Attachment RadHaz

This document pretains to SES-LIC-20091123-01488 for License on a Satellite Earth Station filing.

IBFS_SESLIC2009112301488_776807

Radiation Hazard Report                                                            Page 1 of 5

      Analysis of Non—lonizing Radiation for a 2.4—Meter Earth
                          Station System
This report analyzes the non—lonizing radiation levels for an AVL Technologies 2.4—meter earth
station system. The analysis and calculations performed in this report comply with the methods
described in the FCC Office of Engineering and Technology Bulletin, No. 65 first published in 1985
and revised in 1997 in Edition 97—01. The radiation safety limits used in the analysis are in
conformance with the FCC R&O 96—326. Bulletin No. 65 and the FCC R&O specifies that there are
two separate tlers of exposure limits that are dependant on the situation in which the exposure
takes place and/or the status of the individuals who are subject to the exposure. The Maximum
Permissible Exposure (MPE) limits for persons in a General Population/Uncontrolled environment
are shown in Table 1. The General Population/Uncontrolled MPE is a function of transmit
frequency and is for an exposure period of thirty minutes or less. The MPE limits for persons in an
Occupational/Controlled environment are shown in Table 2. The Occupational MPE is a function of
transmit frequency and is for an exposure period of six minutes or less. The purpose of the
analysis described in this report is to determine the power flux density levels of the earth station in
the far—field, near—field, transition region, between the subreflector or feed and main reflector
surface, at the main reflector surface, and between the antenna edge and the ground and to
compare these levels to the specified MPEs.

               Table 1. Limits for General Population/Uncontrolled Exposure (MPE)
                  Frequency Range (MHz)          Power Density {mW/cm")
                             30—300                              0.2
                                                                  .
                            300—1500               Frequency (MHz)®(0.8/1200)
                         1500—100,000                            1.0

                   Table 2. Limits for Occupational/Controlled Exposure (MPE)
                  Frequency Range (MHz)         Power Density (mW/icm"}
                             30—300                              1.0
                            300—1500               Frequency (MHz)*(4.0/1200)
                         1500—100,000                           5.0

         Table 3. Formulas and Parameters Used for Determining Power Flux Densities
    Parameter                     Symbot            Formula                Value          Units
    Antenna Diameter                  D                                      24           m
    Antenna Surface Area           Asurtace          1D*/ 4                 4.52          m*
    Feed Flange Diameter              Dra                                  19.05          cm
    Area of Feed Flange               Ala           x Di /4               285.02          om*
    Frequency                         F                                    6.175          GHz
    Wavelength                        A              300/F                0.0486          m
    Transmit Power                    P                                     350           W
    Antenna Gain (dBi)                e                                     41.0          dBi_.
    Antenna Gain (factor)              G             19%°"0                12589
    Pi                                 r                                3.1415927
    Antenna Efficiency                 1                                    0.60


Radiation Hazard Report                                                          Page 2 of 5
1.    Far Field Distance Calculation

The distance to the beginning of the far field can be determined from the following equation:

     Distance to the Far Field Region                       Ry =0.60 D/A                        (1)
                                                               =71.13 m

The maximum main beam power density in the far field can be determined from the following
equation:

     On—Axis Power Density in the Far Field                 $; =GP/(4 1 Ry")                    (2)
                                                               = 69.29 W/im"
                                                               =6.92 mWicm*
2.       Near Field Calculation

Power flux density is considered to be at a maximum value throughout the entire length of the
defined Near Field region. The region is contained within a cylindrical volume having the same
diameter as the antenna. Past the boundary of the Near Field region, the power density from the
antenna decreases linearly with respect to increasing distance.

The distance to the end of the Near Field can be determined from the following equation:

     Extent of the Near Field                              Ry = D* / (4 A)                      (3)
                                                               =29.64 m

The maximum power density in the Near Field can be determined from the following equation:

     Near Field Power Density                              S =16.01 P / (1 D)                   (4)
                                                               = 185.68 Wim
                                                               = 18.56 mWiem?

