DocumentCode
580951
Title
An efficient implementation of numerical integration using logical computation on stochastic bit streams
Author
Qian, Weikang ; Wang, Chen ; Li, Peng ; Lilja, David J. ; Bazargan, Kia ; Riedel, Marc D.
Author_Institution
Univ. of Michigan-SJTU Joint Inst., Shanghai Jiao Tong Univ., Shanghai, China
fYear
2012
fDate
5-8 Nov. 2012
Firstpage
156
Lastpage
162
Abstract
Numerical integration is a widely used approach for computing an approximate result of a definite integral. Conventional digital implementations of numerical integration using binary radix encoding are costly in terms of hardware and have long computational delay. This work proposes a novel method for performing numerical integration based on the paradigm of logical computation on stochastic bit streams. In this paradigm, ordinary digital circuits are employed but they operate on stochastic bit streams instead of deterministic values; the signal value is encoded by the probability of obtaining a one versus a zero in the streams. With this type of computation, complex arithmetic operations can be implemented with very simple circuitry. However, typically, such stochastic implementations have long computational delay, since long bit streams are required to encode precise values. This paper proposes a stochastic design for numerical integration characterized by both small area and short delay - so, in contrast to previous applications, a win on both metrics. The design is based on mathematical analysis that demonstrates that the summation of a large number of terms in the numerical integration could lead to a significant delay reduction. An architecture is proposed for this task. Experiments confirm that the stochastic implementation has smaller area and shorter delay than conventional implementations.
Keywords
adders; binary codes; delays; integration; mathematical analysis; probability; stochastic processes; adder; binary radix encoding; computational delay; definite integral; delay reduction; logical computation; mathematical analysis; numerical integration; ordinary digital circuits; probability; stochastic bit streams; stochastic design; Adders; Clocks; Delay; Encoding; Logic gates; Radiation detectors; Random variables;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer-Aided Design (ICCAD), 2012 IEEE/ACM International Conference on
Conference_Location
San Jose, CA
ISSN
1092-3152
Type
conf
Filename
6386603
Link To Document