On Knockout-based AUM Switches
碩士 === 國立交通大學 === 電子研究所 === 84 === In the Knockout switch, it was observed that satisfactory cell lossperformance could be obtained with a modest number of concentrator output independent of the switch dimension. Several Knockout-ba...
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ndltd-TW-084NCTU04300762016-02-05T04:16:36Z http://ndltd.ncl.edu.tw/handle/01088125112523971587 On Knockout-based AUM Switches 擊出型ATM交換元 Chen, Jei-Ching 陳捷慶 碩士 國立交通大學 電子研究所 84 In the Knockout switch, it was observed that satisfactory cell lossperformance could be obtained with a modest number of concentrator output independent of the switch dimension. Several Knockout-based switch architectures have sinc been proposed in which techniques such as concentrator feedback with input buffering and output groupingwere employed to reduce the number of concentrator outputs, and hencethe complexity. In this paper, we propose the Knockout switch withgrouping (KIG) which pre-concentrates switch inputs in groups, and thus reduces the number of concentrator inputs. Such complexity reductionof concentrators greatly outweighs the overhead in pre- concentratorsbased on the estimated layout area. The KIG switch can be furtherimproved by employing output buffer feedback and output grouping. Itwas found that the KIG switch with output grouping (KIGOG) is capableof achieving comparable cell loss performance with less area comparing to theone with output buffer feedback. When comparing to other Knockout-based switches with the same output grouping factor and comparable performanceunder bursty traffic, the KIGOG switch requires the least layout area,which is less than one half of the Abacus switch, and is about one thirdof the Growable switch. C. Bernard Shung 項春申 1996 學位論文 ; thesis 81 zh-TW |
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Others
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碩士 === 國立交通大學 === 電子研究所 === 84 === In the Knockout switch, it was observed that satisfactory cell
lossperformance could be obtained with a modest number of
concentrator output independent of the switch dimension.
Several Knockout-based switch architectures have sinc been
proposed in which techniques such as concentrator feedback
with input buffering and output groupingwere employed to reduce
the number of concentrator outputs, and hencethe complexity. In
this paper, we propose the Knockout switch withgrouping (KIG)
which pre-concentrates switch inputs in groups, and thus reduces
the number of concentrator inputs. Such complexity reductionof
concentrators greatly outweighs the overhead in pre-
concentratorsbased on the estimated layout area. The KIG switch
can be furtherimproved by employing output buffer feedback and
output grouping. Itwas found that the KIG switch with output
grouping (KIGOG) is capableof achieving comparable cell loss
performance with less area comparing to theone with output
buffer feedback. When comparing to other Knockout-based switches
with the same output grouping factor and comparable
performanceunder bursty traffic, the KIGOG switch requires the
least layout area,which is less than one half of the Abacus
switch, and is about one thirdof the Growable switch.
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author2 |
C. Bernard Shung |
author_facet |
C. Bernard Shung Chen, Jei-Ching 陳捷慶 |
author |
Chen, Jei-Ching 陳捷慶 |
spellingShingle |
Chen, Jei-Ching 陳捷慶 On Knockout-based AUM Switches |
author_sort |
Chen, Jei-Ching |
title |
On Knockout-based AUM Switches |
title_short |
On Knockout-based AUM Switches |
title_full |
On Knockout-based AUM Switches |
title_fullStr |
On Knockout-based AUM Switches |
title_full_unstemmed |
On Knockout-based AUM Switches |
title_sort |
on knockout-based aum switches |
publishDate |
1996 |
url |
http://ndltd.ncl.edu.tw/handle/01088125112523971587 |
work_keys_str_mv |
AT chenjeiching onknockoutbasedaumswitches AT chénjiéqìng onknockoutbasedaumswitches AT chenjeiching jīchūxíngatmjiāohuànyuán AT chénjiéqìng jīchūxíngatmjiāohuànyuán |
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