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Binary Phase Shift Keying Modulation (BPSK): Difference between revisions

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{{Article Infobox2
{{Article Infobox2
|Category=Fundamentals
|Category=Fundamentals
|Title={{PAGENAME}}
|Authors=J.A Ávila Rodríguez, University FAF Munich, Germany.
|Authors= J.A Ávila Rodríguez, University FAF Munich, Germany.
|Level=Advanced
|Level=Advanced
|YearOfPublication=2011
|YearOfPublication=2011
|Title={{PAGENAME}}
}}
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A very important and useful signal in satellite navigation is the BPSK modulation which was in fact the first one to be used for Satellite Navigation. In spite of its simplicity, it is still used nowadays but could eventually be substituted by the [[Binary Coded Symbols (BCS)|BCS modulation]] or combinations with this one in the medium-long term.
A very important and useful signal in satellite navigation is the BPSK modulation which was in fact the first one to be used for Satellite Navigation. In spite of its simplicity, it is still used nowadays but could eventually be substituted by the [[Binary Coded Symbols (BCS)|BCS modulation]] or combinations with this one in the medium-long term.
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::[[File: BPSK_Eq_4.png|none|320px]]
::[[File: BPSK_Eq_4.png|none|320px]]
== Credits ==
The information presented in this NAVIPEDIA’s article is an extract of the PhD work performed by Dr. Jose Ángel Ávila Rodríguez in the FAF University of Munich as part of his Doctoral Thesis “On Generalized Signal Waveforms for Satellite Navigation” presented in June 2008, Munich (Germany)





Latest revision as of 09:06, 25 November 2011


FundamentalsFundamentals
Title Binary Phase Shift Keying Modulation (BPSK)
Author(s) J.A Ávila Rodríguez, University FAF Munich, Germany.
Level Advanced
Year of Publication 2011

A very important and useful signal in satellite navigation is the BPSK modulation which was in fact the first one to be used for Satellite Navigation. In spite of its simplicity, it is still used nowadays but could eventually be substituted by the BCS modulation or combinations with this one in the medium-long term.

We will derive now the power spectral density of a BPSK(fc) using the general definition of BCS. According to this, any BPSK(fc) signal can be described as a BCS sequence with vector [math]\displaystyle{ \bar s }[/math]= [1 1 1 …1] whatever the length of the vector. We will derive the expression of the PSD generalizing over n.

First we build the [math]\displaystyle{ M^n \left ( \left [ \bar s \right ] \right ) }[/math] matrix for any n, which is shown to be:

BPSK Eq 1.png


According to this, the modulating function will be:

BPSK Eq 2.png


Once the modulating term has been calculated, the power spectral density can be expressed as follows:

BPSK Eq 3.png


After some maths (see GNSS Interference Model for details), expression (3) can be simplified to the well-known expression that we can find everywhere in the literature:

BPSK Eq 4.png


Credits

The information presented in this NAVIPEDIA’s article is an extract of the PhD work performed by Dr. Jose Ángel Ávila Rodríguez in the FAF University of Munich as part of his Doctoral Thesis “On Generalized Signal Waveforms for Satellite Navigation” presented in June 2008, Munich (Germany)