• Title/Summary/Keyword: 표적 위치 추정

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An Efficient Algorithm for Localizing 3D Narrowband Multiple Sources (다중표적의 효과적인 3차원 위치추정 알고리듬)

  • Lee Chul-Mok;Lee Jong-Hwan;Lee Su-Hyung;Yun Kyung-Sik;Lee Kyun-Kyung
    • Proceedings of the Acoustical Society of Korea Conference
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    • spring
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    • pp.228-231
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    • 1999
  • 3차원 공간상의 표적의 위치는 방위각, 고각, 거리의 세가지요소로 나타내어 질 수 있다. 이 논문에서는 등각적 선배열 센서로 이루어진 3개의 부분센서배열을 이용한 3차원 표적의 위치추정 알고리듬을 제안하였다. 원거리 표적의 방위각 추정 알고리듬으로 근거리 표적의 방위각을 추정하면 추정된 방위각은 실제 근거리 표적의 방위각과 고각과 거리의 비선형 대수적 관계식으로 주어진다. 제안한 알고리듬은 3개의 부분센서배열에서 각각 표적을 원거리에 있다고 가정하고 원거리입체각을 추정하여 위의 대수적 관계식을 얻은 후 이들 관계식을 연립하여 실제 근거리 표적의 위치를 추정하였다. 다중표적의 경우 각각의 부분센서배열에서 추정한 원거리입체각이 어떤 표적에 대한 추정치인지 연관시켜주는 알고리듬이 필요하다. 이 논문에서는 추정한 원거리입체각의 모든 조합으로부터 3차원 MUSIC 스펙트럼값을 비교하여 그 중 표적의 개수만큼을 선별하여 다중표적의 위치를 추정하였다.

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Near-field Target Localization using Bottom-mounted Linear Sensor Array in Multipath Environment (다중경로환경에서 해저고정형 선배열센서를 이용한 근거리표적의 위치추정기법)

  • 이수형;류창수;이철목;이균경
    • Proceedings of the IEEK Conference
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    • 2000.09a
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    • pp.763-766
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    • 2000
  • 본 논문에서는 해저 고정형 선배열센서를 이용하여 다중경로 신호를 이용한 근거리표적의 위치 추정 알고리즘을 제안하였다. 다중경로를 통하여 근거리 표적의 신호가 센서에 도달하는 경우 각 신호의 원추각이 다르므로 신호들의 원추각과 시간차를 추정해서 3차원 표적의 위치를 추정할 수 있다. 원거리표적으로 가정하고 추정한 원추각과 신호들의 시간차에 대한 관계식을 유도하였으며 이들을 연립하여 표적의 위치를 추정하였다. 그러나 표적이 위치한 기하학적인 위치에 따라 신호들의 원추각이 거의 같아지는 지점이 존재한다. 이 경우 부가적인 1차원 탐색으로 표적의 위치를 추정하였다.

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Near-field Target Localization Using Bottom-mounted Linear Sensor Array in Multipath Environment (다중경로환경에서 바닥고정형 선배열센서를 이용한 근거리표적의 위치추정기법)

  • 이수형;류창수;이균경
    • The Journal of the Acoustical Society of Korea
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    • v.19 no.7
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    • pp.7-14
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    • 2000
  • In this paper, we propose a near-field target localization algorithm using a bottom-mounted linear sensor amy in a multipath environment. In a multipath environment, the conic angles of a target signals through each path are different, and the position of the target can be estimated using these conic angles and the time difference of these signals. We derive equations on the relation of time-difference of signals and conic angles estimates under the far-field assumption, and estimate the position of target by simultaneously solving these equations. For a certain geometry of a target and the sensor array, there exist cases when the conic angles are very close. In such a case, we estimate the position of the target using an additional 1-D search.

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Target Localization Using Geometry of Detected Sensors in Distributed Sensor Network (분산센서망에서 표적을 탐지한 센서의 기하학적 구조를 이용한 표적위치 추정)

  • Ryu, Chang Soo
    • Journal of the Institute of Electronics and Information Engineers
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    • v.53 no.2
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    • pp.133-140
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    • 2016
  • In active sonar field, a target detection and localization based on a distributed sensor network has been much studied for the underwater surveillance of the coast. Zhou et al. proposed a target localization method utilizing the positions of target-detected sensors in distributed sensor network which consists of detection-only sensors. In contrast with a conventional method, Zhou's method dose not require to estimate the propagation model parameters of detection signal. Also it needs the lower computational complexity, and to transmit less data between network nodes. However, it has large target localization error. So it has been modified for reducing localization error by Ryu. Modified Zhou's method has better estimation performance than Zhou's method, but still relatively large estimation error. In this paper, a target localization method based on modified Zhou's method is proposed for reducing the localization error. The proposed method utilizes the geometry of the positions of target-detected sensors and a line that represents the bearing of target, a line can be found by modified Zhou's method. This paper shows that the proposed method has better target position estimation performance than Zhou's and modified Zhou's method by computer simulations.

