Published 1996 | Version Published
Book Section - Chapter Open

Parallel analog VLSI architectures for computation of heading direction and time-to-contact

Abstract

We describe two parallel analog VLSI architectures that integrate optical flow data obtained from arrays of elementary velocity sensors to estimate heading direction and time-to-contact. For heading direction computation, we performed simulations to evaluate the most important qualitative properties of the optical flow field and determine the best functional operators for the implementation of the architecture. For time-to-contact we exploited the divergence theorem to integrate data from all velocity sensors present in the architecture and average out possible errors.

Additional Information

© 1996 Massachusetts Institute of Technology. This work was supported by grants from ONR, ERC and Daimler-Benz AG. The velocity sensor was developed in collaboration with R. Sarpeshkar. The chips were fabricated through the MOSIS VLSI Fabrication Service.

Attached Files

Published - 1125-parallel-analog-vlsi-architectures-for-computation-of-heading-direction-and-time-to-contact.pdf

Files

1125-parallel-analog-vlsi-architectures-for-computation-of-heading-direction-and-time-to-contact.pdf

Additional details

Identifiers

Eprint ID
64688
Resolver ID
CaltechAUTHORS:20160223-151638158

Funding

Office of Naval Research (ONR)
European Research Council (ERC)
Daimler-Benz AG

Dates

Created
2016-02-24
Created from EPrint's datestamp field
Updated
2019-10-03
Created from EPrint's last_modified field

Caltech Custom Metadata

Caltech groups
Koch Laboratory (KLAB)
Series Name
Advances in Neural Information Processing Systems
Series Volume or Issue Number
8