• 제목/요약/키워드: Error Augmentation

검색결과 78건 처리시간 0.019초

Logistic Regression Method in Interval-Censored Data

  • Yun, Eun-Young;Kim, Jin-Mi;Ki, Choong-Rak
    • 응용통계연구
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    • 제24권5호
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    • pp.871-881
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    • 2011
  • In this paper we propose a logistic regression method to estimate the survival function and the median survival time in interval-censored data. The proposed method is motivated by the data augmentation technique with no sacrifice in augmenting data. In addition, we develop a cross validation criterion to determine the size of data augmentation. We compare the proposed estimator with other existing methods such as the parametric method, the single point imputation method, and the nonparametric maximum likelihood estimator through extensive numerical studies to show that the proposed estimator performs better than others in the sense of the mean squared error. An illustrative example based on a real data set is given.

Augmentation of Hidden Markov Chain for Complex Sequential Data in Context

  • Sin, Bong-Kee
    • Journal of Multimedia Information System
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    • 제8권1호
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    • pp.31-34
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    • 2021
  • The classical HMM is defined by a parameter triple �� = (��, A, B), where each parameter represents a collection of probability distributions: initial state, state transition and output distributions in order. This paper proposes a new stationary parameter e = (e1, e2, …, eN) where N is the number of states and et = P(|xt = i, y) for describing how an input pattern y ends in state xt = i at time t followed by nothing. It is often said that all is well that ends well. We argue here that all should end well. The paper sets the framework for the theory and presents an efficient inference and training algorithms based on dynamic programming and expectation-maximization. The proposed model is applicable to analyzing any sequential data with two or more finite segmental patterns are concatenated, each forming a context to its neighbors. Experiments on online Hangul handwriting characters have proven the effect of the proposed augmentation in terms of highly intuitive segmentation as well as recognition performance and 13.2% error rate reduction.

위성기반 보강항법시스템 기술 동향 (Technology Trends of Satellite Based Augmentation Systems)

  • 김정래;김용래;김종윤
    • Journal of Positioning, Navigation, and Timing
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    • 제13권1호
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    • pp.25-34
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    • 2024
  • The Satellite Based Augmentation System (SBAS) improves the accuracy and reliability of user positioning by transmitting the error correction and integrity information of the global navigation satellite system signal from geostationary satellites in real time. For this reason, SBAS was designed for aircraft operations and approach procedures and is now in operational or development stages in many countries. Time has passed since the construction of SBAS and many changes have occurred in the composition of the monitoring stations and the geostationary satellites. These changes have been investigated and the current operation and development status of SBAS globally are surveyed. The development and test schedules for the transition to dual frequency multi-constellation, an important topic in SBAS, are discussed.

Multipath Error Analysis and Scenario Generation for Verifying KRS Environment

  • Cho, Sunglyong;Choi, Heonho;Lee, Byungseok;Nam, Giwook
    • Journal of Positioning, Navigation, and Timing
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    • 제9권2호
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    • pp.71-77
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    • 2020
  • KRS which is subsystem of Korea Augmentation Satellite System (KASS) performs a role of collecting and monitoring GPS signals. In order to generate the accurate correction message, the site which meets the requirements should be selected and verification to meet each requirement should be accompanied. When the sites are selected, the environmental considerations are EMI, clear horizon (CH) and multipath. Of these, EMI and CH can be checked for satisfaction by instrumentation, but multipath error is difficult to predict. Therefore, multipath error analysis for the installation position of actual antenna at each KRS site should be preceded, and multipath scenario should be generated for each location to analyze the effects of the resulting system performance. In this paper, based on satellite signals collected from each KRS sites, the method for analyzing multipath error in each KRS sites is described, and the multipath error is analyzed. Also to perform an analysis of the effects on system performance due to multipath error, multipath error modeling is performed for the generation of simulation scenarios.

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.

암호화폐 수익률 예측력 향상을 위한 요인 강화 (Factor augmentation for cryptocurrency return forecasting)

  • 염예빈;한유진;이재현;박세령;이정우;백창룡
    • 응용통계연구
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    • 제35권2호
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    • pp.189-201
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    • 2022
  • 본 연구는 외부 요인을 모형에 강화시켜 암호화폐 수익률 예측력을 향상시키는 방법에 대해서 다루고 있다. 고려한 요인으로는 크게 나누어 금융 경제적 요인 및 심리적 요인을 고려하였다. 먼저 금융 경제적 요인을 반용하기 위해서 주성분 요인을 사용하여 수 많은 변수를 차원축소를 통해서 모형에 반영하였다. 또한 심리적 요인을 위해서는 뉴스 기사 데이터를 활용하여 산출해낸 감성지수를 활용하였다. 이러한 요인들은 충격반응함수 분석을 통해서 요인들의 의미와 영향력을 시각화하였다. 또한 전통적인 ARIMAX 뿐 만 아니라 랜덤포레스트 및 딥러닝 모형을 활용하여 비선형성을 반영하였다. 그 결과 요인 강화가 암호화폐 수익률 예측력을 향상시킴을 실증분석을 통해 밝혔으며 그 중에서 딥러닝 모형인 GRU가 가장 좋은 예측 성능을 보임을 관찰하였다.

