• Title/Summary/Keyword: 방향 탐지

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A Study on the Direction finding of Drones Using Apollonius Circle Technique (Apollonius Circle 기법을 활용한 드론 방향탐지 연구)

  • Choi, Hong-Rak;Jeong, Won-Ho;Kim, Kyung-Seok
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.18 no.3
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    • pp.83-92
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    • 2018
  • This paper uses the Apollonius Circle technique to estimate the position of a target that generates a specific signal by using a drone, which is rapidly becoming a rapidly expanding industry. The existing direction finding method is performed through the vehicle on the ground or installed the antenna at a high position to detect the position of the target. However, the conventional direction finding method is difficult to configure the reception environment of the LOS signal, It is difficult. However, the direction finding using the drone is easy to construct and measure the LOS signal receiving environment using the drone flying at high altitude. In this study, we use the 3D 800MHz Path-Loss Model to reconstruct the signal by using the measurement data of the ground direction finding, reconstruct the signal by using the 3-D 800MHz Path-Loss Model, and use the Apollonius Circle method to estimate the position of the target. A simulation was performed to estimate the position of the target. Simulation was performed to determine the target position estimation performance by configuring the ground direction finding and the dron direction finding.

A Technology of Microwave Direction Finding with Circular Array Combination Method (원형 배열 복합 방식을 이용한 초고주파 방향 탐지 기술)

  • Lim Joong-Soo;Jung Chul-Gu;Chae Gyoo-Soo
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.16 no.6 s.97
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    • pp.549-555
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    • 2005
  • This paper describes a microwave direction finding technology which is used for RF signal acquisition and monitoring systems. This paper suggests a direction finding method which use a combination of the amplitude-comparison technology and the phase-comparison technology. The amplitude-comparison technology uses the amplitude difference of the RF signals received from the array antennas of direction finding system and removes the ambiguity of wave incident bearing. The phase-comparison technology uses the phase difference of the RF signals received from the same nay antennas and makes a good direction finding accuracy. The suggested direction finding technology is designed to place 8 array antennas in a $45^{\circ}$ distance around the circle for $360^{\circ}$ azimuth angle. Also it is designed to use the phase difference of the received signals ken two nearby antennas to measure the signal incident direction accurately and to use the amplitude difference to remove the ambiguity of wave incident bearing. The simulation and measurement results are under $0.5^{\circ}$ bearing error in $2.0\~6.0$ GHz when SNR is 30 dB.

DOA Estimation of Cross-type Microphone Array Using the Quadrature Sampling Method (직교형 마이크로폰 배열에서의 4분 샘플링을 이용한 음원 도래 방향 탐지)

  • Park Soon-Jong;Lee Mi-Hyun;Chun Byuung-Doo;Kim Moo-Joon;Kim Chun-Duck
    • Proceedings of the Acoustical Society of Korea Conference
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    • autumn
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    • pp.535-538
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    • 2004
  • 마이크로폰을 이용하여 평면상에 직교형으로 배열된 음인 도래 방향 탐지 시스템을 구성하고, A/D 변환에 있어 일반저인 샘플링 기법과 spilt-beam형 어군 탐지 시스템에 적용된 4분 샘플링 기법을 이용하여 공기중에서의 음원의 토래 방향 탐지 성능에 관한 실험을 수행하였다. 일반 실내에서 단일 주파수의 음원에 대하여 직교형 마이크로폰 배열을 사용한 음인 토래 방향 탐지 시스템 및 4분 샘플링 기법의 적용이 유용함을 확인하였다.

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A Study on Direction Detection in Location-based System without Gyro Sensor (자이로 센서 없는 위치기반 시스템에서 방향 탐지에 관한 연구)

  • Youm, Dong-Hyun
    • Proceedings of the Korean Society of Computer Information Conference
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    • 2018.07a
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    • pp.503-504
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    • 2018
  • 전 세계 스마트폰 보급량은 지속적으로 증가하고 있으며 고급형 스마트폰 보다는 센서를 제거해 원가를 절감한 보급형 스마트폰이 더 많이 보급될 것으로 예측되고 있다. 본 논문에서는 자이로 센서가 없을 때의 위치 기반의 방향 탐지 방법으로써 위치를 기반으로 한 벡터를 이용하여 방향을 탐지하고, 높이 축에 대한 제한, 위치 변화 없는 회전에 대한 제한 등의 제약들을 개선할 후속 연구의 방향성을 제시한다.

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Data Convergence of circular Array Correlative Interferometer Direction Finding with 7-Antenna (7-안테나로 구성된 원형배열 상관형 위상비교 방향탐지의 데이터 융합)

  • Lim, Joong-Soo
    • Journal of the Korea Convergence Society
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    • v.8 no.1
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    • pp.1-6
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    • 2017
  • In this paper, we propose a new method for a correlative phase comparison direction finding(DF) which detects the arrival direction of radio waves by data fusing the calculated phase difference and the measured phase difference between the antennas when the radio waves are incident on the circular array antenna composed of 7 antennas respectively. The correlation type phase comparison method uses a uniform circular array(UCA) and a linear array method. The phase difference data calculated formally and the phase difference data measured in the test environment are fused with a correlation function, therefore, it is superior to the currently used phase comparison direction detection method. When the signal-to-noise ratio (SNR) of the received signal is 20dB and the inter-antenna distance to the wavelength of the received signal($L/{\lambda}$) is 0.5, the accuracy of the correlative DF is $1.7^{\circ}$ while measurement phase comparison's is larger than $2.5^{\circ}$, It can be used for electromagnetic signal monitoring and military direction detection.

