Layer et al., 1997 - Google Patents
Ray optical approach for a wideband indoor wave propagation model with moving receiverLayer et al., 1997
- Document ID
- 13913505267116330037
- Author
- Layer F
- Kattenbach R
- Fruchting H
- Publication year
- Publication venue
- Proceedings of 8th International Symposium on Personal, Indoor and Mobile Radio Communications-PIMRC'97
External Links
Snippet
For investigations on channel characteristics in a deterministic indoor environment, a ray- tracing-based wideband wave propagation model with moving receiver is proposed. Considering multiple reflections and transmissions to be basic propagation effects inside …
- 230000003287 optical 0 title description 3
Classifications
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01S—RADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
- G01S5/00—Position-fixing by co-ordinating two or more direction or position line determinations; Position-fixing by co-ordinating two or more distance determinations
- G01S5/02—Position-fixing by co-ordinating two or more direction or position line determinations; Position-fixing by co-ordinating two or more distance determinations using radio waves
-
- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R29/00—Arrangements for measuring or indicating electric quantities not covered by groups G01R19/00 - G01R27/00
- G01R29/08—Measuring electromagnetic field characteristics
- G01R29/0807—Measuring electromagnetic field characteristics characterised by the application
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Athanasiadou et al. | A novel 3-D indoor ray-tracing propagation model: The path generator and evaluation of narrow-band and wide-band predictions | |
Lawton et al. | The application of a deterministic ray launching algorithm for the prediction of radio channel characteristics in small-cell environments | |
Valenzuela | A ray tracing approach to predicting indoor wireless transmission | |
Hosseinzadeh et al. | Empirical propagation performance evaluation of LoRa for indoor environment | |
Athanasiadou et al. | A microcellular ray-tracing propagation model and evaluation of its narrow-band and wide-band predictions | |
Neskovic et al. | Modern approaches in modeling of mobile radio systems propagation environment | |
Cuinas et al. | Measuring, modeling, and characterizing of indoor radio channel at 5.8 GHz | |
Tam et al. | Propagation modelling for indoor wireless communication | |
Ullmo et al. | Wireless propagation in buildings: A statistical scattering approach | |
Tan et al. | Multipath delay measurements and modeling for interfloor wireless communications | |
Valenzuela | Ray tracing prediction of indoor radio propagation | |
Degli-Esposti et al. | Evaluation of the role of diffuse scattering in urban microcellular propagation | |
Kanhere et al. | Calibration of NYURay for ray tracing using 28, 73, and 142 GHz channel measurements conducted in indoor, outdoor, and factory scenarios | |
Budiarto et al. | Experimental study of non-specular wave scattering from building surface roughness for the mobile propagation modeling | |
Kermani et al. | A ray-tracing method for predicting delay spread in tunnel environments | |
Kloch et al. | Comparison of measured and predicted time dispersion and direction of arrival for multipath in a small cell environment | |
Layer et al. | Ray optical approach for a wideband indoor wave propagation model with moving receiver | |
Elechi | Path loss prediction model for GSM fixed wireless access | |
Lostanlen et al. | Comparison of measurements and simulations in indoor environments for wireless local networks at 60 GHz | |
Hoppe et al. | Wideband propagation modelling for indoor environments and for radio transmission into buildings | |
Cuinas et al. | A comparison of empirical and ray-tracing models for indoor radio-wave propagation [Wireless Corner] | |
Tun | Path loss prediction by using RSSI values | |
Bhuvaneshwari et al. | Development of an optimized ray tracing path loss model in the indoor environment | |
Layer et al. | Modeling and analysis of dominant propagation effects in real indoor environment at 5.2 GHz | |
Ho et al. | Wireless channel prediction in a modern office building using an image-based ray tracing method |