DocumentCode :
966425
Title :
Algorithms for a Sparse Reconfigurable Adaptive Filter and a Photonic Switch Architecture
Author :
Hwang, Suk-seung ; Shynk, John J. ; Kang, Taehyuk ; Bowers, John E.
Author_Institution :
California Univ., Santa Barbara
Volume :
55
Issue :
1
fYear :
2008
Firstpage :
347
Lastpage :
360
Abstract :
A nonblocking photonic switch can be used to implement a tapped delay line with a large number of adaptive weights and a wide range of time delays. An advantage of using optical tapped delay lines for adaptive filtering is that the operating frequency can be quite high, in the 10-100 GHz range. We present a sparse reconfigurable adaptive filter (SRAF) based on a photonic switch with an input/output connection architecture that can be represented by a matrix of adaptive weights. This unique parallel structure can be reconfigured in an adaptive manner to implement a sparse filter impulse response for use in many applications. We consider an adaptive algorithm for this filter that chooses the input and output delays using a cross-correlation-based approach and connects these delays by weights that are adapted using a gradient algorithm. An alternative adaptive algorithm is also considered that is based on a system identification formulation where the weights are first adapted, and then the appropriate delay combinations are chosen. A search algorithm for implementing the connection constraint required by the SRAF is also discussed whereby each input is connected to only one output at any moment. Computer simulation examples are presented to illustrate the behavior of the filter for a system identification model.
Keywords :
adaptive filters; optical delay lines; photonic switching systems; adaptive algorithm; adaptive filtering; adaptive weight; connection constraint; nonblocking photonic switch; optical tapped delay line; photonic switch architecture; search algorithm; sparse filter impulse response; sparse reconfigurable adaptive filter; system identification formulation; Adaptive filtering; photonic switch; sparse filter impulse response; system identification;
fLanguage :
English
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
Publisher :
ieee
ISSN :
1549-8328
Type :
jour
DOI :
10.1109/TCSI.2007.910647
Filename :
4378243
Link To Document :
بازگشت