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Software, Data and Validation examples for ionospheric and tropospheric radio-wave propagation and radio noise

​​​​​​​​​​​​​​​​​​​​ Study Group 3 templates for the submission of digital data sets and computer programs​

​​​​​​​​​

ITU-R integral (authoritative/normative) and supplemental (non-authoritative/informative) data products for radio-wave propagation prediction methods

Rec. No.Rec. TitleDescriptionGrid Resolution​I/SInterpolationComments
P.452Prediction procedure for the evaluation of interference between stations on the surface of the Earth at frequencies above about 100 MHz Median annual DN
Median annual N0.
1.5° x 1.5°​ISpatial: BilinearRefer to the associated Readme file for the applicable file names(2)
ITU Digitized World Map (IDWM)Coastal contours and national borders​INARefer to the associated Readme file for the applicable file names(2)
P.453The radio refractive index: its formula and refractivity data Annual and monthly probability distributions of the wet term of the refractivity at the surface (Nwet)0.75° x 0.75°​ISpatial: Bilinear
Exceedance Probability: logarithmic
Refer to the associated Readme file for the applicable file names(2)

• Refractivity gradient in the lowest 65 m of the atmosphere (N-units/km) 

• Refractivity gradient in the lowest 1 km of the atmosphere (N-units/km) 

• Percentage of time for which refractivity gradient in the lowest 100 m < −100 N-unit/km


0.75° x 0.75°
​ISpatial: Bilinear
Exceedance Probability: logarithmic
Refer to the associated Readme file for the applicable file names(2)
Surface duct data
1.5° x 1.5°
​SSpatial: Bilinear
Refer to the associated Readme file for the applicable file names(2)
Elevated duct data
1.5° x 1.5°
​S Spatial: Bilinear
Refer to the associated Readme file for the applicable file names(2)
P.530
Propagation data and prediction methods required for the design of terrestrial line-of-sight systems 
LogK logarithm of K%, the geoclimatic factor for the average worst month
0.25° x 0.25°
​ISpatial: Bilinear
See the Recommendation for the application and use of these data sets.
dN75 empirical prediction of 0.1% of the average worst month refractivity increase with height over the lowest 75 m of the atmosphere
0.25° x 0.2
​ISpatial: Bilinear
See the Recommendation for the application and use of these data sets.
P.534
Method for calculating sporadic-E field strength
foEs exceeded for annual percentage times
1.5° x 1.5°
​ISpatial: Bilinear
Exceedance Probability: logarithmic
Refer to the associated Readme file for the applicable file names(2)
P.617

Propagation prediction techniques and data required for the design of trans-horizon radio-relay systems
Median annual DN
Median annual N0

1.5° x 1.5°
​ISpatial: Bilinear
Refer to the associated Readme file for the applicable file names(2)
ITU Digitized World Map (IDWM)
Coastal contours and nationa​l borders
​INA
-​
P.678
Characterization of the variability of propagation phenomena and estimation of the risk associated with propagation margin
Map of the climatic ratio
0.5° x 0.5°
​ISpatial: Bilinear
Refer to the associated Readme file for the applicable file names(2)
P.834
Effects of tropospheric refraction on radiowave propagation
• Harmonic coefficients of excess path length along Earth-space paths
• Harmonic coefficients of the hydrostatic and wet mapping functions

1.5° x 1.5°

5° x 5°
​ISpatial: Bilinear

Not required
Refer to the associated Readme file for the applicable file names(2)
P.835
Reference ​​​Atmospheres
Global mean annual and mean monthly vertical profiles
0.25° x 0.35° ​I Refer to Section 5 of Annex 1 of Rec. ITU-R P.676-13​Refer to the recommendation and other recommendations referring to this recommendation
P.836




Water vapour: surface density and total columnar content 


Total columnar water vapour exceedance probability (%) (IWVC)
1.125° x 1.125°
​ISpatial: Bilinear
Exceedance Probability: logarithmic
(variables at grid point scaled to desired altitude prior to spatial interpolation)