3.      Transition Region Calculation
The Transition region is located between the Near and Far Field regions. The power density
begins to decrease linearly with increasing distance in the Transition region. While the power
density decreases inversely with distance in the Transition region, the power density decreases
inversely with the square of the distance in the Far Field region. The maximum power density in
the Transition region will not exceed that calculated for the Near Field region. The power density
calculated in Section 2 is the highest power density the antenna can produce in any of the regions
away from the antenna. The power density at a distance R, can be determined from the following
equation:

     Transition Region Power Density                       S =Sy Ru/Ri                          (5)
                                                               $18.56 mWicm"


Radiation Hazard Report                                                                Page 3 of 5
4.    Distance to Safe Region Calculation

Since the power density decreases inversely with the square of the distance in the Far Field
region, the distance to the On—axis Power Density of 5 mW/cm* can be determined from the
following equation:

     Distance to ANSI 5 mW/iem*                            Deste = Rr ((S# / 5)°")                    (6)
                                                                   = 83.74 meters

5.       Region between the Feed Assembly and the Antenna Reflector

Transmissions from the feed assembly are directed toward the antenna reflector surface, and are
confined within a conical shape defined by the type of feed assembly. The most common feed
assemblies are waveguide flanges, horns or subreflectors. The energy between the feed assembly
and reflector surface can be calculated by determining the power density at the feed assembly
surface. This can be determined from the following equation:

     Power Density at the Feed Flange                     — Sia = 4000 P / Are                       (7)
                                                                  =4911.8 mWicm*
6.       Main Reflector Region

The power density in the main reflector is determined in the same manner as the power density at
the feed assembly. The area is now the area of the reflector aperture and can be determined from
the following equation:

  / Power Density at the Reflector Surface              Seurtace =4 P / Asurtace                     (8)
                                                                  = 309.46 Wim*
                                                                  = 30.94 mWicm*

7.      Off—axis Evaluation

For off—axis calculations in the Near Field and in the Transition region, it can be assumed that, if
the point of interest is at least one antenna diameter removed from the center of the main beam,
the power density at that point would be at least a factor of 100 (20dB) less than the value
calculated for the equivalent distance in the main beam. For off—axis calculations in the Far Field,
the calculated main—beam power density can be multiplied by the appropriate relative power
density factor obtained from the antenna gain pattern. Since the proposed antenna meets or
exceeds the performance specifications under Part 25.209 of the FCC rules, the off—axis gain for
this antenna is equal to or greater than 10dBi less than the on—axis gain in any direction of 48
degrees or more removed from the centerline of the main beam.

     Near Field Off—axis Power Density                  Snttor    = 0.01 S                           (9)
                                                                  = 1857 mWiem*
     Far Field Off—axis Power Density                   Swom           —=0.1 S¢                      (10)
                                                                 1tb




                                                                       6929 mW/iem?*


Radiation Hazard Report                                                       Page 4 of 5
8.    Summary of Calculations

          Table 4. Summary of Expected Radiation levels for Uncontrolled Environment
                                            Calculated Maximum
                                       Radiation Power Density Level
Region                                                 (mWicm*)            Hazard Assessment
Far Field (Ry = 71.13 m)                         S¢           6.92            Potential Hazard
Near Field (R,, = 29.64 m)                       Sir         18.56            Potential Hazard
Transition Region (Ry < R; < R;)                 S,          18.56            Potential Hazard
Safe Distance Region (D{y,=83.74 M)
Between Feed Assembly and Antenna                Sra       4911.88            Potential Hazard
    Reflector
Main Reflector Surface                          Ssurtace     30.94            Potential Hazard
Far Field Off—axis Region                       Shtom        1857           Mests Ansi Standards
Near Field Off—axis Region                      Snftors      .6929          Meets Ansi Standards
 (Between reflector and ground)


            Table 5. Summary of Expected Radiation levels for Controlled Environment
                                             Calculated Maximum
                                       Radiation Power Density Level
Region                                             (mWiem*)                 Hazard Assessment
Far Figld (Ry=71.13 m)                          Sy          6.92              Potential Hazard
Near Field (R, = 29.64 m)                       Sn           18.56           Potential Hazard >
Transition Region (Ry< Ri< Ry)                  S            18.56           Potential Hazard        —
Safe Distance Region (Dsze=83.74 m)                                                              >
Between Feed Assembly and Antenna               Sta        4911.88           Potential Hazard
    Reflector
Main Reflector Surface                          Seuttace     30.94            Potential Hazard
Far Field Off—axisRegion                        Shtom        1857           Meets Ansi Standards
Near Field Off—axis Region                      Snttom       6929           Meets Ansi Standards
(Between reflector and ground)

It is the applicant‘s responsibility to ensure that the public and operational personnel are not
exposed to harmful levels of radiation.


