IC FABRICATION UNDER INTERVAL-SMOOTHNESS FLOW CONTROL TECHNIQUE
碩士 === 東海大學 === 數學系 === 90 === Abstract This paper is the continuation of a series study led by Dr. Liu which is about the design of flow-control technique and simulation programming of IC fabrication system. We propose a new flow-control technique called "the interval-smoothness...
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ndltd-TW-090THU004790042015-10-13T14:41:26Z http://ndltd.ncl.edu.tw/handle/94276414709078829097 IC FABRICATION UNDER INTERVAL-SMOOTHNESS FLOW CONTROL TECHNIQUE 區間平穩流控技術下的IC製造系統 ChaoChing Wang 王朝慶 碩士 東海大學 數學系 90 Abstract This paper is the continuation of a series study led by Dr. Liu which is about the design of flow-control technique and simulation programming of IC fabrication system. We propose a new flow-control technique called "the interval-smoothness- short-value technique ". Its design is based on a global view of the operation system while other flow-control techniques are based on local views. In addition, our study extend from the original single-process operation system to the current double-process system. The code lines of the simulation program are decreased from 5364 to 3028. Also the time of a simulation run is shortened by 67%, and the throughput is increased by 3.5%. This software can evaluate some performance like the throughput, time for delivering goods, and the distribution of the numbers of different machines. The study above is done by Mr. Chen and I. We share the same results of the study but branch out in writing up the theses. Mr. Chen puts stress on the explanation of the simulation program and related data under the double-process operation system. However, I emphasize on the contrasts between our new technique and the previous flow-control technique in the series. L.Liu 劉力 2000 學位論文 ; thesis 78 zh-TW |
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碩士 === 東海大學 === 數學系 === 90 === Abstract
This paper is the continuation of a series study led by Dr. Liu which is about the design of flow-control technique and simulation programming of IC fabrication system. We propose a new flow-control technique called "the interval-smoothness- short-value technique ". Its design is based on a global view of the operation system while other flow-control techniques are based on local views. In addition, our study extend from the original single-process operation system to the current double-process system. The code lines of the simulation program are decreased from 5364 to 3028. Also the time of a simulation run is shortened by 67%, and the throughput is increased by 3.5%. This software can evaluate some performance like the throughput, time for delivering goods, and the distribution of the numbers of different machines. The study above is done by Mr. Chen and I. We share the same results of the study but branch out in writing up the theses. Mr. Chen puts stress on the explanation of the simulation program and related data under the double-process operation system. However, I emphasize on the contrasts between our new technique and the previous flow-control technique in the series.
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author2 |
L.Liu |
author_facet |
L.Liu ChaoChing Wang 王朝慶 |
author |
ChaoChing Wang 王朝慶 |
spellingShingle |
ChaoChing Wang 王朝慶 IC FABRICATION UNDER INTERVAL-SMOOTHNESS FLOW CONTROL TECHNIQUE |
author_sort |
ChaoChing Wang |
title |
IC FABRICATION UNDER INTERVAL-SMOOTHNESS FLOW CONTROL TECHNIQUE |
title_short |
IC FABRICATION UNDER INTERVAL-SMOOTHNESS FLOW CONTROL TECHNIQUE |
title_full |
IC FABRICATION UNDER INTERVAL-SMOOTHNESS FLOW CONTROL TECHNIQUE |
title_fullStr |
IC FABRICATION UNDER INTERVAL-SMOOTHNESS FLOW CONTROL TECHNIQUE |
title_full_unstemmed |
IC FABRICATION UNDER INTERVAL-SMOOTHNESS FLOW CONTROL TECHNIQUE |
title_sort |
ic fabrication under interval-smoothness flow control technique |
publishDate |
2000 |
url |
http://ndltd.ncl.edu.tw/handle/94276414709078829097 |
work_keys_str_mv |
AT chaochingwang icfabricationunderintervalsmoothnessflowcontroltechnique AT wángcháoqìng icfabricationunderintervalsmoothnessflowcontroltechnique AT chaochingwang qūjiānpíngwěnliúkòngjìshùxiàdeiczhìzàoxìtǒng AT wángcháoqìng qūjiānpíngwěnliúkòngjìshùxiàdeiczhìzàoxìtǒng |
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