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Actuation / Application checkpointing / Amorphous computing / Parallel computing / Regional specification


Self-Timed Patterning Micah Z. Brodsky Computer Science and Artificial Intelligence Laboratory Massachusetts Institute of Technology Cambridge, MA Email:
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Document Date: 2014-05-06 04:03:41


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File Size: 315,92 KB

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Company

Cambridge University Press / Ford / MIT Press / Brodsky / Google / Artificial Intelligence Laboratory / /

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Facility

Artificial Intelligence Laboratory Massachusetts Institute of Technology Cambridge / /

IndustryTerm

control algorithm / classical amorphous computing model / spatial computing / asynchronous protocol / amorphous computing / spatial patterning algorithms / amorphous computing medium / opposite solution / gene regulatory networks / hop count gradient algorithm / propagator networks / communication protocols / gradient algorithm / computing / closed-loop control algorithm / overall algorithm / energy-minimization mechanical simulator modeling cells / distributed systems / /

Organization

Cambridge University / Institute of Technology Cambridge / National Science Foundation / Massachusetts Institute of Technology / /

Person

Alexey Radul / Gerald Jay Sussman / /

Position

feed-forward / ACKNOWLEDGMENT The author / head / /

ProvinceOrState

Oregon / Massachusetts / /

PublishedMedium

Complex Systems / /

Technology

same gradient algorithm / overall algorithm / spatial patterning algorithms / closed-loop control algorithm / control algorithm / Simulation / communication protocols / hop count gradient algorithm / /

URL

http /

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