Radiation Hazard Report                                                            Page 5 of 5
9.      Conclusions

Based on this analysis it is concluded that the FCC RF Guidelines have been exceeded in the
specific regions of Tables 4 and 5. The ap    fhcant proposes to comply with the Maximum
Permissible Exposure (MPE) fimits of 1 mW/icm" for the Uncontrolled areas and the MPE limits of
5 mWiem" for the Controlled areas by one or more of the following methods:


Means of Compliance — Uncontrolled Areas

This antenna will be located on a vehicle rooftop. The distance from the ground to the center of
the antenna is approximately 3.63 meters. The location will be sufficient to prohibit access to the
areas that exceed the MPE limits. The general public will not have access to areas within %
diameter removed from the edge of the antenna.

Radiation hazard signs will be posted at any rooftop access location. The signs will be completely
visible from the ground.

The applicant will ensure that no buildings or other obstacles will be in the areas that exceed the
MPE levels.


Means of Compliance — Controlled Areas


The earth station‘s operational personhei will not have access to the areas that exceed the MPE
levels while the earth station is in operation.

The transmitters will be turned off during antenna maintenance.


Means of Compliance — Safety in General

This antenna system is located on a mobile unit and conditions will vary from operating site to
operating site.    Because of this, the licensee will establish procedures for the operational
personnel to verify that the antenna is not pointing in the direction of populated areas, and that
access to hazardous areas are restricted while the unit is in operation.

In addition, the transmit power used in these calculations is greater than that which will typically be
utilized by the earth station. During normal operation, the typical power level would generally not
exceed more than 50 to 75 percent of the indicated transmitter power. Maximum transmn power
would generally only occur in conditions of extreme inclement weather.


Radiation Hazard Report                                                             Page 1 of 5

      Analysis of Non—lonizing Radiation for a 2.4—Meter Earth
                                           Station System

This report analyzes the non—ionizing radiation fevels for an AVL Technologies 2.4—meter earth
station system. The analysis and calculations performed in this report comply with the methods
described in the FCC Office of Engineering and Technology Bulletin, No. 65 first published in 1985
and revised in 1997 in Edition 97—01. The radiation safety limits used in the analysis are in
conformance with the FCC R&O 96—326. Bulletin No. 65 and the FCC R&O specifies that there are
two separate tiers of exposure limits that are dependant on the situation in which the exposure
takes place and/or the status of the individuals who are subject to the exposure, The Maximum
Permissible Exposure (MPE) limits for persons in a General Population/Uncontrolled environment
are shown in Table 1. The General Population/Uncontrolled MPE is a function of transmit
frequency and is for an exposure period of thirty minutes or less. The MPE limits for persons in an
Occupational/Controlled environment are shown in Table 2. The Occupational MPE is a function of
transmit frequency and is for an exposure period of six minutes or less. The purpose of the
analysis described in this report is to determine the power flux density levels of the earth station in
the far—fleld, near—field, transition region, between the subreflector or feed and main reflector
surface, at the main reflector surface, and between the antenna edge and the ground and to
compare these levels to the specified MPEs.

               Table 1. Limits for General Population/Uncontrolled Exposure (MPE)
                  Frequency Range (MHz)          Power Density {mWicm")
                             30—300                            0.2
                            300—1500                Frequency(MHz)*(0.8/1200)
                         1500—100,000                            1.0

                    Table 2. Limits for Occupational/Controlled Exposure (MPE)
                  Frequency Range (MHz)          Power Density (mW/cm")
                             30—300                              1.0
                                                                  .
                            300—1500                Frequency (MHz)*(4.0/1200)
                         1500—100,000                           5.0

