Signal Loss Aware Waveguide Routing Algorithm for Integrated Optics
碩士 === 國立成功大學 === 醫學資訊研究所 === 102 === Due to the superior nature of light, data transfer from module-to-module/chip- to-chip in photonic integrated circuit (PIC) could be accomplished in a more efficient way. Therefore, integrated optics is regarded as one of the most emerg- ing technologies in next g...
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ndltd-TW-102NCKU56740082016-03-07T04:11:06Z http://ndltd.ncl.edu.tw/handle/98405636037317863141 Signal Loss Aware Waveguide Routing Algorithm for Integrated Optics 應用於積體光學考量訊號損耗之光波導繞線演算法 Yi-CianYang 楊宜蒨 碩士 國立成功大學 醫學資訊研究所 102 Due to the superior nature of light, data transfer from module-to-module/chip- to-chip in photonic integrated circuit (PIC) could be accomplished in a more efficient way. Therefore, integrated optics is regarded as one of the most emerg- ing technologies in next generation and plays an important role in several real- world applications such as telecommunication, information processing, ......, etc. During light propagation, diffraction and refraction may occur because of the impact of waveguide crossing and bending, respectively. Unlike electronic integrated circuits (EIC), PIC lacks the inherent signal restoration capabilities of static-CMOS. Therefore signal loss is unavoidable and is considered as the bottleneck of waveguide routing in PIC. Existing works utilized the inherent sorting-based techniques with some revision to maintain the crossing minimal. Also several constraints are imposed in expection of reducing the number of bending. However, the sorting-based technique with some constraints imposed cannot effectively reduce the signal loss. As a result of the inflexibility of this routing mechanism, the number of sharp bendings may rather increase, which results to more attenuation of transmitted signal accordingly. We develop an Integer Linear programming (ILP) model for waveguide routing algorithm to simultaneously minimize the impact of waveguide crossing, bending, and the number of routing tracks. Moreover, a crossing-driven partitioning approach is adopted to further reduce the time complexity of ILP model. Experimental results show that our proposed approach is very effective on improving both the signal loss and area utilization. Tsung-Yi Ho 何宗易 2014 學位論文 ; thesis 47 en_US |
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en_US |
format |
Others
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NDLTD |
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碩士 === 國立成功大學 === 醫學資訊研究所 === 102 === Due to the superior nature of light, data transfer from module-to-module/chip-
to-chip in photonic integrated circuit (PIC) could be accomplished in a more
efficient way. Therefore, integrated optics is regarded as one of the most emerg-
ing technologies in next generation and plays an important role in several real-
world applications such as telecommunication, information processing, ......,
etc. During light propagation, diffraction and refraction may occur because of
the impact of waveguide crossing and bending, respectively. Unlike electronic
integrated circuits (EIC), PIC lacks the inherent signal restoration capabilities
of static-CMOS. Therefore signal loss is unavoidable and is considered as the
bottleneck of waveguide routing in PIC. Existing works utilized the inherent
sorting-based techniques with some revision to maintain the crossing minimal.
Also several constraints are imposed in expection of reducing the number of
bending. However, the sorting-based technique with some constraints imposed
cannot effectively reduce the signal loss. As a result of the inflexibility of this
routing mechanism, the number of sharp bendings may rather increase, which
results to more attenuation of transmitted signal accordingly. We develop an
Integer Linear programming (ILP) model for waveguide routing algorithm to
simultaneously minimize the impact of waveguide crossing, bending, and the
number of routing tracks. Moreover, a crossing-driven partitioning approach
is adopted to further reduce the time complexity of ILP model. Experimental
results show that our proposed approach is very effective on improving both
the signal loss and area utilization.
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author2 |
Tsung-Yi Ho |
author_facet |
Tsung-Yi Ho Yi-CianYang 楊宜蒨 |
author |
Yi-CianYang 楊宜蒨 |
spellingShingle |
Yi-CianYang 楊宜蒨 Signal Loss Aware Waveguide Routing Algorithm for Integrated Optics |
author_sort |
Yi-CianYang |
title |
Signal Loss Aware Waveguide Routing Algorithm for Integrated Optics |
title_short |
Signal Loss Aware Waveguide Routing Algorithm for Integrated Optics |
title_full |
Signal Loss Aware Waveguide Routing Algorithm for Integrated Optics |
title_fullStr |
Signal Loss Aware Waveguide Routing Algorithm for Integrated Optics |
title_full_unstemmed |
Signal Loss Aware Waveguide Routing Algorithm for Integrated Optics |
title_sort |
signal loss aware waveguide routing algorithm for integrated optics |
publishDate |
2014 |
url |
http://ndltd.ncl.edu.tw/handle/98405636037317863141 |
work_keys_str_mv |
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