크의 데이타 질의를 포함한 센서 네트워크 데이타 관리는 주목할 만한 연구분야가 되고 있다. 또한 인터넷의 활발한 보급과 사용의 편리함 때문에 독립적인 한 네트워크에 대한 감독과 관리에 있어 인터넷을 통한 원격의 웹기반 네트워크 관리기술을 사용하는 것이 일반적으로 고려되고 있다. 그리하여 본 논문에서는 센서 네트워크 데이타 질의 및 관리를 보다 효율적으로 하기 위한 웹기반의 센서 데이타 질의 서버와 이를 기반으로 한 게이트웨이의 구조를 제안하고, 제안된 웹기반의 센서 게이트웨이의 구현관련 세부사항과 그 결과를 기술한다. 제안된 웹기반 게이트웨이는 크게 두 부분으로 구성된다.(인터넷 관련 처리부분과 센서 데이터 처리부분) 센서 데이타 처리부분은 인터넷으로 전달된 사용자의 질의와 해당하는 데이타를 다양한 센서 네트워크(평면적 또는 계층적)에 적용 가능한 센서 데이타 질의 및 데이타 관리를 대행하는 역할을 하며, 인터넷 관련 처리부분에서는 센서 네트워크와 인터넷 사이의 순조로운 데이타 교환을 위한 모듈화된 게이트웨이 기능을 공급한다.

A Study on Displacement Measurement Hardware of Retaining Walls based on Laser Sensor for Small and Medium-sized Urban Construction Sites

  • Kim, Jun-Sang;Kim, Jung-Yeol;Kim, Young-Suk
    • 국제학술발표논문집
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    • The 9th International Conference on Construction Engineering and Project Management
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    • pp.1250-1251
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    • 2022
  • Measuring management is an important part of preventing the collapse of retaining walls in advance by evaluating their stability with a variety of measuring instruments. The current work of measuring management requires considerable human and material resources since measurement companies need to install measuring instruments at various places on the retaining wall and visit the construction site to collect measurement data and evaluate the stability of the retaining wall. It was investigated that the applicability of the current work of measuring management is poor at small and medium-sized urban construction sites(excavation depth<10m) where measuring management is not essential. Therefore, the purpose of this study is to develop a laser sensor-based hardware to support the wall displacement measurements and their control software applicable to small and medium-sized urban construction sites. The 2D lidar sensor, which is more economical than a 3D laser scanner, is applied as element technology. Additionally, the hardware is mounted on the corner strut of the retaining wall, and it collects point cloud data of the retaining wall by rotating the 2D lidar sensor 360° through a servo motor. Point cloud data collected from the hardware can be transmitted through Wi-Fi to a displacement analysis device (notebook). The hardware control software is designed to control the 2D lidar sensor and servo motor in the displacement analysis device by remote access. The process of analyzing the displacement of a retaining wall using the developed hardware and software is as follows: the construction site manager uses the displacement analysis device to 1)collect the initial point cloud data, and after a certain period 2)comparative point cloud data is collected, and 3)the distance between the initial point and comparison point cloud data is calculated in order. As a result of performing an indoor experiment, the analyses show that a displacement of approximately 15 mm can be identified. In the future, the integrated system of the hardware designed here, and the displacement analysis software to be developed can be applied to small and medium-sized urban construction sites through several field experiments. Therefore, effective management of the displacement of the retaining wall is possible in comparison with the current measuring management work in terms of ease of installation, dismantlement, displacement measurement, and economic feasibility.

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On-the-go Nitrogen Sensing and Fertilizer Control for Site-specific Crop Management

  • Kim, Y.;Reid, J.F.;Han, S.
    • Agricultural and Biosystems Engineering
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    • 제7권1호
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    • pp.18-26
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    • 2006
  • In-field site-specific nitrogen (N) management increases crop yield, reduces N application to minimize the risk of nitrate contamination of ground water, and thus reduces farming cost. Real-time N sensing and fertilization is required for efficient N management. An 'on-the-go' site-specific N management system was developed and evaluated for the supplemental N application to com (Zea mays L.). This real-time N sensing and fertilization system monitored and assessed N fertilization needs using a vision-based spectral sensor and controlled the appropriate variable N rate according to N deficiency level estimated from spectral signature of crop canopies. Sensor inputs included ambient illumination, camera parameters, and image histogram of three spectral regions (red, green, and near-infrared). The real-time sensor-based supplemental N treatment improved crop N status and increased yield over most plots. The largest yield increase was achieved in plots with low initial N treatment combined with supplemental variable-rate application. Yield data for plots where N was applied the latest in the season resulted in a reduced impact on supplemental N. For plots with no supplemental N application, yield increased gradually with initial N treatment, but any N application more than 101 kg/ha had minimal impact on yield.

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무선 센서노드의 전파수신강도(RSS)를 이용한 캠퍼스 차량 위치관리 시스템 구현 (Implementation of Campus Car Location Management System Using Received Signal Strength of Wireless Sensor Node)

  • 최준영;김현중;양현호
    • 한국정보통신학회:학술대회논문집
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    • 한국해양정보통신학회 2008년도 춘계종합학술대회 A
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    • pp.473-476
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    • 2008
  • 유비쿼터스 센서 네트워크는 홈 네트워크, 텔레매틱스 등의 IT 산업분야를 비롯하여 물류, 유통, 환경, 교통 등 산업 전반에 다양하게 응용되고 있으며 이들 기술이 공통적으로 요구하는 기술 요소 중의 하나는 센서노드의 위치에 관한 정보를 추적하고 관리하는 것이다. 본고에서는 무선 센서 네트워크의 응용분야로서 무선센서노드의 전파수신강도(RSS)에 기반한 위치측정 기법을 캠퍼스 내 차량 위치 측정에 활용하는 것을 제안하고 그 구현방안에 대하여 기술하였다. 이를 위하여 무선센서노드의 최적의 경로 탐색 및 멀티홉 설정 방안을 고찰하였으며 실제 적용 시스템의 구성 및 동작 절차를 제안하였다. 실외환경에서의 실험 결과 제안된 방식은 캠퍼스환경에서 차량의 주차위치를 관리하기에 충분한 위치 정확도를 제공하는 것으로 판명되었다.

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무선 센서망을 이용한 교량 관리 시스템 (A Bridge Management System Using Wireless Sensor Networks)

  • 박찬흠;김영락;김근덕;박희주;김종근
    • 한국통신학회논문지
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    • 제35권5B호
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    • pp.824-832
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    • 2010
  • 구조물의 관리에서 전문 관리 인력이 직접 조사하는 방식은 예산이나 검사 방법 및 주기에 따라 그 효과가 달라진다. 따라서 효과적이며 자동화된 구조물의 유지관리 방안이 필요하다. 교량 관리에서 자동화된 관리 방안으로는 몇몇 교량에 유선통신 방식을 이용한 상시 감시 시스템을 구축, 운영하고 있으나 교량 통합관리 시스템으로서의 성능은 초보적인 수준에 머물고 있다. 본 논문에서는 센서 네트워크를 적용한 교량의 통합관제 시스템을 구현한다. 교량에 설치된 센서를 무선망으로 구성하고 수집된 정보의 상시 모니터링을 위해 교량 관리자를 위한 기능과 관리시스템 관리용 기능, 그리고 비전문가용 웹 기반 모니터링 시스템을 구축하였다. 본 연구의 결과는 실험대상 교량에 적용하여 그 효과를 분석하고 있다.