          Table 3. Formulas and Parameters Used for Determining Power Flux Densities
    Parameter                     Symbol            Formula                Value           Units
    Antenna Diameter                 D                                      24             m
    Antenna Surface Area           Asurface          1D‘/4                  4.52           m*
     Feed Flange Diameter             Dia                                   7.62           cm
    Area of Feed Flange               Ara            x Dia 44               45.6           om"
    Frequency                          F                                    14.25          GHz
    Wavelength                         A             300 /F                0.0211          m
    Transmit Power                     P                                     350           W
    Antenna Gain (dBi)                Gas                                   49.1           dBi
    Antenna Gain (factor)              G             1 peest®            81283.05
    Pi                                 x                                3.1415927
    Antenna Efficiency                 1                                   0.65


Radiation Hazard Report                                                          Page 2 of 5
1.    Far Field Distance Calculation

The distance to the beginning of the far field can be determined from the following equation:

     Distance to the Far Field Region                       Ry =0.60 D@ /X                      (1)
                                                               =164.1 m
The maximum main beam power density in the far field can be determined from the following
equation:

     On—Axis Power Density in the Far Field                 S¢ =GP/(4 1 Ry2)                    (2)
                                                               = 84.00 W/im*
                                                               =8.40 mWiem*

2.       Near Field Calculation

Power flux density is considered to be at a maximum value throughout the entire length of the
defined Near Field region. The region is contained within a cylindrical volume having the same
diameter as the antenna. Past the boundary of the Near Field region, the power density from the
antenna decreases linearly with respect to increasing distance.

The distance to the end of the Near Field can be determined from the following equation:

     Extent of the Near Field                              Ry = D*/ (4 2)                       (3)
                                                               = 68.4 m

The maximum power density in the Near Field can be determined from the following equation:

     Near Field Power Density                              Sa = 16.01 P / {r D)                 (4)
                     .                                         =201.15 W/im*
                                                               =20.11 mWicm*

3.      Transition Region Calculation

The Transition region is located between the Near and Far—Field regions. The power density
begins to decrease linearly with increasing distance in the Transition region. While the power
density decreases inversely with distance in the Transition region, the power density decreases
inversely with the square of the distance in the Far Field region. The maximum power density in
the Transition region will not exceed that calculated for the Near Field region. The power density
calculated in Section 2 is the highest power density the antenna can produce in any of the regions
away from the antenna. The power density at a distance R, can be determined from the following
equation:

     Transition Region Power Density                       $ =SuRy/R                            (5)
                                                               $20.11 mWiem*


Radiation Hazard Report                                                             Page 3 of 5
4.    Distance to Safe Region Calculation

Since the power density decreases inversely with the square of the distance in the Far Field
region, the distance to the On—axis Power Density of 5 mW/cm" can be determined from the
following equation:

     Distance to ANSI 5 mW/cm*                            Deete = Ra ((S# / 5)°°)                 (6)
                                                                =212.78 meters

5.       Region between the Feed Assembly and the Antenna Reflector

Transmissions from the feed assembly are directed toward the antenna reflector surface, and are
confined within a conical shape defined by the type of feed assembly. The most common feed
assemblies are waveguide flanges, horns or subreflectors. The energy between the feed assembly
and reflector surface can be calculated by determining the power density at the feed assembly
surface. This can be determined from the following equation:

     Power Density at the Feed Flange                       Sia =4000 P / Arg                     (7)
                                                                = 30699 mW/cm*

6.      Main Reflector Region

The power density in the main reflector is determined in the same manner as the power density at
the feed assembly. The area is now the area of the reflector aperture and can be determined from
the following equation:

     Power Density at the Reflector Surface             Seurtace =4 P / Asurtace                  (8)
                                                                = 309.46 Wim*
                                                                = 30.94 mWicm"

7.      Off—axis Evaluation

For offaxis calculations in the Near Field and in the Transition region, it can be assumed that, if
the point of interest is at least one antenna diameter removed from the center of the main beam,
the power density at that point would be at least a factor of 100 (20dB) less than the value
calculated for the equivalent distance in the main beam. For off—axis calculations in the Far Field,
the calculated main—beam power density can be multiplied by the appropriate relative power
density factor obtained from the antenna gain pattern. Since the proposed antenna meets or
exceeds the performance specifications under Part 25.209 of the FCC rules, the off—axis gain for
this antenna is equal to or greater than 10dBi less than the on—axis gain in any direction of 48
degrees or more removed from the centerling of the main beam.

