• 제목/요약/키워드: Spatial accuracy

검색결과 2,033건 처리시간 0.032초

Comparison of Hyperspectral and Multispectral Sensor Data for Land Use Classification

  • Kim, Dae-Sung;Han, Dong-Yeob;Yun, Ki;Kim, Yong-Il
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2002년도 Proceedings of International Symposium on Remote Sensing
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    • pp.388-393
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    • 2002
  • Remote sensing data is collected and analyzed to enhance understanding of the terrestrial surface. Since Landsat satellite was launched in 1972, many researches using multispectral data has been achieved. Recently, with the availability of airborne and satellite hyperspectral data, the study on hyperspectral data are being increased. It is known that as the number of spectral bands of high-spectral resolution data increases, the ability to detect more detailed cases should also increase, and the classification accuracy should increase as well. In this paper, we classified the hyperspectral and multispectral data and tested the classification accuracy. The MASTER(MODIS/ASTER Airborne Simulator, 50channels, 0.4~13$\mu$m) and Landsat TM(7channels) imagery including Yeong-Gwang area were used and we adjusted the classification items in several cases and tested their classification accuracy through statistical comparison. As a result of this study, it is shown that hyperspectral data offer more information than multispectral data.

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Keywords and Spatial Based Indexing for Searching the Things on Web

  • Faheem, Muhammad R.;Anees, Tayyaba;Hussain, Muzammil
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제16권5호
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    • pp.1489-1515
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    • 2022
  • The number of interconnected real-world devices such as sensors, actuators, and physical devices has increased with the advancement of technology. Due to this advancement, users face difficulties searching for the location of these devices, and the central issue is the findability of Things. In the WoT environment, keyword-based and geospatial searching approaches are used to locate these devices anywhere and on the web interface. A few static methods of indexing and ranking are discussed in the literature, but they are not suitable for finding devices dynamically. The authors have proposed a mechanism for dynamic and efficient searching of the devices in this paper. Indexing and ranking approaches can improve dynamic searching in different ways. The present paper has focused on indexing for improving dynamic searching and has indexed the Things Description in Solr. This paper presents the Things Description according to the model of W3C JSON-LD along with the open-access APIs. Search efficiency can be analyzed with query response timings, and the accuracy of response timings is critical for search results. Therefore, in this paper, the authors have evaluated their approach by analyzing the search query response timings and the accuracy of their search results. This study utilized different indexing approaches such as key-words-based, spatial, and hybrid. Results indicate that response time and accuracy are better with the hybrid approach than with keyword-based and spatial indexing approaches.

공간통합 모델을 적용한 암괴류 및 애추 지형 분포가능지 추출 (Extraction of Potential Area for Block Stream and Talus Using Spatial Integration Model)

  • 이성호;장동호
    • 한국지형학회지
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    • 제26권2호
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    • pp.1-14
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    • 2019
  • This study analyzed the relativity between block stream and talus distributions by employing a likelihood ratio approach. Possible distribution sites for each debris slope landform were extracted by applying a spatial integration model, in which we combined fuzzy set model, Bayesian predictive model, and logistic regression model. Moreover, to verify model performance, a success rate curve was prepared by cross-validation. The results showed that elevation, slope, curvature, topographic wetness index, geology, soil drainage, and soil depth were closely related to the debris slope landform sites. In addition, all spatial integration models displayed an accuracy of over 90%. The accuracy of the distribution potential area map of the block stream was highest in the logistic regression model (93.79%). Eventually, the accuracy of the distribution potential area map of the talus was also highest in the logistic regression model (97.02%). We expect that the present results will provide essential data and propose methodologies to improve the performance of efficient and systematic micro-landform studies. Moreover, our research will potentially help to enhance field research and topographic resource management.

Differences in the Control of Anticipation Timing Response by Spatio-temporal Constraints

  • Seok-Hwan LEE;Sangbum PARK
    • Journal of Sport and Applied Science
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    • 제7권2호
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    • pp.39-51
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    • 2023
  • Purpose: The purpose of this study was to investigate differences in the control process to satisfy spatial and temporal constraints imposed upon the anticipation timing response by analyzing the effect of spatio-temporal accuracy demands on eye movements, response accuracy, and the coupling of eye and hand movements. Research design, data, and methodology: 12 right-handed male subjects participated in the experiment and performed anticipation timing responses toward a stimulus moving at three velocities (0.53m/s, 0.66m/s, 0.88m/s) in two task constraint conditions (temporal constraint, spatial constraint). During the response, response accuracy and eye movement patterns were measured from which timing and radial errors, the latency of saccade, fixation duration of the point of gaze (POG), distance between the POG and stimulus, and spatio-temporal coupling of the POG and hand were calculated. Results: The timing and radial errors increased with increasing stimulus velocity, and the spatio-temporal constraints led to larger timing errors than the temporal constraints. The latency of saccade and the temporal coupling of eye and hand decreased with increasing stimulus velocity and were shorter and longer respectively in the spatio-temporal constraint condition than in the temporal constraint condition. The fixation duration of the POG also decreased with increasing stimulus velocity, but no difference was shown between task constraint conditions. The distance between the POG and stimulus increased with increasing stimulus velocity and was longer in the temporal constraint condition compared to the spatio-temporal constraint condition. The spatial coupling of eye and hand was larger with the velocity 0.88m/s than those in other velocity conditions. Conclusions: These results suggest that differences in eye movement patterns and spatio-temporal couplings of stimulus, eye and hand by task constraints are closely related with the accuracy of anticipation timing responses, and the spatial constraints imposed may decrease the temporal accuracy of response by increasing the complexity of perception-action coupling.

