• Title/Summary/Keyword: Ray Propagation Model

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Propagation Analysis Method in using 3D Ray Tracing Model in Wireless Cell Planning Software (무선망 설계툴에서 3 차원 광선 추적법을 이용한 전파해석 방법)

  • Shin, Young-Il;Jung, Hyun-Meen;Lee, Seong-Choon
    • 한국정보통신설비학회:학술대회논문집
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    • 2007.08a
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    • pp.251-255
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    • 2007
  • In this paper, propagation analysis method in using 3D Ray Tracing propagation model in wireless cell planning is proposed. Through 3D Ray Tracing model, we can predict the distribution of propagation loss of the received signal. For correct and a low complex analysis, Quad Tree and Pre-Ordering and Hash Function algorithms are included in 3D Ray Tracing algorithm. And 3D Ray Tracing model is embodied in CellTREK that is developed by KT and used to plan Wibro system analysis. In CellTREK, propagation analysis is performed and that result is represented in 3D viewer. In numerical results, it is showed that the proposed scheme outperforms Modified HATA model when comparing with measurement data.

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Three Dimensional Ray Tracing Based Indoor Propagation Model Using Triangulated Surfaces (실내 전파 특성 계산을 위한 삼각형 모델 기반의 3차원 광선 추적법)

  • Song, Jae-Young;Lee, Haeng-Seon
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.19 no.7
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    • pp.733-740
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    • 2008
  • In this paper, an indoor propagation model based on 3d ray tracing is presented for wireless communications. In case of indoor propagation models, various radio propagation paths such as wall-transmitted wave and scattered wave from ceilings, pillars, and furnitures arises and 3-D formulation is needed. To accommodate such scatterers, objects are modeled by triangulated surfaces and ray tubes using those surfaces are introduced and efficient calculation methods using the tubes are presented.

An Analysis of Propagation Model in Half-Canyon Structure with Slope using Multi-Ray Model (경사면을 갖는 반-협곡 구조에서 다중-광선 모델을 사용한 전파 모델 해석)

  • Lee, Hwa-Choon;Choi, Tae-Il
    • The Journal of the Korea institute of electronic communication sciences
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    • v.15 no.1
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    • pp.173-178
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    • 2020
  • A multi-ray model has been used to interpret radio transmission losses in half-canyon structures with slope and to formulate a multi-ray propagation model depending on the angle of slopes. The cut-off angles for the third and fourth paths, which are the slope-sided reflection paths of the transmission and reception radio waves determined by the inclined angles of the slope, were calculated with the height and location of the transmitter and receiver. To predict transmission losses in an inclined plane environment, the embankment environment where the actual slope exists was modeled and simulated to calculate the loss of propagation transmission, and the radio wave transmission loss was confirmed by the measurement for the frequency band 1 to 6 GHz. Simulation results and measurement results showed similar trends in radio transmission loss, and radio transmission loss predictions and measurement results for various terrain information can be used in the design of radio propagation service.

Acceleration Techniques for 3D Ray Tracing for Outdoor Propagation Model (실외 전파 특성 계산을 위한 고속 3차원 광선 추적법)

  • Lee, Haeng-Seon
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.18 no.11
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    • pp.1231-1236
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    • 2007
  • In this paper, acceleration techniques for a three dimensional ray tracing method are presented. Ray tracing methods are widely adopted to obtain radio propagation channel models, however calculation times increase with the number of scatters such as buildings, hills and mountains. Various techniques are proposed in combination of ray tube concept.

3D Propagation Prediction Model for Indoor Environment (실내 환경에서의 3차원 전파예측 모델)

  • 고욱희
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.10 no.1
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    • pp.133-141
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    • 1999
  • In this paper, we present an indoor propagation prediction model which is based on a three-dimensional ray-tracing technique. In this model, instead of considering all obstacles such as furnitures and fixtures, etc., only main obstacles to the propagation such as walls, ceiling and floors are modeled as slabs with finite thickness and conductivity, and the significant phenomena of propagation are considered, so we can calculate simply and predict accurately the propagation losses. The propagating rays are considered to be reflected and transmitted specularly at the boundaries of obstacles, and diffracted at edges. The reflection and transmission losses on flat obstacles are calculated by using ray tracing method, and the diffraction losses at edges are calculated by using the uniform theory of diffraction (UTD) for finite conductivity media. The results simulated for some cases by this propagation model good agree with the measured value of pathloss.