Refer to the associated Readme file for the applicable file names(2)
Surface water vapour density exceedance probability (%) (Rho)1.125° x 1.125° Refer to the associated Readme file for the applicable file names(2)
Water vapour scale height1.125° x 1.125°Refer to the associated Readme file for the applicable file names(2)
Topographic altitude (a.m.s.l.) (km)0.5° × 0.5°Refer to the Recommendation
P.837

Characteristics of precipitation for propagation modelling
Monthly mean total rainfall MT (mm) 
Annual rai​nfall rate R0.01 (mm/h)


0.25° x 0.25°

0.125° x 0.125°
​ISpatial: Bilinear

Refer to the associated readme file for the applicable filenames(2)

P.839
Rain height model for prediction methods
Mean annual 0°C isotherm height (km)
1.5° x 1.5°
​ISpatial: Bilinear
Refer to the associated Readme file for the applicable file names(2)
P.840
Attenuation due to clouds and fog
Annual and monthly statistics (mean, standard deviation and CCDF) statistics of integrated cloud liquid water content
0.25° x 0.25°
​ISpatial: Bilinear
Exceedance Probability: logarithmic
Refer to the associated Readme file for the applicable file names(2)
Approximation of annual integrated cloud liquid water content by a log-normal distribution
1.125° x 1.125°
​ISpatial: Bilinear
Refer to the associated Readme file for the applicable file names(2)
​P.1144​Guidelines for the application of numerical methods used in propagation methods of Radiocommunication Study Group 3Gaussian quadrature points and weights for numerical integration​​NA​S​NA​Data files
P.1510
Mean surface temperature
Mean monthly and annual surface temperature
0.75° x 0.75°
​ISpatial: Bilinear
Refer to the associated readme file for the applicable filenames(2)
P.1511

Topography for Earth-to-space propagation modelling

Topographic altitude
~0.8333° x ~0.8333°
​ISpatial: Bicubic
This Recommendation contains definitions of latitude, longitude, and height in P-Series Recommendations. Refer to the associated Readme file for the applicable file names(2)
Earth gravitational model 2008 (EGM2008)~0.8333° x ~0.8333°​ISpatial: BicubicRefer to the associated readme file for the applicable filenames(2)
P.1546
Method for point-to-area predictions for terrestrial services in the frequency range 30 MHz to 4 000 MHz​ Refractivity gradient, dN, exceeded for time percentage​
1.5° x 1.5°
​SSpatial: Bilinear
DNDZ_50.TXT DNDZ_10.TXT
DNDZ_01.TXT
Tabulated values of the field strength curves (Figures 1 - 24)​NA​S​Linear​Excel file
P.1812
A path-specific propagation prediction method for point-to-area terrestrial services in the frequency range 30 MHz to 6 GHz Median annual DN
Median annual N0

1.5° x 1.5°
​ISpatial: Bilinear
Refer to the associated Readme file for the applicable file names(2)
ITU Digitized World Map (IDWM)
Coastal contours and national borders
​INA
-
P.1853
Time series synthesis of tropospheric impairments
Annual mean surface pressure
Annual mean water vapour density

0.75° x 0.75°
​ISpatial: Bilinear
WV_Annual.txt
P_Annual.txt
P.2001​ ​ ​​A general purpose wide-range terrestrial propagation model in the frequency range 30 MHz to 50 GHz 
Median value of average refractivity gradient in the lowest 1 km of the atmosphere​1.5° x 1.5°​ISpatial: BilinearRefer to the associated Readme file for the applicable file names(2)
Average refractivity gradient in the lowest 1 km of the atmosphere exceeded for p ≥ 50% of an average year​1.5° x 1.5°​ISpatial: Bilinear
Average refractivity gradient in the lowest 1 km of the atmosphere exceeded for p < 50% of an average year1.5° x 1.5°​ISpatial: Bilinear
Refractivity gradient in the lowest 65 m of the atmosphere exceeded for 1% of an average year1.5° x 1.5°​ISpatial: Bilinear
Probability of rain in 6-hours slots1.125° x 1.125°​ISpatial: Bilinear
Annual rainfall accumulation1.125° x 1.125°​ISpatial: Bilinear
Ratio between convective and total precipitation1.125° x 1.125°​ISpatial: Bilinear
Mean zero-degree isotherm rain height1.5° x 1.5°​ISpatial: Bilinear
Surface water-vapour density1.5° x 1.5°​ISpatial: Bilinear
Tropospheric climatic identifiers
0.5° x 0.5°