수치지도 일반화 위치정확도 품질평가 (The Positional Accuracy Quality Assessment of Digital Map Generalization)

  • 박경식;임인섭;최석근
    • 한국측량학회지
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    • 제19권2호
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    • pp.173-181
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    • 2001
  • 수치지도 일반화 과정을 통해 생성된 수치지도의 공간데이터에 관한 품질을 평가하는 것은 매우 중요하다. 본 연구에서는, 공간데이터 품질유지 측면에서, 변환된 수치지도 데이터가 해당 축척의 수치지도 규정 및 정확도에 위배되지 않도록 하기 위해 이론적 기대정확도의 허용범위를 살펴보고 공간데이터의 품질 평가 기준을 정립하였다. 그리고, 대축척 수치지도를 소축척 수치지도로 변환할 때, 단순화, 완만화, 정리 등과 같은 처리과정을 통해 복잡성을 감소시키게 되면 공간적인 위치변화는 항상 발생하게 될 것이다. 따라서, 각 지점의 변환된 위치에 관한 공간정확도를 분석하는 것은 매우 힘든 일이기 때문에 평가방법으로서 버퍼링기법을 이용하였다. 비록 축척 1/1,000 및 l/5,000에 대한 일반적인 위치오차의 허용범위는 관련법규를 기준으로 결정되었다 하더라도, 각 처리요소에 적용된 알고리즘들은 서로 다른 특성을 가지고 있기 때문에, 알고리즘에 따라 적절한 매개변수와 허용오차를 결정하지 않는다면, 일반화 처리후의 허용범위를 만족할 수 없을 것이다. 허용범위에 근거를 둔 각 알고리즘의 변수에 관한 본 연구에서의 실험결과는 단순화 및 위치오차의 매개변수가 각각 0.2617 m, 0.4617 m를 나타내고 있었다.

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Improving Urban Vegetation Classification by Including Height Information Derived from High-Spatial Resolution Stereo Imagery

  • Myeong, Soo-Jeong
    • 대한원격탐사학회지
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    • 제21권5호
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    • pp.383-392
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    • 2005
  • Vegetation classes, especially grass and tree classes, are often confused in classification when conventional spectral pattern recognition techniques are used to classify urban areas. This paper reports on a study to improve the classification results by using an automated process of considering height information in separating urban vegetation classes, specifically tree and grass, using three-band, high-spatial resolution, digital aerial imagery. Height information was derived photogrammetrically from stereo pair imagery using cross correlation image matching to estimate differential parallax for vegetation pixels. A threshold value of differential parallax was used to assess whether the original class was correct. The average increase in overall accuracy for three test stereo pairs was $7.8\%$, and detailed examination showed that pixels reclassified as grass improved the overall accuracy more than pixels reclassified as tree. Visual examination and statistical accuracy assessment of four test areas showed improvement in vegetation classification with the increase in accuracy ranging from $3.7\%\;to\;18.1\%$. Vegetation classification can, in fact, be improved by adding height information to the classification procedure.

Spatiotemporal Location Fingerprint Generation Using Extended Signal Propagation Model

  • Kim, Hee-Sung;Li, Binghao;Choi, Wan-Sik;Sung, Sang-Kyung;Lee, Hyung-Keun
    • Journal of Electrical Engineering and Technology
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    • 제7권5호
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    • pp.789-796
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    • 2012
  • Fingerprinting is a widely used positioning technology for received signal strength (RSS) based wireless local area network (WLAN) positioning system. Though spatial RSS variation is the key factor of the positioning technology, temporal RSS variation needs to be considered for more accuracy. To deal with the spatial and temporal RSS characteristics within a unified framework, this paper proposes an extended signal propagation mode (ESPM) and a fingerprint generation method. The proposed spatiotemporal fingerprint generation method consists of two algorithms running in parallel; Kalman filtering at several measurement-sampling locations and Kriging to generate location fingerprints at dense reference locations. The two different algorithms are connected by the extended signal propagation model which describes the spatial and temporal measurement characteristics in one frame. An experiment demonstrates that the proposed method provides an improved positioning accuracy.

