DocumentCode
680013
Title
Photonic analogue-to-digital converter based on wavelength division multiplexing technique
Author
Alves, T. ; Cartaxo, A.
Author_Institution
Group of Res. on Opt. Fibre Telecommun. Syst., Inst. Super. Tecnico, Lisbon, Portugal
fYear
2011
fDate
18-21 July 2011
Firstpage
1
Lastpage
10
Abstract
A photonic (Ph) analogue-to-digital (ADC) converter architecture based on the wavelength division multiplexing (WDM) technique used to provide compressed spectrum of the ultra wideband radio signals that are being used in a given pico-cell area for monitoring purposes is presented. The signal at the different points of the WDM Ph-ADC architecture is analyzed and discussed in detail. The advantages/disadvantages of the WDM architecture are identified and compared with its time division multiplexing (TDM) counterpart. It is shown that the WDM Ph-ADC architecture provides adequate time stretching of the wireless signals captured in a given pico-cell. This system enables relaxing the bandwidth requirements of the electrical ADCs used to digitize the wireless signals prior digital signal processing is applied for spectrum and transceivers localization monitoring. In addition, it is concluded that the WDM Ph-ADC architecture supports higher pulse repetition rates than the TDM Ph-ADC architecture being of special interest when a fast up-date of the radio channel monitoring is required.
Keywords
analogue-digital conversion; picocellular radio; radio transceivers; time division multiplexing; ultra wideband communication; wavelength division multiplexing; TDM Ph-ADC architecture; WDM Ph-ADC architecture; compressed spectrum; digital signal processing; photonic analogue-to-digital converter; picocell area; radio channel monitoring; spectrum localization monitoring; time division multiplexing; transceiver localization monitoring; ultra wideband radio signal; wavelength division multiplexing technique; Bandwidth; Optical crosstalk; Optical distortion; Optical pulses; Optical sensors; Wavelength division multiplexing; Photonic analogue; Time stretching; Ultra wideband; Wavelength division multiplexing; to-digital converter;
fLanguage
English
Publisher
ieee
Conference_Titel
Optical Communication Systems (OPTICS), 2011 Proceedings of the International Conference on
Conference_Location
Seville
Type
conf
Filename
6732134
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