​INA:
Nearest neighbour
ITU Digitized World Map (IDWM)
Coastal contours and national borders
​INA
-
P.2001 and P.534
A general purpose wide-range terrestrial propagation model in the frequency range 30 MHz to 50 GHz
and
Method for calculating sporadic-E field strength
Critical frequency for sporadic-E (F0Es)
1.5° × 1.5°
​I Spatial: Bilinear
FoEs50.txt
FoEs10.txt
FoEs01.txt
FoEs0.1.txt
P.2145

Digital maps related to the calculation of gaseous attenuation and related effects
Annual and monthly statistics (mean, standard deviation and CCDF) of surface pressure
Annual and monthly statistics (mean, standard deviation and CCDF) of surface temperature
Annual and monthly statistics (mean, standard deviation and CCDF) of surface water vapour density
Annual and monthly statistics (mean, standard deviation and CCDF) of integrated water vapour content
Approximation of annual integrated water vapour content by a Weibull distribution

0.25° × 0.25°
​ISpatial: Bilinear Statistical: Linear
Refer to the Recommendation
P.2148
Digital maps related to surface wind speed statistics
Worldwide average annual statistics of wind speed at a height of 10 m above the surface of the Earth
0.25° × 0.25°
​ISpatial: Bilinear
Statistical: Linear
Refer to the Recommendation
I = Integral
S = Supplemental
(1) The variables at the surrounding grid points are scaled to the desired altitude prior to spatial interpolation per the scaling procedure in the Recommendation.
(2) The readme file is contained within the Zip (Components) file on the web page associated with the Recommendation.

Integral (authoritative/normative) and supplemental (non-authoritative/informative) software products

Supplemental softwareare provided "as is" without any warranty of any kind, either expressed, implied, not limited to, any warranty that the results will conform to the associated recommendation, any implied warranties of merchantability, or fitness for a particular purpose.


Rec.
Rec. Title
Description
I/S
Language
Version
​P.372
​Radio noise​​
M-script file for processing white Gaussian noise measurements​
​S
​M-script
​1
P.368​
​​
​Ground-wave propagation curves for frequencies between 10 kHz and 30 MHz
​​Software code for the calculation of the field strength and basic transmission losses based on the LFMF-smoothEarth modelIC++10​
M-script implementation for the calculation of the field strength and basic transmission losses based on the LFMF-smoothEarth model​​​
​S
​​M-script​
​1
​​Calculation of the field strength and basic transmission losses based on the LFMF-smoothEarth model​​SWindows Executable ​10
P.452
Prediction procedure for the evaluation of interference between stations on the surface of the Earth at frequencies above about 0.1 GHz
Rain scatter (SCAT)
S
Fortran
17.1
Excel implementation of Recommendation ITU-R P.452 (clear-air prediction procedure)S
Excel


16.1
S
M-Sc​​ri​pt
18.1
M-script implementation of Recommendation ITU-R P.452 (clear-air prediction procedure)
P.526
Propagation by diffraction
UTD formulation for diffraction loss due to finitely conducting wedge
S
Mathcad
15
​P.528


​ ​ ​​A propagation prediction method for aeronautical mobile and radionavigation services using the VHF, UHF and SHF bands​
Source code and data tables for the calculation of basic transmission loss in Recommendation ITU-R P.528I​C++
Data
​5
Windows binaries (DLLs and executables) for the integral source code​S32-/64-bit Windows DLLs and Executables​5.0.1
M-script implementation of Recommendation ITU-R P.528
S

M-script


5.0.1


P.531​​​​
Ionospheric propagation data and prediction methods required for the design of satellite networks and systems 
Global ionospheric scintillation model (GISM)
I
Fortran 
5.1
Electron density distribution and TEC along arbitrary ground-to-satellite or
satellite-to-satellite paths (NeQuick2)


