• Title/Summary/Keyword: 전파 경로손실

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Comparison Between ITU-R Recommended Path Loss Prediction Model and Cost231-Hata Model (ITU-R 권고 전송 손실 예측 model과 Cost231-Hata model의 Parameter 비교 분석)

  • 정민석;이범선
    • Proceedings of the Korea Electromagnetic Engineering Society Conference
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    • 2000.11a
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    • pp.302-305
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    • 2000
  • 최근에 ITU-R에서 30~3,000MHz 주파수 범위에서 사용할 수 있는 포괄적인 전계 강도 커브를 제시하고 있다. ITU-R Question 중의 하나인 의제 210/3에서 요구하는 내용은 '30MHz~3GHz 대역의 육상이동과 지상방송 업무를 위한 전파전파 예측절차'이다. 이러한 의제를 WP SG3에서 연구하여 부속서 3K/TEMP/4에 정리하였다. 본 논문에서는 위 부속서 3K/TEMP/4에 나와있는 전송손실 예측 그래프의 적용범위와 적용환경을 알아보기 위해 일반적인 실험적 경로손실 예측식인 Okumura-Hata 모델 그리고 Cost231-Hata 모델과 비교 분석하였다.

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Prediction and Measurement of Propagation Path Loss in Underground Environments (지하공간에서의 전파 경로손실의 예측 및 측정)

  • 김영문;진용옥;강명구
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.7 no.4
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    • pp.736-742
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    • 2003
  • This paper presents the propagation path loss in a tunnel which is a kinds of underground environments. To predict propagation path loss more accurately, we choose a straight tunnel with rectangular cross-section. The simulated receiver powers that are using a hybrid waveguide model and a Ray-Tracing method, are compared with the measured ones as a function of distance between TX and RX antennas in tunnel. The attenuation value of regression analysis for measured power in the tunnel is 0.0238dB/m which is similar to the one of the EH1.2 mode, 0.0246dB/m in hybrid waveguide model. By comparing simulation with measurement in tunnels, it has been shown that the measured values are approximate to the simulated results of ray-tracing model. In the analysis of wide-band channel characteristics of the tunnel, the more the distance between TX and RX antennas in tunnel increases, RMS delay spread increases and coherence bandwidth decreases.

The Prediction and Analysis of the Propagation Characteristics in Indoor Environments Using the SBR/Image Method (SBR 및 영상기법을 이용한 실내 환경의 전파특성 예측과 분석)

  • 손호경;김채영;김성진
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.12 no.2
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    • pp.199-207
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    • 2001
  • In this paper, the technique of prediction and analysis on the characteristics of propagation in indoor environment is presented. This technique needs no reception sphere commonly used in 3D-ray tracing scheme, and thereby it lends us easy code realization. The validity of developed code is verified by comparing with the values of image methods and measurement. The developed technique applied to the structure of rectangular corridor with the iron door and we calculated the path loss for the variation of the iron door angle. The path loss decreased about 15 dB at the distance of30 m from the iron door and the delay spread increased approximately by four times. Based on the computation, we confirmed that indoor propagation in PCS is heavily affected by the iron door in corridor.

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Propagation Loss Measurement of Underwater Sound Wave using Narrow Band Acoustic Signal (협대역 음향신호를 이용한 수중음파의 전파손실 측정)

  • Na, Young-Nam;Shim, Tae-Bo;Choi, Jin-Hyeok;Chang, Duck-Hong;Kim, Seong-Il;Han, Jeong-Woo
    • The Journal of the Acoustical Society of Korea
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    • v.13 no.3
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    • pp.5-15
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    • 1994
  • In order to examine the propagation loss associated with water depth and bottom sediment type, an acoustic experiment was conducted in the Southeast Sea of Korea. A sound source was towed along the pre-defined tracks in about 5kts and the signal was simultaneously received at three bottom-moored hydrophones. The propagation loss of sound wave traveling along the isodepth was compared with that crossing the isodepth. The former case shows, in general, less loss than the latter. This trend is stronger as the distance between a source and a receiver increases. When sound wave propagates across the isodepth, we also find that the propagation loss is influenced by the upsloping and downslopoing conditions of wave propagtion. In general, the propagation loss under downsloping condition is smaller than that of upsloping condition, and the differences are as large as 10dB in some cases. However, little difference are found in the propagation loss depending on the bottom types : gravelly sand and sand-silt-clay. Meanwhile, the optimum propagation frequencies are found within range of 130-255Hz.

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A Study of Indoor Radio Wave Propagation using 3D Ray Tracing Method (3차원 광선추적(Ray tracing)법을 이용한 실내 전파(傳播)특성 분석)

  • Chae, Gyoo-Soo;Lim, Joong-Soo
    • Journal of Convergence Society for SMB
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    • v.4 no.2
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    • pp.7-12
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    • 2014
  • In this study, we present the investigation results using a 3D radio wave propagation simulator in indoor environments. Previous studies treat only the path loss between the transmitter and receiver in 2D geometry. We provide the simulation results of indoor propagation prediction based on various ITU-R Recommendations. Simulation results compared here indicate that 150MHz and 2GHz frequency bands give quite different characteristics in presented indoor geometry. Since the field intensity is affected by the loss at the wall, the transmitting power level is one of the key factor for receiving power.