Target Localization for DIFAR Sonobuoy compensated Bearing Estimation and Sonobuoy Position Error (방위각 추정 및 소노부이 위치 오차를 보상한 DIFAR 소노부이의 표적 위치 추정 성능 향상 기법)

  • Gwak, Sang-Yell
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.2
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    • pp.221-228
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    • 2020
  • A sonobuoy is dropped onto the surface of water to estimate the bearing of an underwater target. A Directional Frequency Analysis and Recording (DIFAR) sonobuoy has an error in the specific angular section due to the method of estimating bearing and noise, which causes an error in target localization using multiple sonobuoys. In addition, the position of the sonobuoy continues to move, but since a sonobuoy with a GPS is intermittently arranged, it is difficult to estimate the exact position of the sonobuoy. This also causes target localization performance degradation. In this paper, we propose a technique to improve the target localization performance by compensating for bearing errors using characteristics of the DIFAR sonobuoy and multiple-sonobuoy position errors based on the intermittently arranged active sonobuoy with a GPS.

Improvement of Target Position Estimation Accuracy for UAV using Kalman Filter (칼만필터를 이용한 무인기의 표적위치 추정 정확도 개선)

  • Oh, Soo-Hun;Kim, Tae-Sik
    • Aerospace Engineering and Technology
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    • v.6 no.1
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    • pp.237-244
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    • 2007
  • Estimation of target position is one of the main functions of surveillance UAVs, and is being used to various purposes but generally noisy target position is estimated due to the existence of random measurement errors. In this report, a method of diminishing target position estimation error by calculating target position using Kalman Filtered optimum values such as position, attitude of UAV and sight vector of optical instrument, is proposed.

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A Position Estimation Using Time Delay Difference (시간 지연차를 이용한 표적의 위치 추적)

  • 윤동욱
    • Proceedings of the Acoustical Society of Korea Conference
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    • 1998.06e
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    • pp.197-200
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    • 1998
  • 본 논문에서는 기존의 방법에 의해 추정된 시간 지연의 차를 이용하여 표적의 위치를 추적하는 방법을 제시한다. 표적 위치를 추정하는 알고리즘의 전단에서 시간 지연의 차를 보정하는 과정을 수행하고, 후단에서 칼만 필터로 smoothing을 하는 방법을 제시한다. 이 방법을 사용하여 최소 2N-2개의 시간 지연 차를 이용하여 표적의 위치를 보다 정확히 추적할 수 있다.

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Multiple Target Position Tracking Algorithm for Linear Array in the Near Field (선배열 센서를 이용한 근거리 다중 표적 위치 추적 알고리즘)

  • Hwang Soo-Bok;Kim Jin-Seok;Kim Hyun-Sik;Park Myung-Ho;Nam Ki-Gon
    • The Journal of the Acoustical Society of Korea
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    • v.24 no.5
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    • pp.294-300
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    • 2005
  • Generally, traditional approaches to track the target position are to estimate ranges and bearings by 2-D MUSIC (MUltiple 519na1 Classification) method. and to associate estimates of 2-D MUSIC made at different time points with the right targets by JPDA (Joint Probabilistic Data Association) filter in the near field. However, the disadvantages of these approaches are that these have the data association Problem in tracking multiple targets. and that these require the heavy computational load in estimating a 2-D range/bearing spectrum. In case multiple targets are adjacent. the tracking performance degrades seriously because the estimate of each target's Position has a large error. In this paper, we proposed a new tracking algorithm using Position innovations extracted from the senor output covariance matrix in the near field. The proposed algorithm is demonstrated by the computer simulations dealing with the tracking of multiple closing and crossing targets.

Efficient 3-D Near-field Source Localization Algorithm Using Uniform Circular Array (환형배열센서를 이용한 근거리 표적의 효율적인 3차원 위치추정 알고리즘)

  • 이정훈;박규태;박도현;이균경
    • The Journal of the Acoustical Society of Korea
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    • v.23 no.3
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    • pp.214-220
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    • 2004
  • A computationally efficient algorithm is presented for 3-D near-field source localization using a uniform circular away (UCA). Algebraic relations are demonstrated between the incident angles (elevation angle and azimuth angle) under the far-field assumption and the actual near-field location (range. elevation angle, and azimuth angle). Using these relations as paths to follow to the peak of the 3-D MUSIC spectrum, the proposed algorithm replaces the 3-D search required in the conventional 3-D MUSIC with a 1-D path following after a 2-D initialization. thereby reducing the computational burden.

Improved Target Localization Using Line Fitting in Distributed Sensor Network of Detection-Only Sensor (탐지만 가능한 센서로 구성된 분산센서망에서 라인피팅을 이용한 표적위치 추정기법의 성능향상)

  • Ryu, Chang Soo
    • Journal of the Institute of Electronics and Information Engineers
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    • v.49 no.9
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    • pp.362-369
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    • 2012
  • Recently, a target detection based on a distributed sensor network has been much studied in active sonar. Zhou et al. proposed a target localization method using line fitting based on a distributed sensor network which consists of low complexity sensors that only report binary detection results. This method has three advantages relative to ML estimator. First, there is no need to estimate propagation model parameters. Second, the computation is simple. Third, it only use sensors with "detection", which implies less data to be collected by data processing center. However, this method has larger target localization error than the ML estimator. In this paper, a target localization method which modifies Zhou's method is proposed for reducing the localization error. The modified method shows the performance improvement that the target localization error is reduced by 40.7% to Zhou's method in the point of RMSE.