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@Article{LucenaAlFiPiRiSi:2017:FuDiBP,
               author = "Lucena, Antonio Macilio Pereira de and Almeida Filho, Magno 
                         Prud{\^e}ncio de and Figueiredo, Caio Gomes de and Pimental, 
                         Diego Braga and Rios, Clauson Sales do Nascimento and Silva, 
                         Francisco de Assis Tavares Ferreira da",
          affiliation = "{Instituto Nacional de Pesquisas Espaciais (INPE)} and 
                         {Universidade de Fortaleza (UNIFOR)} and {Universidade Federal do 
                         Cear{\'a} (UFC)} and {Instituto Nacional de Pesquisas Espaciais 
                         (INPE)} and {Instituto Federal do Cear{\'a} (IFCE)} and 
                         {Instituto Nacional de Pesquisas Espaciais (INPE)}",
                title = "Fully digital BPSK demodulator for satellite supressed carrier 
                         telecommand system",
              journal = "International Journal of Satellite Communications and Networking",
                 year = "2017",
               volume = "35",
               number = "4",
                pages = "359--374",
                month = "July/Aug.",
             keywords = "BPSK, demodulator, telecommand, FPGA, fully digital, space 
                         communications.",
             abstract = "In this paper, we present the design of a fully digital binary 
                         phase shift keying demodulator for application in satellite 
                         high-rate suppressed carrier telecommand system. The proposed 
                         system digitalizes the received signal in the intermediate 
                         frequency stage using bandpass sampling technique, and the 
                         resulting baseband signal is used to synchronization of symbol and 
                         phase and to bit detection. The design of all functional modules 
                         is presented in details. Another innovation presented in this work 
                         is the inclusion of a non-linearity in the phase synchronizer 
                         module to permit its operation independent from the signal 
                         amplitude. Moreover, aiming the characterization and performance 
                         evaluation of the system, we do some original mathematical 
                         analyses. Finally, test results show that the demodulator complies 
                         all the project requirements, and the prototype implementation 
                         loss, in terms of bit energy to noise power density ratio, is less 
                         than 0.3 dB.",
                 issn = "1542-0973",
             language = "en",
           targetfile = "lucena_fully.pdf",
        urlaccessdate = "05 dez. 2020"
}


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