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A 3-D Propagation Model Considering Building Transmission Loss for Indoor Wireless Communications

  • Choi, Myung-Sun;Park, Han-Kyu;Heo, Youn-Hyoung;Oh, Sang-Hoon;Myung, Noh-Hoon
    • ETRI Journal
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    • v.28 no.2
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    • pp.247-249
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    • 2006
  • In the development of a new wireless communications system, a versatile and accurate radio channel for indoor communications is needed. In particular, the investigation of radio transmission into buildings is very important. In this letter, we present an improved three-dimensional electromagnetic wave propagation prediction model for indoor wireless communications that takes into consideration building penetration loss. A ray tracing technique based on an image method is also employed in this study. Three-dimensional models can predict any complex indoor environment composed of arbitrarily shaped walls. A speed-up algorithm, which is a modified deterministic ray tube method, is also introduced for efficient prediction and computation.

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Asymmetric cosmic ray modulation of Forbush decreases related to the propagation direction of ICMEs

  • Oh, Suyeon;Park, Wooyeon;Yi, Yu
    • The Bulletin of The Korean Astronomical Society
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    • v.38 no.2
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    • pp.96.1-96.1
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    • 2013
  • A Forbush decrease(FD) is a depression of cosmic ray intensity observed by ground-based neutron monitors(NMs). The cosmic ray intensity is thought to be modulated by the heliospheric magnetic structures including the interplanetary coronal mass ejection(ICME) surrounding the Earth. The different magnitude of the decreasing in intensity at each NM was explained only by the geomagnetic cutoff rigidity of NM station. However, sometimes NMs of the almost same rigidity in northern and southern hemispheres observe the asymmetric intensity depression magnitudes of FD events. Thus, in this study we intend to see the effects on cosmic ray intensity depression rate of FD event recorded at different NMs due to different ICME propagation direction as an additional parameter in the model explaining the cosmic ray modulation. Fortunately, since 2006 the coronagraphs of twin spacecraft of the STEREO mission allow us to infer the propagation direction of ICME associated with the FD event in 3-dimension with respect to the Earth. We confirm that the asymmetric cosmic ray decreasing modulations of FD events are determined by the propagation directions of the associated ICMEs.

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Models and Charcteristics of Multipath Propagation on Mobile Radio in an Urban Area (도시내 이동무선에서의 다중파전파전파의 특성 및 모델에 관한 연구)

  • 하덕호
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.14 no.4
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    • pp.293-306
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    • 1989
  • In this paper, the models and characteristics of multipath propagation in an urban environment are described. Three propagation models(a random model, a ray model and a method of estimating time delay is proposed based on the envelope correlation between two radio frequencies. It is shown on the basis of laboratory simulation and field tests that the simple two-ray model is an adequate model for the fundamental study of the multipath propagation characteristic of the mobile radiowave and the estimating time delays of multipath-propagated waves in an urban area.

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Impacts of Radio Propagation Model on Mobile Ad-hoc Network (MANET) Performance in Group Mobility Environments

  • Yeo, In-ho;Yang, Hyo-sik;Rhee, JongMyung
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.3 no.3
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    • pp.62-72
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    • 2010
  • As the applications for Mobile Ad-hoc NETworks (MANETs) have varied, performance analysis has become one of the main research areas. They commonly offer only simple radio propagation models that neglect obstacles of a propagation environment. The radio wave propagation model has a strong impact on the results of the simulation run. In this paper we present the new experimental results of the impacts of the various propagation models on MANETs' performance. Intensive simulations have been presented using the group mobility which models typical ad-hoc situations such as military movements or disaster recovery activities under the supervision of a group leader. Comparisons of conventional simple models with more complicated models, i.e., shadowing, Raleigh, and Ricean models, show that, in spite of the models' popularity, the free space and two-ray ground models are too optimistic in describing real ad-hoc group mobility situations.

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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.