迷宮繞線與在迴轉率及障礙物限制下作最小成本之緩衝器嵌入

碩士 === 國立清華大學 === 資訊工程學系 === 96 === With the advanced VLSI technology, sharp slew rate and low power comsumption are often required in integrated circuit design. Timing buffering on non-critical nets may result in extra power dissipation and waste of buffering resource. Unfortunately, most previous...

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Main Authors: Seong-I Lei, 李尚貽
Other Authors: Wai-Kei Mak
Format: Others
Language:en_US
Online Access:http://ndltd.ncl.edu.tw/handle/70513903768974191690
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spelling ndltd-TW-096NTHU53920702015-11-27T04:04:16Z http://ndltd.ncl.edu.tw/handle/70513903768974191690 迷宮繞線與在迴轉率及障礙物限制下作最小成本之緩衝器嵌入 MazeRoutingwithMinimumCostBufferInsertionunderSlewandObstacleConstraints Seong-I Lei 李尚貽 碩士 國立清華大學 資訊工程學系 96 With the advanced VLSI technology, sharp slew rate and low power comsumption are often required in integrated circuit design. Timing buffering on non-critical nets may result in extra power dissipation and waste of buffering resource. Unfortunately, most previous works still optimized for delay instead of handling the slew constraints independently. For the related works, [7] proposed an equation to model slew while [5] used a capacitance-based slew model without considering interconnect resistivity. In this paper, the elementary problem of simultaneous routing and buffer insertion for two-pin nets is studied. We propose two optimal polynomial time algorithms for maze routing with minimum cost buffer insertion under slew and obstacle constraints and we employ two different slew models in our algorithms. Besides minimizing power/total buffer size, our algorithms can also be adapted to handle other buffering costs. It is more than an order of magnitude faster than maze routing with buffer insertion for optimal delay [2]. Experimental results demonstrate that our MCSB algorithm is very efficient and the runtime is insensitive to the slew constraints. Wai-Kei Mak 麥偉基 學位論文 ; thesis 28 en_US
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language en_US
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sources NDLTD
description 碩士 === 國立清華大學 === 資訊工程學系 === 96 === With the advanced VLSI technology, sharp slew rate and low power comsumption are often required in integrated circuit design. Timing buffering on non-critical nets may result in extra power dissipation and waste of buffering resource. Unfortunately, most previous works still optimized for delay instead of handling the slew constraints independently. For the related works, [7] proposed an equation to model slew while [5] used a capacitance-based slew model without considering interconnect resistivity. In this paper, the elementary problem of simultaneous routing and buffer insertion for two-pin nets is studied. We propose two optimal polynomial time algorithms for maze routing with minimum cost buffer insertion under slew and obstacle constraints and we employ two different slew models in our algorithms. Besides minimizing power/total buffer size, our algorithms can also be adapted to handle other buffering costs. It is more than an order of magnitude faster than maze routing with buffer insertion for optimal delay [2]. Experimental results demonstrate that our MCSB algorithm is very efficient and the runtime is insensitive to the slew constraints.
author2 Wai-Kei Mak
author_facet Wai-Kei Mak
Seong-I Lei
李尚貽
author Seong-I Lei
李尚貽
spellingShingle Seong-I Lei
李尚貽
迷宮繞線與在迴轉率及障礙物限制下作最小成本之緩衝器嵌入
author_sort Seong-I Lei
title 迷宮繞線與在迴轉率及障礙物限制下作最小成本之緩衝器嵌入
title_short 迷宮繞線與在迴轉率及障礙物限制下作最小成本之緩衝器嵌入
title_full 迷宮繞線與在迴轉率及障礙物限制下作最小成本之緩衝器嵌入
title_fullStr 迷宮繞線與在迴轉率及障礙物限制下作最小成本之緩衝器嵌入
title_full_unstemmed 迷宮繞線與在迴轉率及障礙物限制下作最小成本之緩衝器嵌入
title_sort 迷宮繞線與在迴轉率及障礙物限制下作最小成本之緩衝器嵌入
url http://ndltd.ncl.edu.tw/handle/70513903768974191690
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