• 제목/요약/키워드: Differential Positioning

검색결과 236건 처리시간 0.029초

텔레매틱스 응용을 위한 다중센서통합의 이중 접근구조 (Bimodal Approach of Multi-Sensor Integration for Telematics Application)

  • 김성백;이승용;최지훈;장병태;이종훈
    • 대한전자공학회:학술대회논문집
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    • 대한전자공학회 2003년도 신호처리소사이어티 추계학술대회 논문집
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    • pp.525-528
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    • 2003
  • In this paper, we present a novel idea to integrate low cost Inertial Measurement Unit(IMU) and Differential Global Positioning System (DGPS) for Telematics applications. As well known, low cost IMU produces large positioning and attitude errors in very short time due to the poor quality of inertial sensor assembly. To conquer the limitation, we present a bimodal approach for integrating IMU and DGPS, taking advantage of positioning and orientation data calculated from CCD images based on photogrammetry and stereo-vision techniques. The positioning and orientation data from the photogrammetric approach are fed back into the Kalman filter to reduce and compensate IMU errors and improve the performance. Experimental results are presented to show the robustness of the proposed method that can provide accurate position and attitude information for extended period for non-aided GPS information.

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모바일 로봇의 강인한 위치 추정 기법 (Robust Positioning-Sensing for a Mobile Robot)

  • 이장명;황진아;허화라;강진구
    • 로봇학회논문지
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    • 제2권3호
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    • pp.221-226
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    • 2007
  • A robust position-sensing system is proposed in this paper for ubiquitous mobile robots which move indoor as well as outdoor. The Differential GPS (DGPS) which has position estimation error of less than 5 m is a general solution when the mobile robots are moving outdoor, while an active beacon system (ABS) with embedded ultrasonic sensors is selected as an indoor positioning system. The switching from the outdoor to indoor or vice versa causes unstable measurements on account of the reference and algorithm changes. To minimize the switching time in the position estimation and to stabilize the measurement, a robust position-sensing system is proposed. In the system, to minimize the switching delay, the door positions are stored and updated in a database. The reliability and accuracy of the robust positioning system based on DGPS and ABS are verified through the real experiments using a mobile robot prepared for this research and demonstrated.

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교통 표지판의 3차원 추적 경로를 이용한 자동차의 주행 차로 추정 (Lane-Level Positioning based on 3D Tracking Path of Traffic Signs)

  • 박순용;김성주
    • 로봇학회논문지
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    • 제11권3호
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    • pp.172-182
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    • 2016
  • Lane-level vehicle positioning is an important task for enhancing the accuracy of in-vehicle navigation systems and the safety of autonomous vehicles. GPS (Global Positioning System) and DGPS (Differential GPS) are generally used in navigation service systems, which however only provide an accuracy level up to 2~3 m. In this paper, we propose a 3D vision based lane-level positioning technique which can provides accurate vehicle position. The proposed method determines the current driving lane of a vehicle by tracking the 3D position of traffic signs which stand at the side of the road. Using a stereo camera, the 3D tracking paths of traffic signs are computed and their projections to the 2D road plane are used to determine the distance from the vehicle to the signs. Several experiments are performed to analyze the feasibility of the proposed method in many real roads. According to the experimental results, the proposed method can achieve 90.9% accuracy in lane-level positioning.

NDGPS 이용기술지원 및 이용사례조사

  • 전재천
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2006년도 추계학술대회 논문집(제2권)
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    • pp.157-162
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    • 2006
  • 해양수산부에서 구축추진 중인 NDGPS 즉, 전국망위성항법보정시스템을 널리 홍보하고, NDGPS 이용기술교육지원 및 이용 사례조사 발굴을 통해 국민 누구나 쉽고 편리하게 DGPS시스템을 이용할 수 있도록 찾아가는 서비스, 고객지향 혁신행정서비스 실천을 목표로 추진 중인 해양수산부 위성항법사무서의 홍보추진내용

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GPS Application for the Digital Map Construction of Irrigation Canal Networks

  • Choi, Jin-Yong;Yoon, Kwang-Sik;Kim, Jong-Ok
    • 한국농공학회지
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    • 제42권
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    • pp.9-16
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    • 2000
  • GPS(Global Positioning System) surveying is an effective method using satellite measurement system and can be applied to construction of digital map of irrigation canal networks. In this study, GPS surveying method for irrigation structures was developed. A selected main canal of an irrigation district were surveyed by GPS. The obtained surveying results were corrected by post-processed DGPS (Differential Global Positioning System) and imported to GIS for the digital map construction.

