DocumentCode
1950766
Title
Low spurious signal homodyne digital receiver
Author
Cantrell, B. ; McConnell, John ; Thurber, Alison ; Newton, Daniel
Author_Institution
Chief Scientist, SFA, Crofton, MD, USA
fYear
2006
fDate
24-27 April 2006
Abstract
Digital superheterodyne receivers employing two or more frequency conversion stages have been successfully employed in radars and communication equipment for many years. More recently, less complex single frequency conversion receivers, termed "homodyne receivers," have been revived and employed in lower performance equipment. The most significant problem limiting the performance in single frequency conversion directly to baseband is that of spurious signals due to the non-linear effects in the components. This paper describes a simple means in which second-order spurious signals that are generated from out-of-band signals can be cancelled while maintaining the signal of interest. Given that these fairly low, yet significant, spurious signals are cancelled and the in-band signal of interest is not to large, this new homodyne receiver does not have the issues with images that are present in superheterodyne receivers and furthermore, it may be smaller, less expensive, less complex, and should draw less power than the superheterodyne receivers. This receiver concept, if proven to be successful, might be employed in digital array radars (DAR). In this DAR application, ones own echo signals would only be of modest power levels but the out-of-band interfering signals that can be present could be of very large power levels. Furthermore, there may be similar applications in communications.
Keywords
array signal processing; echo; radar receivers; radar signal processing; radiofrequency interference; DAR; digital array radar; echo signal; frequency conversion; homodyne digital receiver; nonlinear effect; out-of-band interfering signal; second-order spurious signal; superheterodyne receiver; Baseband; Circuits; Communication equipment; Frequency conversion; Mathematics; RF signals; Radar equipment; Radar imaging; Signal generators; Signal processing;
fLanguage
English
Publisher
ieee
Conference_Titel
Radar, 2006 IEEE Conference on
Print_ISBN
0-7803-9496-8
Type
conf
DOI
10.1109/RADAR.2006.1631842
Filename
1631842
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