Title :
On the robustness of an analog VLSI implementation of a time encoding machine
Author :
Kinget, Peter R. ; Lazar, Aurel A. ; Tóth, László T.
Author_Institution :
Dept. of Electr. Eng., Columbia Univ., New York, NY, USA
Abstract :
Time encoding is a mechanism for representing the information contained in a continuous time, bandlimited, analog signal as the zero-crossings of a binary signal. Time decoding algorithms have been developed that make a perfect recovery of time encoded bandlimited signals possible. We consider a simple one-opamp active RC implementation of the time encoder and investigate the robustness in performance of the time decoder when the former is subject to non-idealities of the analog VLSI realization. We show that up to a constant scaling factor, delay and offset the input signal can be accurately reconstructed even if the opamp has a finite DC gain and finite bandwidth and the circuit exhibits parameter offsets. We develop an experimental upper bound for the reconstruction error that can be used in the design of the encoder. The analytical results are verified with numerical simulations.
Keywords :
RC circuits; VLSI; active networks; analogue integrated circuits; bandlimited signals; decoding; encoding; operational amplifiers; signal reconstruction; signal representation; VLSI nonidealities; analog VLSI implementation; analog signal representation; bandlimited signal; binary signal zero-crossings representation; circuit parameter offsets; continuous time signal; finite DC gain opamp; finite bandwidth opamp; one-opamp active RC implementation; reconstruction error upper bound; scaling factor; time decoder; time decoding; time encoding; time encoding machine robustness; Bandwidth; Decoding; Encoding; Informatics; Integral equations; Robustness; Sampling methods; Telecommunications; Trigger circuits; Very large scale integration;
Conference_Titel :
Circuits and Systems, 2005. ISCAS 2005. IEEE International Symposium on
Print_ISBN :
0-7803-8834-8
DOI :
10.1109/ISCAS.2005.1465562