GeoSensor 환경에서 공간 질의 정확도 향상을 위한 선-필터링을 이용한 후-부하제한 기법 (Pre-Filtering based Post-Load Shedding Method for Improving Spatial Queries Accuracy in GeoSensor Environment)

  • 김호;백성하;이동욱;김경배;배해영
    • 한국공간정보시스템학회 논문지
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    • 제12권1호
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    • pp.18-27
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    • 2010
  • u-GIS환경에서 GeoSensor를 기반으로 하는 GeoSensor 환경은 다양한 센서들로부터 수집한 동적인 데이터와 기존 GIS인 정적인 지형지물 정보의 융합을 요구한다. 이 환경의 핵심인 GeoSensor는 넓은 지역에 산발적으로 분포하며, 다양한 크기의 데이터를 끊임없이 수집한다. 따라서 Data Stream Management System(DSMS)은 제한된 메모리로 인하여 저장 공간을 초과하는 문제가 발생한다. 이를 해결하기 위해 다양한 부하제한 기법들이 활발히 연구되고 있다. 부하제한 기법에는 크게 랜덤부하제한 기법과 의미적부하제한 기법, 샘플링 기법으로 분류된다. 랜덤부하제한 기법은 무작위로 데이터를 선택하여 삭제하고, 의미적부하제한 기법은 데이터의 우선순위를 부여하여 우선순위가 낮은 데이터부터 삭제한다. 샘플링 기법은 통계적인 연산을 이용하여 샘플링 비율을 산정하고 이를 토대로 부하를 제한한다. 그러나 기존 기법들은 공간적 특성을 전혀 고려하지 않기 때문에 공간 질의의 정확도를 감소시키는 문제를 갖는다. 본 논문은 GeoSensor 환경에서 DSMS에 발생하는 과부하 발생을 제한하고 공간 질의의 정확도를 향상시키기 위해 선-필터링을 이용한 후-부하제한 기법을 제안한다. 본 기법은 선-필터링을 통하여 스트림 큐에 불필요하게 가중되는 부하를 1차적으로 제한하며, 과부하 발생 시 공간 질의 결과 정확도를 보장하기 위하여 공간 중요도와 데이터 중요도를 고려하여 후-부하제한을 수행한다. 이 기법을 이용하여 부하제한 수행 횟수를 효과적으로 감소시켰고, 공간 질의의 정확도를 향상시켰다.

도로정보를 활용한 UAV 기반 3D 포인트 클라우드 공간객체의 위치정확도 향상 방안 (A Study on the Improvement of UAV based 3D Point Cloud Spatial Object Location Accuracy using Road Information)

  • 이재희;강지훈;이세원
    • 대한원격탐사학회지
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    • 제35권5_1호
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    • pp.705-714
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    • 2019
  • 고해상도 UAV 영상의 다양한 활용을 위해서는 정밀한 위치보정이 필요하다. 이를 위해 지상기준점을 선정하는 것이 일반적이지만 긴급상황이나 지상기준점 선정이 어려운 경우에는 지상기준점없이 촬영을 수행해야 한다. 본연구에서는 지상기준점 없이 생성된 UAV 기반 3차원 point cloud 데이터의 x, y 좌표에 대한 위치 정확도 향상방법을 제안하였다. 위치정확도 향상을 위한 기준 데이터로 공공데이터포털에서 제공하는 벡터파일 중 도로 정보를 이용하였다. 2차원 정사보정 영상의 기하보정을 먼저 수행하고, 이 과정에서 산출된 변환행렬을 3차원 point cloud에 적용하는 방법을 채택하였다. 보정 전 약 34.54 m의 직선 거리 차이가 보정 후 약 1.21 m 로 감소하였다. 지상기준점 선정없이 획득된 UAV영상의 2차원 및 3차원 영상의 위치정확도 향상이 가능함을 확인함에 따라 타 공간정보 데이터와의 연계 및 호환 등이 가능해져 point cloud 데이터에서 획득된 3차원 공간 객체의 활용 범위의 확대를 기대한다.

Feasibility of Using an Automatic Lens Distortion Correction (ALDC) Camera in a Photogrammetric UAV System

  • Jeong, Hohyun;Ahn, Hoyong;Park, Jinwoo;Kim, Hyungwoo;Kim, Sangseok;Lee, Yangwon;Choi, Chuluong
    • 한국측량학회지
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    • 제33권6호
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    • pp.475-483
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    • 2015
  • This study examined the feasibility of using an automatic lens distortion correction (ALDC) camera as the payload for a photogrammetric unmanned aerial vehicle (UAV) system. First, lens distortion for the interior orientation (IO) parameters was estimated. Although previous studies have largely ignored decentering distortion, this study revealed that more than 50% of the distortion of the ALDC camera was caused by decentering distortion. Second, we compared the accuracy of bundle adjustment for camera calibration using three image types: raw imagery without the ALDC option; imagery corrected using lens profiles; and imagery with the ALDC option. The results of image triangulation, the digital terrain model (DTM), and the orthoimage using the IO parameters for the ALDC camera were similar to or slightly better than the results using self-calibration. These results confirm that the ALDC camera can be used in a photogrammetric UAV system using only self-calibration.