I
Fortran 
12
P.533

Method for the prediction of the performance of HF circuits
HF sky-wave propagation (REC533) (available from the web site of the U.S. Department of Commerce NTIA-ITS)
S
Windows Executable
-
Prediction of the performance of HF circuits (ITURHFPROP)
S
Windows Executable
14.3
P.618

​​
​Propagation data and prediction methods required for the design of Earth-space telecommunication systems
Site diversity joint probability and complementary bivariate normal distribution function
S
M-Script
14.2241_v2
​Site diversity joint probability and complementary bivariate normal distribution function
​S
​Python
​​14.2241_v2
P.681

Propagation data required for the design of systems in the land mobile-satellite service
Satellite-to-indoor channel simulator
I
M-Script​/C++
11.4​
P.684

Prediction of field strength at frequencies below about 150 kHz
Software to calculate skywave LF/MF field strength and phase at distances up to 4000 km using the parabolic layer model
S
Basic and Windows Executable
4
P.837



​​
​Characteristics of precipitation for propagation modelling

Annex 2: Conversion of rain rate statistics with different integration time
I
M-Script​ p-code and Windows
7
Annex 1: Rainfall rate prediction
S
M-Script​
7
​Annex 1: Rainfall rate prediction​
​S
​Excel
​​6.1
​​P.838
​Specific attenuation model for rain for use in prediction methods​
​​Excel implementation of Recommendation ITU-R P.838-3
​S
Excel
​3.1
​P.839

​Rain height model for prediction methods​
​​Excel implementation of Recommendation ITU-R P.839-4​
​S
Excel
​4.1
​P.1239


ITU-R reference ionospheric characteristics
Prediction of the performance of HF circuits (ITURHFPROP)
S
Window Executable
14.3
Software to calculate tables of foF2 and M(3000) (IONGRID)
S
M-Script​ and Fortran
2
P.1546


Method for point-to-area predictions for terrestrial services in the frequency range 30 MHz to 4 000 MHz
M-script implementation of Recommendation ITU-R P.1546S
M-Script​
6.2
P.1812

A path-specific propagation prediction method for point-to-area terrestrial services in the VHF and UHF bands
M-script implementation of Recommendation ITU-R P.1812S
M-Script​
6.1
P.2001

A general purpose wide-range terrestrial propagation model in the frequency range 30 MHz to 50 GHz
M-script implementation of Recommendation ITU-R P.2001
S
M-Script​
4.1.​1
​P.2108 
​Prediction of clutter loss
Calculation of clutter and building entry losses


​S


​Excel
​ ​
​​2
​ ​
P.2109
​Prediction of building entry loss
​P.2146
​Sea surface bistatic scattering​​
​​M-script implementation of the sea surface bistatic scattering​
​S
M-Script​
​1
​I = Integral
S = Supplemental

Validation Examples

These validation examples are provided "as is" without any warranty of any kind, either expressed, implied, not limited to, any warranty that the example results will conform to the associated recommendation, any implied warranties of merchantability, or fitness for a particular purpose.


Rec. No.
Description

Version

​P.452-18
​​Validation examples for software implementation of Recommendation ITU-R P.452​​​
​18.0
P.453-14, P.618-14, P.676-13, P.836-6, P.837-7, P.838-3, P.839-4, P.840-8, P.1510-1, P.1511-3, P.1623-1, P.1815-1, P.2145-0
Validation examples for parts of Recs. ITU-R P.453-14, P.618-14, P.676-13, P.836-6, P.837-7, P.838-3, P.839-4, P.840-9, P.1510-1, P.1511-3, P.1623-1, P.1815-1, P.2145-0
8.3.0
P.526-15, P.452-15, P.1812-8, P.2001-6
Validation examples for the delta Bullington diffraction prediction method
13.2
P.1546-6
Validation examples for software implementations of Recommendation ITU-R P.1546
6.2
P.1812-5
Validation examples for software implementations of Recommendation ITU-R P.1812
6.1
P.2001-3
Validation examples for software implementations of Recommendation ITU-R P.2001
4.1

