--- abstract: |-2 A functional focal-plane implementation of a 2D optical flow system is presented that detects an preserves motion discontinuities. The system is composed of two different network layers of analog computational units arranged in a retinotopical order. The units in the first layer (the optical flow network) estimate the local optical flow field in two visual dimensions, where the strength of their nearest-neighbor connections determines the amount of motion integration. Whereas in an earlier implementation \cite{Stocker_Douglas99} the connection strength was set constant in the complete image space, it is now \emph{dynamically and locally} controlled by the second network layer (the motion discontinuities network) that is recurrently connected to the optical flow network. The connection strengths in the optical flow network are modulated such that visual motion integration is ideally only facilitated within image areas that are likely to represent common motion sources. Results of an experimental aVLSI chip illustrate the potential of the approach and its functionality under real-world conditions. altloc: [] chapter: ~ commentary: ~ commref: ~ confdates: '26th - 29th may 2002' conference: IEEE Int. Symposium on Circuits and Systems ISCAS confloc: 'phoenix, U.S.A.' contact_email: ~ creators_id: [] creators_name: - family: stocker given: alan honourific: '' lineage: '' date: 2002 date_type: published datestamp: 2002-07-18 department: ~ dir: disk0/00/00/23/31 edit_lock_since: ~ edit_lock_until: ~ edit_lock_user: ~ editors_id: [] editors_name: [] eprint_status: archive eprintid: 2331 fileinfo: /style/images/fileicons/application_pdf.png;/2331/3/stocker.pdf full_text_status: public importid: ~ institution: ~ isbn: ~ ispublished: pub issn: ~ item_issues_comment: [] item_issues_count: 0 item_issues_description: [] item_issues_id: [] item_issues_reported_by: [] item_issues_resolved_by: [] item_issues_status: [] item_issues_timestamp: [] item_issues_type: [] keywords: 'motion segmentation, vision, optical flow, neuromorphic, aVLSI, efficient, optimization' lastmod: 2011-03-11 08:54:57 latitude: ~ longitude: ~ metadata_visibility: show note: ~ number: ~ pagerange: II-332-II-335 pubdom: FALSE publication: ~ publisher: ~ refereed: TRUE referencetext: ~ relation_type: [] relation_uri: [] reportno: ~ rev_number: 12 series: ~ source: ~ status_changed: 2007-09-12 16:44:16 subjects: - comp-neuro-sci - comp-sci-art-intel - comp-sci-mach-vis - comp-sci-neural-nets - comp-sci-robot succeeds: ~ suggestions: ~ sword_depositor: ~ sword_slug: ~ thesistype: ~ title: An improved 2D optical flow sensor for motion segmentation type: confpaper userid: 179 volume: ~