Validation with measurements of plane and spherical-wave UTD-PO propagation models which assume flat-topped obstacles
Explore this paper's citation graph
- Type
- article
- Published
- 2018-02-01
- Cited by
- 7
- References
- 15
- OpenAlex
- https://openalex.org/W2783290813
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:116516099
Keywords
Diffraction, Spherical wave, Uniform theory of diffraction, Plane wave, Plane (geometry)
References
- Mobile radio propagation path loss prediction using Artificial Neural Networks with optimal input information for urban environments
- Path Loss Predictions in Urban Areas with Irregular Terrain Topography
- A new solution expressed in terms of UTD coefficients for the multiple diffraction of spherical waves by a series of buildings
- UTD solution for the multiple building diffraction attenuation function for mobile radiowave propagation
- Urban path-loss characteristics at 820 MHz
- Finite conductivity uniform GTD versus knife edge diffraction in prediction of propagation path loss
- Assessment of GTD for mobile radio propagation prediction
- Path loss prediction in microcellular environments at 900 MHz
- Improvements on Slope Diffraction for Multiple Wedges
- A theoretical model of UHF propagation in urban environments
- Prediction of mobile radio wave propagation over buildings of irregular heights and spacings
- An improved solution expressed in terms of UTD coefficients for the multiple-building diffraction of plane waves
- A UTD-PO solution for diffraction of plane waves by an array of perfectly conducting wedges
- Measurements on scaled models of urban environments and comparisons with ray-tracing propagation simulation
- A practical aspect of over-rooftop multiple-building forward diffraction from a low source
Cited by
- A New UTD Based Time-Domain Solution for UWB Diffraction in 3-D Environments
- Using 2W-PE method based on machine learning to accurately predict field strength distribution in flat-top obstacle environment
- Plane-wave UTD-PO formulation for multiple-plateau diffraction analysis assuming negative incidence angles
- Analyzing radiowave multiple diffraction from a low transmitter in vegetated urban areas using a spherical-wave UTD–PO approach
- On the Management of Type 1 Diabetes Mellitus with IoT Devices and ML Techniques
- Forecasting glycaemia in Type 1 Diabetes Mellitus with univariate ML algorithms
- Forecasting blood sugar levels in Diabetes with univariate algorithms
Related papers
- Ray-tracing models and techniques for coverage prediction in urban environments
- Accurate ray-tracing/UTD-based model for indoor stairwells at 10 GHz
- Efficient ray-tracing techniques for three-dimensional analyses of propagation in mobile communications: application to picocell and microcell scenarios
- Computer tool to analyze radio channel in arbitrary enclosed spaces using ray tracing
- Research of Wave Propagation Base on Ray Tracing Method
- Fast ray tracing for microcellular and indoor environments
- Propagation model based on ray tracing for the design of personal communication systems in indoor environments
- Propagation prediction in a vegetated residential area using the combined method of ray tracing and diffraction
- Two-dimensional ray-tracing modeling for propagation prediction in microcellular environments