A multi-channel wideband direct-conversion receiver using synchronization signal from a tunable injection locked oscillator

Synchronization is a challenging issue facing industrial designers that has not been researched often by academic researchers. The conventional techniques are phase-locked loop (PLL), digital PLL, or direct-digital synthesis (DDS). With any one or a combination of these techniques, high performance can be achieved at the expense of complexity or cost. In this paper, another technique, the injection locking technique, is explored to provide synchronization for a direct-conversion receiver. More specifically, signal synchronization is achieved with a selectable dielectric-resonator injection locked oscillator (DRILO) designed at a free running frequency of 3.634 GHz. The receiver developed was able to recover the carrier and IQ signals from 3.58 GHz, 3.63 GHz and 3.69 GHz with 50 Msps to 63 Msps QPSK modulated signals. The receiver designed as such is novel and simple, and can find applications in many modern communications such as WiMax. It can also overcome frequency synchronization problems faced in OFDM systems.

[1]  Zhizhang Chen,et al.  Injection-Locked Phase-Locked Loop for BPSK Coherent Demodulation: Theory and Design , 2007, 2007 International Symposium on Signals, Systems and Electronics.

[2]  Ming Yu,et al.  Design of manifold-coupled multiplexers , 2007, IEEE Microwave Magazine.

[3]  Douglas A. Hill,et al.  Carrier detection of PSK signals , 2001, IEEE Trans. Commun..

[4]  Zhizhang Chen,et al.  A direct down-conversion receiver for coherent extraction of digital baseband signals using the injection locked oscillators , 2008, 2008 IEEE Radio and Wireless Symposium.

[5]  A.P.S. Khanna,et al.  Review of Dielectric Resonator Oscillator Technology , 1987, 41st Annual Symposium on Frequency Control.

[6]  P. Edmonson,et al.  Injection locking techniques for a 1-GHz digital receiver using acoustic-wave devices , 1992, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.