Reports, Handbooks and Fascicles associated with Recommendations




Rec. No.
Rec. Title
Report No.
Report Title
Handbook
Fascicle No.
Fascicle Title
Validation Examples
P.368
Ground-wave propagation curves for frequencies between 10 kHz and 30 MHz 
- -
Curves for Radio-Wave Propagation over the Surface of the Earth
-
-
-
Ground-wave propagation
P.372
Radio noise
P.2089
The analysis of radio noise data 
-
3L/FAS/1
The brightness temperature prediction method in Recommendation ITU-R P.372​ - Radio noise​​​
-
P.2097
Transionospheric radio propagation - The Global Ionospheric Scintillation Model (GISM) 
-
P.452
Prediction procedure for the evaluation of interference between stations on the surface of the Earth at frequencies above about 0.1 GHz
-
-
Propagation prediction methods for interference and sharing studies
3M/FAS/12
Fascicle on hydrometeor scatter interference​ Yes
P.453
The radio refractive index: its formula and refractivity data
-
-
Radiometeorology-
-
Yes
P.528
A propagation prediction method for aeronautical mobile and radionavigation services using the VHF, UHF and SHF bands
P.2345
Defining propagation model for Recommendation ITU-R P.528-3
Radiometeorology
-
-
-
P.531
Ionospheric propagation data and prediction methods required for the design of satellite networks and systems
P.2297
Electron density models and data for transionospheric radio
Ionosphere and its Effects on Radiowave Propagation
-
-
-
P.618
Propagation data and prediction methods required for the design of Earth-space telecommunication systems
-
- Radiowave Propagation Information for Predictions for Earth-to-Space Path Communications
3M/FAS/7
The prediction method of the probability of rain attenuation proposed in Recommendation ITU-R P.618 
Yes
P.619
Propagation data required for the evaluation of interference between stations in space and those on the surface of the Earth
-
-
Propagation prediction methods for interference and sharing studies
-
-
-
P.676

Attenuation by atmospheric gases and related effects- -
Radiometeorology
3J/FAS/5
Fascicle on statistical distributions of integrated water vapour (Recommendation ITU-R P.836-5) and the prediction method for water vapour attenuation for a slant path in Recommendation ITU-R P.676-10)
Yes
P.678
Characterization of the variability of propagation phenomena and estimation of the risk associated with propagation margin
- -
-
3J/FAS/4
Fascicle concerning the use of Recommendation ITU-R P.678
-
P.681
Propagation data required for the design systems in the land mobile-satellite service
P.2145
Model parameters for the physical-statistical wideband models in Recommendation ITU-R P.681
Terrestrial land mobile radiowave propagation in the VHF/UHF bands
3M/FAS/11
Guidelines for parameter extraction and testing of land mobile satellite narrowband channel models
-
P.833
Attenuation in vegetation
P.2090
Measuring the input parameters for the radiative energy transfer model of vegetation attenuation
-
-
-
-
​P.835
Reference atmospheres​
​-
​-
​-
​3J/FAS/11
Background information on Annex 3 of Recommendation ITU R P.835​​
P.836
Water vapour: surface density and total columnar content
-
-
Radiometeorology
3J/FAS/5
Fascicle on statistical distributions of integrated water vapour (Recommendation ITU-R P.836-5) and the  prediction method for water  vapour attenuation for a slant  path in Recommendation ITU-R P.676-10)
Yes
P.837

Characteristics of precipitation for propagation modelling
-
-
Radiometeorology
3J/FAS/2
Fascicle concerning physical modelling for the conversion of rain rate statistics at different integration times
Yes
-
-
3J/FAS/3
Fascicle concerning the rainfall rate model given in Annex 1 to Recommendation ITU-R P.837
P.838
Specific attenuation model for rain for use in prediction methods
-
-
Radiometeorology
3J/FAS/9
Fascicle on rain specific attenuation
Yes
P.840
Attenuation due to clouds and fog
-
-
Radiometeorology
3J/FAS/6
Fascicle on statistical distributions of reduced integrated cloud liquid water and prediction of the associated attentuation (Recommendation ITU-R P.840-6)
Yes
P.1238
Propagation data and prediction methods for the planning of indoor radiocommunication systems and radio local area networks in the frequency range 300 MHz to 450 GHz 
P.2406
Studies for short-path propagation data and models for terrestrial radiocommunication systems in the frequency range 6 GHz to 450 GHz
- -
- -
P.1240
ITU-R methods of basic MUF, operational MUF and ray-path prediction
P.2011
Propagation at frequencies above the basic MUF
-
-
-
-
P.1406
Propagation effects relating to terrestrial land mobile and broadcasting services in the VHF and UHF bands 
P.239 Propagation statistics required for broadcasting services using the frequency range 30 to 
1 000 MHz