     Near Field Off—axis Power Density                  Sriter > 0.01 S                           (9)
                                                               =.2012 mWicm*

     Far Field Off—axis Power Density                   Smom    7 0.1 S¢                          (10)
                                                                =.8401 mWiem*


Radiation Hazard Report                                                       Page 4 of 5
8.    Summary of Calculations

           Table 4. Summary of Expected Radiation levels for Uncontrolled Environment
                                              Calculated Maximum
                                         Radiation Power Density Level
Region                                              (mWiem")               Hazard Assessment
Far Field (Ry = 164.16 m)                       Sy        8.400              Potential Hazard
Near Field (R,; = 68.4 m)                       Si¢       20.11              Potential Hazard
Transition Region (Ry < R, < Rg)                S         20.11              Potential Hazard
Safe Distance Region (Dase=157.3756 m)
Between Feed Assembly and Antenna                Sr         30699.28          Potential Hazard
    Reflector
Main Reflector Surface                           Seurtace      30.94          Potential Hazard
Far Field Off—axis Region                        Satom         2012         Meets Ansi Standards
Near Field Off—axis Region                       Snftom        .8401        Meets Ansi Standards
 (Between reflector and ground)


           Table 5. Summary of Expected Radiation levels for Controlled Environment
                                            Calculated Maximum
                                      Radiation Power Densxty Level
Region                                                {mWiem*)             Hazard Assessment
Far Field (Ry = 164.16 m)                        Sy            8.400         Potential Hazard
Near Field (Ry = 68.4 m)                         m             20.11         Potential Hazard
Transition Region (Ry < R; < Ry)                 S             20.11         Potential Hazard       ~
Safe Distance Region (Dsz=157.3756 m)                                                              «9
Between Feed Assembly and Antenna               Sa          30699.28         Potential Hazard
    Reflector
Main Reflector Surface                          Seurface       30.94         Potential Hazard
Far Field Off—axis Region                       Sitof)         2012        Meets Ansi Standards
Near Field Off—axis Region                      Snttor         .8401       Meets Ansi Standards
 (Between reflector and ground)

It is the applicant‘s responsibility to ensure that the public and operational personnel are not
exposed to harmful levels of radiation.


Radiation Hazard Report                                                            Page 5 of 5
9.    Conclusions

Based on this analysis it is concluded that the FCC RF Guidelines have been exceeded in the
specific regions of Tables 4 and 5. The apglicant proposes to comply with the Maximum
Permissible Exposure (MPE) limits of 1 mW/cm" for the Uncontrolied areas and the MPE limits of
5 mWi/cm" for the Controlled areas by one or more of the following methods:


Means of Compliance — Uncontrolied Areas

This antenna will be located on a vehicle rooftop. The distance from the ground to the center of
the antenna is approximately 3.63 meters. The location will be sufficient to prohibit access to the
areas that exceed the MPE limits, The general public will not have access to areas within %
diameter removed from the edge of the antenna.

Radiation hazard signs will be posted at any rooftop access location. The signs will be completely
visible from the ground.

The applicant will ensure that no buildings or other obstacies will be in the areas that exceed the
MPE levels.


Means of Compliance — Controiled Areas


The earth station‘s operational personnel will not have access to the areas that exceed the MPE
levels while the earth station is in operation.

The transmitters will be turned off during antenna maintenance.


Means of Compliance — Safety in General

This antenna system is located on a mobile unit and conditions will vary from operating site to
operating site. Because of this, the licensee will establish procedures for the operational
personnel to verify that the antenna is not pointing in the direction of populated areas, and that
access to hazardous areas are restricted while the unit is in operation.

in addition, the transmit power used in these calculations is greater than that which will typically be
utilized by the earth station. During normal operation, the typical power fevel would generally not
exceed more than 50 to 75 percent of the indicated transmitter power. Maximum transmit power
would generally only occur in conditions of extreme inclement weather.



Document Created: 2019-04-19 20:03:36
Document Modified: 2019-04-19 20:03:36

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