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SBAS 이동측위 정확도 분석 (Accuracy Analysis of Kinematic SBAS Surveying)

  • 김혜인;손은성;이호석;김현호;박관동
    • 한국측량학회지
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    • 제26권5호
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    • pp.493-504
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    • 2008
  • SBAS(Space-Based Augmentation System)는 광역보정항법시스템(WADGPS, Wide Area DGPS)으로써 지역 보정항법시스템(LADGPS, Local Area DGPS)의 단점을 보완한 위성항법 보정시스템이다. 이 연구에서는 GPS 측위의 대표적인 방법인 실시간 이동측위(RTK; Real-Time Kinematic), DGPS(Differential GPS) 측위, 단독측위(Standalone)와 SBAS 이동측위를 실시하고 그에 따른 측위 정확도 비교를 통해 SBAS 이동측위의 성능을 분석하였다. 정지측위 결과 산출한 좌표를 참값으로 간주하였고, 각각의 측위방법으로 획득한 관측데이터를 참값과 비교하여 계산한 2차원 평균제곱근(RMS: Root Mean Square)오차와 3차원 RMS 오차를 정확도 비교의 지표로 사용하였다. 그 결과, 각 측위방법에 따른 3차원 RMS 오차는 RTK 측위 13.1cm, DGPS 측위 126.0cm, 이중주파수 단독측위 135.7cm, 단일주파수 단독측위 428.9cm, 그리고 SBAS 측위 109.2cm로 나타났다. 이를 통해 SBAS 측위의 정확도가 DGPS 측위 정확도와 대등한 수준임을 확인할 수 있었다.

다중기준국 방식을 이용한 GPS 반송파 상대측위 정확도 향상 (Improvement of Relative Positioning Accuracy with GPS Carrier Phase Using Multi-Base Station)

  • 이재원
    • 한국측량학회지
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    • 제26권6호
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    • pp.617-624
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    • 2008
  • 일반적으로 단일기준국을 이용하는 실시간 동적(Real Time Kinematic) GPS는 무선모뎀을 통해 반송파 오차보정량을 이동국으로 전송하여 현장에서 바로 고정밀의 위치를 결정할 수 있다. 하지만 단일기준국 방식은 각 위성마다의 시간대별 반송파 측정값을 지속적으로 제공해야 하며, 전송장해와 모뎀간의 거리 따른 증가 등으로 위치정확도가 저하되는 단점이 있다. 본 논문은 이러한 단점을 보완하기 위해 3대 이상의 다중기준국을 활용한 네트워크 기반의 GPS 반송파 상대측위기술을 구현하였으며, Visual C++로 제작된 실시간 모니터링 프로그램을 이용하여 RTK 네트워크를 구성하였다. 네트워크 구성에서 얻어지는 다중기준국의 오차보정량 가운데 최적의 값을 자동으로 선택하고, GPS buoy 이동국에 적용하여 해수면 관측을 수행하였으며, 이를 통해 얻어진 해수면 변동량을 단일기준국과 비교, 분석하여 결과를 도출하였다.

