DocumentCode :
882912
Title :
The application of complex quantized feedback in integrated wireless receivers
Author :
Ebadi, Zahra S. ; Mirabbasi, Shahriar ; Saleh, Resve
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of British Columbia, Vancouver, BC
Volume :
53
Issue :
3
fYear :
2006
fDate :
3/1/2006 12:00:00 AM
Firstpage :
594
Lastpage :
603
Abstract :
Integrated wireless receiver architectures, such as direct-conversion receivers, offer many advantages over the conventional heterodyne receivers including smaller size, lower cost, and reduced power consumption. However, the design of monolithic receivers, using direct-conversion, involves many challenges including dealing with low-frequency disturbances, namely, dc-offset and 1/f noise (especially in CMOS implementations), in-phase (I) and quadrature (Q) amplitude and phase mismatch, local oscillator (LO) leakage, and even-order distortions. A cost-effective method to minimize the low-frequency disturbances is to use ac-coupling in the baseband signal path. However, it results in baseline wander effects, especially in spectrally efficient modulation schemes such as quadrature amplitude modulation (QAM) where the baseband signal spectrum contains a significant amount of energy near dc. A system solution to mitigate the effects of low-frequency disturbance is presented in this paper. The quantized feedback (QFB) technique is used in conjunction with ac-coupling to minimize the baseline wander effects. A cross-coupled (CC) QFB extension to compensate for the receiver local oscillator phase error as well as the IQ mismatch is also described. Simulation results are presented to demonstrate the effectiveness of this complex QFB technique
Keywords :
1/f noise; feedback; oscillators; radio receivers; IQ mismatch; QFB technique; ac-coupling; baseband signal path; baseband signal spectrum; baseline wander effects; integrated wireless receiver architectures; local oscillator phase error; low-frequency disturbances; monolithic receivers; quantized feedback technique; spectrally efficient modulation schemes; Baseband; Costs; Energy consumption; Feedback; Local oscillators; Low-frequency noise; Noise level; Phase distortion; Phase noise; Quadrature amplitude modulation; AC-coupling; IQ mismatch; RF front-end; carrier phase error; direct-conversion receivers (DCRs); quantized feedback (QFB); wireless receivers;
fLanguage :
English
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher :
ieee
ISSN :
1549-8328
Type :
jour
DOI :
10.1109/TCSI.2005.858756
Filename :
1610857
Link To Document :
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