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Access

Access analysis object belonging to scenario

Since R2021a

    Description

    The Access object defines an access analysis object belonging to a Satellite, GroundStation, or ConicalSensor object. Use this object to determine if the line-of-sight (LOS) between two objects exists.

    Creation

    You can create an Access object using the access object function of GroundStation or Satellite.

    Properties

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    IDs of the satellites, ground stations, and conical sensors defining access analysis, specified as a vector of positive numbers.

    Visual width of access analysis object in pixels, specified as a scalar in the range (0, 10].

    The line width cannot be thinner than the width of a pixel. If you set the line width to a value that is less than the width of a pixel on your system, the line displays as one pixel wide.

    Color of access analysis line, specified as an RGB triplet, hexadecimal color code, a color name, or a short name.

    For a custom color, specify an RGB triplet or a hexadecimal color code.

    • An RGB triplet is a three-element row vector whose elements specify the intensities of the red, green, and blue components of the color. The intensities must be in the range [0,1], for example, [0.4 0.6 0.7].

    • A hexadecimal color code is a string scalar or character vector that starts with a hash symbol (#) followed by three or six hexadecimal digits, which can range from 0 to F. The values are not case sensitive. Therefore, the color codes "#FF8800", "#ff8800", "#F80", and "#f80" are equivalent.

    Alternatively, you can specify some common colors by name. This table lists the named color options, the equivalent RGB triplets, and hexadecimal color codes.

    Color NameShort NameRGB TripletHexadecimal Color CodeAppearance
    "red""r"[1 0 0]"#FF0000"

    Sample of the color red

    "green""g"[0 1 0]"#00FF00"

    Sample of the color green

    "blue""b"[0 0 1]"#0000FF"

    Sample of the color blue

    "cyan" "c"[0 1 1]"#00FFFF"

    Sample of the color cyan

    "magenta""m"[1 0 1]"#FF00FF"

    Sample of the color magenta

    "yellow""y"[1 1 0]"#FFFF00"

    Sample of the color yellow

    "black""k"[0 0 0]"#000000"

    Sample of the color black

    "white""w"[1 1 1]"#FFFFFF"

    Sample of the color white

    "none"Not applicableNot applicableNot applicableNo color

    Here are the RGB triplets and hexadecimal color codes for the default colors MATLAB® uses in many types of plots.

    RGB TripletHexadecimal Color CodeAppearance
    [0 0.4470 0.7410]"#0072BD"

    Sample of RGB triplet [0 0.4470 0.7410], which appears as dark blue

    [0.8500 0.3250 0.0980]"#D95319"

    Sample of RGB triplet [0.8500 0.3250 0.0980], which appears as dark orange

    [0.9290 0.6940 0.1250]"#EDB120"

    Sample of RGB triplet [0.9290 0.6940 0.1250], which appears as dark yellow

    [0.4940 0.1840 0.5560]"#7E2F8E"

    Sample of RGB triplet [0.4940 0.1840 0.5560], which appears as dark purple

    [0.4660 0.6740 0.1880]"#77AC30"

    Sample of RGB triplet [0.4660 0.6740 0.1880], which appears as medium green

    [0.3010 0.7450 0.9330]"#4DBEEE"

    Sample of RGB triplet [0.3010 0.7450 0.9330], which appears as light blue

    [0.6350 0.0780 0.1840]"#A2142F"

    Sample of RGB triplet [0.6350 0.0780 0.1840], which appears as dark red

    Example: 'blue'

    Example: [0 0 1]

    Example: '#0000FF'

    Object Functions

    showShow object in satellite scenario viewer
    accessStatusStatus of access between first and last node defining access analysis
    accessIntervalsIntervals during which access status is true
    accessPercentagePercentage of time when access exists between first and last node in access analysis
    hideHide satellite scenario entity from viewer

    Examples

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    Create a satellite scenario and add ground stations from latitudes and longitudes.

    startTime = datetime(2020,5,1,11,36,0);
    stopTime = startTime + days(1);
    sampleTime = 60;
    sc = satelliteScenario(startTime,stopTime,sampleTime);
    lat = 10;
    lon = -30;
    gs = groundStation(sc,lat,lon);

    Add satellites using Keplerian elements.

    semiMajorAxis = 10000000;
    eccentricity = 0;
    inclination = 10; 
    rightAscensionOfAscendingNode = 0; 
    argumentOfPeriapsis = 0; 
    trueAnomaly = 0; 
    sat = satellite(sc,semiMajorAxis,eccentricity,inclination, ...
            rightAscensionOfAscendingNode,argumentOfPeriapsis,trueAnomaly);

    Add access analysis to the scenario and obtain the table of intervals of access between the satellite and the ground station.

    ac = access(sat,gs);
    intvls = accessIntervals(ac)
    intvls=8×8 table
           Source              Target          IntervalNumber         StartTime                EndTime           Duration    StartOrbit    EndOrbit
        _____________    __________________    ______________    ____________________    ____________________    ________    __________    ________
    
        "Satellite 2"    "Ground station 1"          1           01-May-2020 11:36:00    01-May-2020 12:04:00      1680          1            1    
        "Satellite 2"    "Ground station 1"          2           01-May-2020 14:20:00    01-May-2020 15:11:00      3060          1            2    
        "Satellite 2"    "Ground station 1"          3           01-May-2020 17:27:00    01-May-2020 18:18:00      3060          3            3    
        "Satellite 2"    "Ground station 1"          4           01-May-2020 20:34:00    01-May-2020 21:25:00      3060          4            4    
        "Satellite 2"    "Ground station 1"          5           01-May-2020 23:41:00    02-May-2020 00:32:00      3060          5            5    
        "Satellite 2"    "Ground station 1"          6           02-May-2020 02:50:00    02-May-2020 03:39:00      2940          6            6    
        "Satellite 2"    "Ground station 1"          7           02-May-2020 05:59:00    02-May-2020 06:47:00      2880          7            7    
        "Satellite 2"    "Ground station 1"          8           02-May-2020 09:06:00    02-May-2020 09:56:00      3000          8            9    
    
    

    Play the scenario to visualize the ground stations.

    play(sc)

    Version History

    Introduced in R2021a