Multi-constellation Local-area Differential GNSS for Unmanned Explorations in the Polar Regions

  • Kim, Dongwoo;Kim, Minchan;Lee, Jinsil;Lee, Jiyun
    • Journal of Positioning, Navigation, and Timing
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    • 제8권2호
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    • pp.79-85
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    • 2019
  • The mission tasks of polar exploration utilizing unmanned systems such as glacier monitoring, ecosystem research, and inland exploration have been expanded. To facilitate unmanned exploration mission tasks, precise and robust navigation systems are required. However, limitations on the utilization of satellite navigation system are present due to satellite orbital characteristics at the polar region located in a high latitude. The orbital inclination of global positioning system (GPS), which was developed to be utilized in mid-latitude sites, was designed at $55^{\circ}$. This means that as the user is located in higher latitudes, the satellite visibility and vertical precision become worse. In addition, the use of satellite-based wide-area augmentation system (SBAS) is also limited in higher latitude regions than the maximum latitude of signal reception by stationary satellites, which is $70^{\circ}$. This study proposes a local-area augmentation system that additionally utilizes Global Navigation Satellite System (GLONASS) considering satellite navigation system environment in Polar Regions. The orbital inclination of GLONASS is $64.8^{\circ}$, which is suitable in order to ensure satellite visibility in high-latitude regions. In contrast, GLONASS has different system operation elements such as configuration elements of navigation message and update cycle and has a statistically different signal error level around 4 m, which is larger than that of GPS. Thus, such system characteristics must be taken into consideration to ensure data integrity and monitor GLONASS signal fault. This study took GLONASS system characteristics and performance into consideration to improve previously developed fault detection algorithm in the local-area augmentation system based on GPS. In addition, real GNSS observation data were acquired from the receivers installed at the Antarctic King Sejong Station to analyze positioning accuracy and calculate test statistics of the fault monitors. Finally, this study analyzed the satellite visibility of GPS/GLONASS-based local-area augmentation system in Polar Regions and conducted performance evaluations through simulations.

GPS 상시관측점을 이용한 차량항법 정확도 평가 (Accuracy Estimation of Car Navigation using GPS CORS)

  • 박운용;김희규;이재원;신상철
    • 한국측량학회:학술대회논문집
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    • 한국측량학회 2004년도 춘계학술발표회논문집
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    • pp.103-106
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    • 2004
  • Nowadays it is necessary to manage the road system effectively because of the explosive increment of vehicle and goods. To resolve this problems through the fast upgrade of information about position and time of moving vehicle, the combined navigation system using GPS and complementary navigation system, i.e. INS, DR, etc. has been used. Although GPS is popular for the vehicle navigation system, this is not useful for the kinematic positioning of the vehicles in the urban canyon because of its few satellites. Therefore, this study deals with the kinematic positioning of the vehicles with GPS CORS to GPS navigation. For this, first the static single point positioning of GPS and GPS for reference station was performed to evaluate the accuracy of GPS positioning. Next, in the post-processed, the DGPS (Differential GPS) was performed for the kinematic positioning of the vehicles. So, it is expected that GPS CORS can be applicable to the control of traffic flow, the effective management of road system, and the development of ITS and it is regarded that the combined navigation system of vehicles with GPS, INS, and DR, etc. should be studied constantly.

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Development of a CSGPS/DR Integrated System for High-precision Trajectory Estimation for the Purpose of Vehicle Navigation

  • Yoo, Sang-Hoon;Lim, Jeong-Min;Oh, Jeong-Hun;Kim, Ho-Beom;Lee, Kwang-Eog;Sung, Tae-Kyung
    • Journal of Positioning, Navigation, and Timing
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    • 제4권3호
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    • pp.123-130
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    • 2015
  • In this study, a carrier smoothed global positioning system / dead reckoning (CSGPS/DR) integrated system for high-precision trajectory estimation for the purpose of vehicle navigation was proposed. Existing code-based GPS has a low position accuracy, and carrier-phase differential global positioning system (CPDGPS) has a long waiting time for high-precision positioning and has a problem of high cost due to the establishment of infrastructure. To resolve this, the continuity of a trajectory was guaranteed by integrating CSGPS and DR. The results of the experiment indicated that the trajectory precision of the code-based GPS showed an error performance of more than 30cm, while that of the CSGPS/DR integrated system showed an error performance of less than 10cm. Based on this, it was found that the trajectory precision of the proposed CSGPS/DR integrated system is superior to that of the code-based GPS.