한반도 지역 SBAS 대류층 지연 보정 모델의 정확도 검증 (Accuracy Verification of the SBAS Tropospheric Delay Correction Model for the Korean Region)

  • 김동욱;한덕화;기창돈;이철수;이충희
    • 한국항행학회논문지
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    • 제20권1호
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    • pp.23-28
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    • 2016
  • 본 논문에서는 한반도 지역에서 SBAS (satellite based augmentation system) 대류층 지연 보정 모델의 정확도 성능을 검증하였다. 정확도 분석을 위한 대류층 지연량 참값으로 IGS (International GNSS Service)에서 제공하는 정밀 대류층 천정 지연량인 ZPD(zenith path delay) 데이터를 활용하였다. 그리고 대표적인 대류층 지연 모델인 Saastamoinen 모델 및 Hopfield 모델과 성능을 비교하였다. 그 결과 SBAS 대류층 지연 보정 모델의 잔여 오차는 약 50 mm 수준으로, Saastamoinen 모델 및 Hopfield 모델보다 성능이 떨어졌다. 이 대류층 지연 모델에 의한 잔여오차는 SBAS 정확도 요구조건에는 문제가 없지만, 사용자 측위 성능에는 영향을 미칠 수 있다. 만약 한반도 기상 환경에 적합하도록 SBAS 대류층 보정 모델의 기상 파라미터를 수정한다면, 더 좋은 성능의 SBAS 서비스를 한반도에 제공할 수 있을 것으로 기대된다.

국내 GNSS 오차 성분별 공간 상관성 및 선형 모델링 특성 분석 (Analysis of Spatial Correlation and Linear Modeling of GNSS Error Components in South Korea)

  • 김성익;이예빈;조용래;차윤호;박병운;박슬기;박상현
    • Journal of Positioning, Navigation, and Timing
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    • 제13권3호
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    • pp.221-235
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    • 2024
  • Errors included in Global Navigation Satellite System (GNSS) measurements degrade the performance of user position estimation but can be mitigated by spatial correlation properties. Augmentation systems providing correction data can be broadly categorized into State Space Representation (SSR) and Observation Space Representation (OSR) methods. The satellite-based cm-level augmentation service based on the SSR broadcasts correction data via satellite signals, unlike the traditional Real-Time Kinematic (RTK) and Network RTK methods, which use OSR. To provide a large amount of correction data via the limited bandwidth of the satellite communication, efficient message structure design considering service area, correction generation, and broadcast intervals is necessary. For systematic message design, it is necessary to analyze the influence of error components included in GNSS measurements. In this study, errors in satellite orbits, satellite clocks for GPS, Galileo, BeiDou, and QZSS satellite constellations ionospheric and tropospheric delays over one year were analyzed, and their spatial decorrelations and linear modeling characteristics were examined.

KASS 위성통신시스템 개념설계 분석 (Conceptual Design Analysis of Satellite Communication System for KASS)

  • 신천식;유문희;형창희;이상욱
    • 한국항행학회논문지
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    • 제20권1호
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    • pp.8-14
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    • 2016
  • 본 논문은 한국형 위성기반보정시스템인 KASS (Korea augmentation satellite system)을 구성하는 위성통신국과 임차해 구축 예정인 2기의 정지궤도 위성이 포함된 위성통신시스템에 대한 상위개념의 설계분석 결과를 제시하였다. 위성통신국의 주요 기능인 중앙처리국으로부터의 보정정보 및 무결성 정보를 수신하여 해당 메시지에 대한 부호화, 변조 후 주파수변환 및 신호증폭에 대한 내용과 그 기능을 만족하는 설계를 위한 분석내용을 각 과정에 대한 개념, GEO 위성을 추가적인 기능인 GPS 위성 레인징 신호, GEO 레인징 신호를 사용하기 위한 GEO 위성에 대한 정밀 궤도결정기술, 그리고 GPS 위성과 GEO 위성간 시각 동기를 위한 클럭 조정에 대하여 기술하였다. 추가적으로 중계기 대역폭에 따른 GEO 위성 레인징 성능 분석결과로 SBAS 보강 서비스를 위해서는 최소한 2.2 MHz 의 GPS와 같은 레인징 서비스를 위해서는 18.5 MHz의 대역폭이 필요함을 제시하였다. 이러한 분석내용은 GEO 위성과 위성통신국의 설치장소가 최종 확정되면 최종 분석을 수행하여 KASS 위성통신시스템 설계에 반영할 예정이다.

Monitoring QZSS CLAS-based VRS-RTK Positioning Performance

  • Lim, Cheolsoon;Lee, Yebin;Cha, Yunho;Park, Byungwoon;Park, Sul Gee;Park, Sang Hyun
    • Journal of Positioning, Navigation, and Timing
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    • 제11권4호
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    • pp.251-261
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    • 2022
  • The Centimeter Level Augmentation Service (CLAS) is the Precise Point Positioning (PPP) - Real Time Kinematic (RTK) correction service utilizing the Quasi-Zenith Satellite System (QZSS) L6 (1278.65 MHz) signal to broadcast the Global Navigation Satellite System (GNSS) error corrections. Compact State-Space Representation (CSSR) corrections for mitigating GNSS measurement error sources such as satellite orbit, clock, code and phase biases, tropospheric error, ionospheric error are estimated from the ground segment of QZSS CLAS using the code and carrier-phase measurements collected in the Japan's GNSS Earth Observation Network (GEONET). Since the CLAS service begun on November 1, 2018, users with dedicated receivers can perform cm-level precise positioning using CSSR corrections. In this paper, CLAS-based VRS-RTK performance evaluation was performed using Global Positioning System (GPS) observables collected from the refence station, TSK2, located in Japan. As a result of performing GPS-only RTK positioning using the open-source software CLASLIB and RTKLIB, it took about 15 minutes to resolve the carrier-phase ambiguities, and the RTK fix rate was only about 41%. Also, the Root Mean Squares (RMS) values of position errors (fixed only) are about 4cm horizontally and 7 cm vertically.