A Simulator for Analyzing the Accuracy of Correlative Interferometer Direction Finder (상관형 위상비교 방향탐지장치의 정확도 분석 시뮬레이터)

  • Lim, Joong-Soo;Kim, Young-Ho;Kim, Kichul
    • Journal of Convergence for Information Technology
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    • v.7 no.2
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    • pp.53-58
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    • 2017
  • This paper describes the design of a simulator for analyzing the accuracy of a correlative interferometer(CI) direction finder. CI direction finder is robust to noise, so it is often used in aircraft or ships where complex antenna installation is required, and the direction finding accuracy is very high. When the radio wave is incident at a specific azimuth angle, the phase difference calculated in a noiseless environment and the phase difference measured in a real environment with noise are fused to estimate the largest correlation coefficient as the azimuth angle of the radio wave. The simulator receives RF frequency, the number of antennas, the antenna coordinates, the transmission signal intensity, the bandwidth of the receiver, the gain and the payload effect, and calculates the direction finding accuracy of 0-360 degrees azimuth and 0-60 degree elevation with 0.5 degree. accuracy.

Direction Finding Method of the Uniform Circular Array Antenna Using the Pattern of Phase Differences (원형배열 안테나의 위상차 패턴을 이용한 방향탐지 기법)

  • Lim, Joong-Soo
    • Journal of the Korea Convergence Society
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    • v.10 no.1
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    • pp.1-6
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    • 2019
  • In this paper, we have studied a direction finding method of the radio signal by comparing the phase difference and its pattern from the uniform circular array antenna. In the phase comparison direction finding, if the length of the antenna baseline is longer than 0.5 wavelength of the incident signal, azimuth ambiguity occurs in which two or more azimuth angles are calculated in the same phase difference. The azimuthal ambiguity is removed by fusing the phase difference of the 5 antennas. The developed ambiguity elimination technology reduces the azimuth error where the antenna baseline is shorter than 1.236 wavelength in the uniform circular array with five antennas. This algorithm is very useful for the design of direction finder of an electronic information system.

A Study on the Technique of Efficient TDOA Technique Direction Finding Using Drones (드론을 이용한 효율적인 TDOA 방향탐지 기법 연구)

  • Choi, Hong-Rak;Hah, Tae-Yeong;Kim, Young Won;Kim, Kyung-Seok
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.18 no.4
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    • pp.97-104
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    • 2018
  • In the conventional direction finding, the antenna is installed at a high position on the ground to detect the position of the target with the environment of the LOS(Line of Sight) as much as the signal receiving environment. However, in order to configure such environment, high cost and installation time were required. In this paper, we use TDOA(Time Difference of Arrival) technique to utilize drones in direction finding, so that four drones can be used for directions finding simulation. Simulations based on drone and TDOA direction finding were constructed using additional signal processing Taylor series and Exact Interactive Algorithm. In the simulation, the receiving power is defined by using the 800MHz path-loss model using the GPS information of the ground direction detection, and the position estimation performance is analyzed when the TDOA technique, the Taylor series, and the Exact Interactive Alogrithm are applied.

Study on the direction detection based on audible and non-audible signals using smart devices (스마트 디바이스를 활용한 가청, 비가청 신호 기반 피난방향 탐지 기법 연구)

  • Hyun, Byeongchun;Yun, Younguk;Park, Yohan;Kim, Youngok
    • Journal of the Society of Disaster Information
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    • v.13 no.1
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    • pp.51-58
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    • 2017
  • This paper proposes a direction estimation scheme with directional speaker and smart device for evacuation guidance. When there is worst disaster environment filled with smoke and noisy sound, evacuee can not get any information about evacuation routes. The proposed scheme can be used for detecting evacuation routes with audible and inaudible signal from directional speaker. At this point, evacuee can get evacuee guidance by using smartphone application that the proposed scheme is applied. The performance of the proposed scheme is evaluated by experiment with three different types of smart devices in large indoor environment. The purpose of experiment is to detect the direction of transmitted signal from directional speaker. Therefore, The experiment is conducted by analyzing the strength of transmitted signal by distance. The experimental results show that even if the smart device is located up to 20m away from the speaker, it is possible to detect the sending direction of the signal. We confirmed the possibility of the proposed technology in 8kHz and 20kHz signal detection by smart device.

3-D Optimal Disposition of Direction Finders (방향탐지장비의 삼차원 최적 배치)

  • Lee, Ho-Joo;Kim, Chang-Geun;Kang, Sung-Su
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.15 no.4
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    • pp.765-772
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    • 2011
  • In this paper, a simulation-based method is presented to dispose direction finders in three dimensional space for locating targets using the directional data. A direction finder(DF) is a military weapon that is used to find locations of targets that emit radio frequencies by operating two or more DFs simultaneously. If one or more DFs are operated in the air, the accuracy of location estimation can be enhanced by disposing them in a better configuration. By extending the line method, which is a well-known algorithm for 2-D location estimation, into 3-D space, the problem of 3-D location estimation is defined as an nonlinear programming form and solved analytically. Then the optimal disposition of DFs is considered with the presented method in which methods of simulation and search technique are combined. With the suggested algorithm for 3-D disposition of DFs, regions in which targets exist can be effectively covered so that the operation effect of DF be increased.