Title : 
A new group demodulator for mobile communication systems
         
        
            Author : 
Kumagai, Tomoaki ; Kobayashi, Kiyoshi
         
        
            Author_Institution : 
NTT Access Network Service Syst. Labs., Kanagawa, Japan
         
        
        
        
        
            fDate : 
1/1/2000 12:00:00 AM
         
        
        
        
            Abstract : 
This paper proposes a group demodulator having a dual-parallel structure that employs multisymbol chirp Fourier transform to demodulate band-limited and bit asynchronous signals; the demodulator is sufficiently feasible for practical use unlike conventional group demodulators based on the chirp Fourier transform. Moreover, a new symbol timing offset detection scheme is also proposed to realize the aforementioned group demodulator, and the power consumption of the proposed group demodulator including the symbol timing offset detector is also evaluated. Computer simulation results show that the overall bit error rate (BER) degradation of the proposed group demodulator employing six-symbol chirp Fourier transform is less than 0.5 dB at BER=10-3  even when a root Nyquist (α=0.6) filter is used as the transmission band-limiting filter and symbol timing offset between the desired channel and the chirp sweep exists. The power consumption is lower than that of conventional demodulators when more than 120 carriers are handled
         
        
            Keywords : 
Fourier transforms; bandlimited signals; demodulation; demodulators; digital radio; error statistics; filtering theory; frequency division multiple access; land mobile radio; signal detection; synchronisation; timing; BER degradation; band-limited signals; bit asynchronous signals; bit error rate; chirp sweep; computer simulation results; digital mobile communication systems; dual-parallel structure; group demodulator; multisymbol chirp Fourier transform; power consumption; root Nyquist filter; symbol timing offset detection; symbol timing offset detector; transmission band-limiting filter; Bit error rate; Chirp; Computer simulation; Demodulation; Detectors; Energy consumption; Filters; Fourier transforms; Mobile communication; Timing;
         
        
        
            Journal_Title : 
Vehicular Technology, IEEE Transactions on