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An Analysis on the Propagation Prediction Model of Earth-space Communication Link using Local Data (로컬 데이터를 이용한 지구-우주 통신 링크의 전파 예측 모델 분석)

  • Lee, Hwa-Choon;Kim, Woo-Su;Choi, Tae-Il;Oh, Soon-Soo
    • The Journal of the Korea institute of electronic communication sciences
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    • v.14 no.3
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    • pp.483-488
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    • 2019
  • The propagation prediction model of the earth-space communication link used as an international standard was used to calculate and analyze the total losses on the communication path. The standard definition and scope of ITU-R Rec. were analyzed for each parameter(rain, scintillation, atmospheric gas, clouds) used to calculate the total loss. The total losses were calculated using the standard model for each parameter and the statistical data provided by ITU-R, and the results were analyzed using the validation examples data. The rain losses were calculated using long-term local rainfall attenuation statistics data measured in the region, and compared with the calculation results using a rainfall map in the ITU-R Recommendation. The data of Cheollian satellites for the L-Band and Ka-Band were used to calculate the rainfall attenuation. In the range of 0.01% to 0.1%, it was found to have a greater attenuation slope when using local data than attenuation by the model of ITU-R.

Measurement and Comparative Analysis of Propagation Characteristics in 3, 6, 10, and 17 GHz in Two Different Indoor Corridors (두 가지 서로 다른 실내 복도에서 3, 6, 10, 17 GHz의 전파 특성 측정 및 비교 분석)

  • Seong-Hun Lee;Byung-Lok Cho
    • The Journal of the Korea institute of electronic communication sciences
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    • v.18 no.6
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    • pp.1031-1040
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    • 2023
  • Propagation characteristics in line-of-sight(LOS) paths in 3, 6, 10, and 17 GHz frequency bands were measured and analyzed in two different indoor corridors: second floors of Buildings D2 and E2. The measurement was designed to measure when the receiving antenna moved at 0.5 m intervals from 3 m to 30 m, while the transmission antenna was fixed. The analysis of the two indoor corridors was compared by applying basic transmission loss, root mean square (RMS) delay spread, and K-factor. For basic transmission loss, the loss coefficient of the floating intercept path loss model was higher in the indoor corridor of Building E2 than in that of Building D2. Similarly, the RMS delay spread in the time domain was greater in the indoor corridor of Building E2. However, the indoor corridor of Building D2 exhibited higher K-factor in the 3, 6, and 17 GHz bands with lower wave propagation in the 10 GHz band. Despite the 2 indoor corridors being identical, the propagation characteristics varied due to different internal structures and materials. The results provide measurement data for ITU-R Recommendations regarding various indoor environments.

Path Loss Characteristics in Subway Tunnel at 2.65GHz (지하철 터널 환경에서 2.65GHz 대역신호의 경로손실 특성)

  • Jo, Han-Shin;Kim, Do-Youn;Yook, Jong-Gwan
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.31 no.10A
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    • pp.1014-1019
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    • 2006
  • The research deals with the measurement of electromagnetic wave propagation in subway tunnels at 2.65GHz. Measurements have been conducted in 4 different types of tunnel courses, a straight tunnel, two curved tunnels, with 245m and 500m radius of curvature, and a tunnel that has both straight and curved sections. we found that the path loss exponent for the line-of-sight(LOS) region inside all the tunnels is $1.31{\sim}2.19$. The path loss exponents for LOS regions in the tunnel is lower than $(3{\sim}4)$, which corresponds to the path loss exponent factor for outdoor cellular environments. The path loss exponents of the straight tunnel, two curved tunnels with 245m and 500m radius of curvature are 1.94, 2.92, and 4.34, respectively. This indicates that a smaller radius of curvature in tunnel results in a higher path loss exponent for nonline-of-sight(NLOS) region. The path loss exponents for the NLOS region in the combined and curved tunnel, which have the same radii of cuvature, are 5.88 and 4.34, respectively. Therefore, it can be concluded that the path loss characteristics in tunnel environments are infulenced by the radii of curvature as well as the LOS distance.

A Study on Analysis of ITU-R Radiowave Propagation Algorithms for Engineering Analysis Function Improvement of Radio-Frequency Management System (ITU-R 전파전파 알고리즘 재분석을 통한 국내 환경에 적합한 전파관리시스템 기능 개선 연구)

  • 김유미;이일근;배석희
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.14 no.1
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    • pp.33-40
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    • 2003
  • Radio frequency management system(RFMS) is being operated to facilitate national spectrum management and monitoring in Korea. To improve the engineering analysis function in RFMS, criteria for the automated selection of the propagation model adequate to the radio station service environment considered are proposed. Those criteria are derived from the specified parameters obtained through the analysis of related ITU-R propagation & diffraction loss models which are to be used in RFMS. Then, using criteria acquired, computer program is made to achieve the automated selection of the most appropriate propagation algorithm, among the ones provided in RFMS, to the environment in which the engineering analysis is required. Furthermore, an illustrative example is shown with the proposals fur increasing the efficiency of the engineering analysis in RFMS.