-
-
-
-
P.1511
Topography for Earth-to-space propagation modelling
-
-
-
3J/FAS/8
Fascicle on topography for Earth-space paths in Recommendation ITU-R P.1511-2
Yes
P.1546
Method for point-to-area predictions for terrestrial services in the frequency range 30 MHz to 4 000 MHz
-
-
-
-
-
Yes
P.1623
Prediction method of fade dynamics on Earth-space paths
-
-
-
-
-
Yes
P.1812
A path-specific propagation prediction method for point-to-area terrestrial services in the VHF and UHF bands
-
-
-
-
-
Yes
P.1853
Time series synthesis of tropospheric impairments
-
-
-
3J/FAS/10
Background information on tropospheric attenuation time series synthesizer in Recommendation ITU-R P.1853
-
​P.2108​
Prediction of Clutter Loss ​P.2402A method to predict the statistics of clutter loss for earth-space and aeronautical paths​-
​3K/FAS/1
​​Concerning Recommendation ITU-R P.2108 on clutter loss in the frequency range 30 MHz to 100 GHz - Description of the method for clutter loss measurement​
​-
P.2109
Prediction of Building Entry Loss
P.2346
Compilation of measurement data relating to building entry loss
​-
-
-
-​

Deprecated Data Products

These data products are maintained in the archives for historical reference purposes only


Rec.
Topic
Description
Content
P.368-9
Ground-wave propagation Ground-wave propagation (GRWAVE)Software
P.434-6
Maximum usable frequencies (MUFFY)
Maximum usable frequencies (MUFFY) (Rec. ITU-R P.434 suppressed on 24.10.97)
Software
P.434-6
WOM_HRM
Characteristics (WOM_HRM) (Rec. ITU-R P.434 suppressed on 24.10.97)
Data
P.530-14
Terrestrial prediction methods
Validation examples for Rec. ITU-R P.530
Validation examples
P.530-16
Radio Refractivity Radio refractivity gradient, dN1 in the lowest (65 m) layer of the atmosphere for 1% of time, for use in Recommendation ITU-R P.530Data
P.530-16
Terrain standard deviation Terrain standard deviation parameter for Recommendation ITU-R P.530Data
P.534-3
Propagation by sporadic-E Calculating sporadic-E field strengthSoftware
P.618-11
Joint probability of attenuation Complementary bivariate normal distributionSoftware
P.618-12, 
P.840-6
Propagation losses
Dynamic Link Library (DLL) for calculation of propagation losses for Earth to space (or space to Earth) transmission links
Excel DLL
P.676-3

Atmospheric gaseous absorption
Atmospheric gaseous absorption
M-Script Software
P.835-6
​Atmospheric vertical profiles from 353 locations​
​Experimental Data of Atmospheric Vertical Profiles (Annex 2)​
​Data
​P.838-1
Rain attenuation
Specific attenuation model for rain
C Software
P.1853-1
Rain attenuation
Generates rain attenuation time series
Software

Databank (Non-Authoritative/Informative)  Products

These data products are provided "as is" without any warranty of any kind, either expressed, implied, not limited to, any warranty that these data products will conform to the associated recommendation, any implied warranties of merchantability, or fitness for a particular purpose.



Rec. No.
Rec. Title
Description
P.684
Prediction of field strength at frequencies below about 150 kHz
LF measurements
P.845
HF field-strength measurement
Measurements of HF field-strength measurements in Germany between 1969 and 1993 - Databank D2
P.1147
Prediction of sky-wave field strength at frequencies between about 150 and 1 700 kHz 
LF-MF skywave measurements​
​​