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Sustaining Moore’s Law in Embedded Computing through Probabilistic and Approximate Design: Retrospects and Prospects Krishna V. Palem Lakshmi N.B. Chakrapani
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Document Date: 2012-08-15 22:20:27


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Houston / Austin / Grenoble / New York / T. Mudge / /

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Application-Based Systems / TSMC / CRC Press / Canon / Princeton University Press / NCSU TechLib TSMC02 / Intel Corporation / Embedded Systems / SIAM Journal / /

Continent

Europe / /

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France / United States / /

Currency

USD / BRL / pence / /

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Prospects Krishna V. Palem Lakshmi N.B. Chakrapani Zvi M. Kedem VISEN Center Rice University / California Institute of Technology / Avinash Lingamneni Kirthi Krishna Muntimadugu VISEN Center Rice University / Georgia Institute of Technology / Nanyang Technological University / USA Courant Institute of Mathematical Sciences New York University New York / USA VISEN Center Rice University / Rice University / /

IndustryTerm

Energy aware computing / nm technology / probabilistic cmos devices / conventional cmos devices / cmos technology / fixed technology generation / probabilistic cmos technology / energy-probability relationship / probabilistic algorithm / dsp applications / Molecular electronic computing architectures / micro and nano electronics / digital signal processing algorithms / graphics processing / digital signal processing application / scaled noise-susceptible future cmos technology / higher energy consumption / energy-delay relationship / lower energy / technology road-map / energy savings / probabilistic devices / energy / Energy aware algorithm design / deterministic host processor / Low power image processors / energy consumption / probabilistic computing / higher energy investment / technology scaling / speech processing / metal oxide semiconductor / technology generations / less energy / ultra low-energy / energy budget / energy efficiency / software simulator / manufacturing / computing / molecular electronics / technology roadmap / low-energy / energy efficient implementations / ultra low-energy computing / molecular devices / probabilistic computational devices / low energy / identical and reliable nanometer-sized silicon devices / energy efficient adder design / fabricated encryption chip / aware computing / technology attributes / pcmos devices / mobile medical diagnostic devices / probabilistic application specific co-processor / Energy-efficient and metastability-immune timing-error detection / law arising / “good enough” systems / energy-delay product / signal processing / low-energy multimedia devices / energy efficient manner / energy benefits / probabilistic applications / conventional cmos technology / pcmos technology / energy saving mode using uniform voltage scaling / scaled silicon devices / digital signal processing applications / energy allocation / lowenergy computing / probabilistic algorithms / relative energy / signal processing application / digital signal processing primitives / manufacturing difficulties / example test chip / energy investment / computational device / computing systems / cmos devices / pcmos-based encryption chip / digital signal processing / using the same energy / /

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Great Lakes / /

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USA Courant Institute of Mathematical Sciences New York University New York / Princeton University / Rice University / US Defense Advanced Research Projects Agency / Department of Computer Science Technical Report / California Institute of Technology / Nanyang Technological University at Singapore / USA VISEN Center Rice University Houston / Georgia Institute of Technology / Computer Systems Organization / /

Person

James Meindl / Balasubramanian Seshasayee / Krishna Palem / Richard Karp / Harry Marr / Suresh Cheemalavagu / Avinash Lingamneni Kirthi Krishna Muntimadugu / Pinar Korkmaz / O. Rabin / Jason George / Bilge Akgul / Krishna V. Palem Lakshmi / /

Position

mobile video-player / Professor / model of computing / ABSTRACT General / representative / switches model of computing / driver / editor / Cadence Tools Virtuoso Layout editor / /

ProgrammingLanguage

EC / /

ProvinceOrState

New York / Texas / /

PublishedMedium

Japanese Journal of Applied Physics / SIAM Journal on Computing / Communications of the ACM / IEEE Communications Magazine / IEEE Transactions on Computers / /

Technology

pcmos technology / random access / 180 nm technology / digital signal processing algorithms / semiconductors / thermodynamics / optoelectronics / deterministic host processor / conventional cmos technology / medical diagnostic / semiconductor / Low power image processors / how probabilistic algorithms / probabilistic application specific co-processor / pcmos-based encryption chip / An example test chip / probabilistic CMOS technology / StrongArm sa-1100 processor / system-on-a-chip / 0.25µm technology / probabilistic algorithm / cmos technology / 250 nm technology / fabricated encryption chip / simulation / DSP / Integrated Circuit / /

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