Modeling and Performance Analysis of Route-Over and Mesh-Under Routing Schemes in 6LoWPAN under Error-Prone Channel Condition

6LoWPAN technology has attracted extensive attention recently. It is because 6LoWPAN is one of Internet of Things standard and it adapts to IPv6 protocol stack over low-rate wireless personal area network, such as IEEE 802.15.4. One view is that IP architecture is not suitable for low-rate wireless...

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Main Authors: Tsung-Han Lee, Hung-Chi Chu, Lin-Huang Chang, Hung-Shiou Chiang, Yen-Wen Lin
Format: Article
Language:English
Published: Wiley 2013-01-01
Series:Journal of Applied Mathematics
Online Access:http://dx.doi.org/10.1155/2013/242483
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author Tsung-Han Lee
Hung-Chi Chu
Lin-Huang Chang
Hung-Shiou Chiang
Yen-Wen Lin
author_facet Tsung-Han Lee
Hung-Chi Chu
Lin-Huang Chang
Hung-Shiou Chiang
Yen-Wen Lin
author_sort Tsung-Han Lee
collection DOAJ
description 6LoWPAN technology has attracted extensive attention recently. It is because 6LoWPAN is one of Internet of Things standard and it adapts to IPv6 protocol stack over low-rate wireless personal area network, such as IEEE 802.15.4. One view is that IP architecture is not suitable for low-rate wireless personal area network. It is a challenge to implement the IPv6 protocol stack into IEEE 802.15.4 devices due to that the size of IPv6 packet is much larger than the maximum packet size of IEEE 802.15.4 in data link layer. In order to solve this problem, 6LoWPAN provides header compression to reduce the transmission overhead for IP packets. In addition, two selected routing schemes, mesh-under and route-over routing schemes, are also proposed in 6LoWPAN to forward IP fragmentations under IEEE 802.15.4 radio link. The distinction is based on which layer of the 6LoWPAN protocol stack is in charge of routing decisions. In route-over routing scheme, the routing distinction is taken at the network layer and, in mesh-under, is taken by the adaptation layer. Thus, the goal of this research is to understand the performance of two routing schemes in 6LoWPAN under error-prone channel condition.
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institution Kabale University
issn 1110-757X
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language English
publishDate 2013-01-01
publisher Wiley
record_format Article
series Journal of Applied Mathematics
spelling doaj-art-62c4dba5eeb74b11bac94758aba41f2e2025-02-03T01:03:31ZengWileyJournal of Applied Mathematics1110-757X1687-00422013-01-01201310.1155/2013/242483242483Modeling and Performance Analysis of Route-Over and Mesh-Under Routing Schemes in 6LoWPAN under Error-Prone Channel ConditionTsung-Han Lee0Hung-Chi Chu1Lin-Huang Chang2Hung-Shiou Chiang3Yen-Wen Lin4Department of Computer Science, National Taichung University of Education, No. 140, Minsheng Road, West District, Taichung 40306, TaiwanDepartment of Information and Communication Engineering, Chaoyang University of Technology, No. 168, Ji-Fong East Road, Wu-Fong District, Taichung 41349, TaiwanDepartment of Computer Science, National Taichung University of Education, No. 140, Minsheng Road, West District, Taichung 40306, TaiwanDepartment of Computer Science, National Taichung University of Education, No. 140, Minsheng Road, West District, Taichung 40306, TaiwanDepartment of Computer Science, National Taichung University of Education, No. 140, Minsheng Road, West District, Taichung 40306, Taiwan6LoWPAN technology has attracted extensive attention recently. It is because 6LoWPAN is one of Internet of Things standard and it adapts to IPv6 protocol stack over low-rate wireless personal area network, such as IEEE 802.15.4. One view is that IP architecture is not suitable for low-rate wireless personal area network. It is a challenge to implement the IPv6 protocol stack into IEEE 802.15.4 devices due to that the size of IPv6 packet is much larger than the maximum packet size of IEEE 802.15.4 in data link layer. In order to solve this problem, 6LoWPAN provides header compression to reduce the transmission overhead for IP packets. In addition, two selected routing schemes, mesh-under and route-over routing schemes, are also proposed in 6LoWPAN to forward IP fragmentations under IEEE 802.15.4 radio link. The distinction is based on which layer of the 6LoWPAN protocol stack is in charge of routing decisions. In route-over routing scheme, the routing distinction is taken at the network layer and, in mesh-under, is taken by the adaptation layer. Thus, the goal of this research is to understand the performance of two routing schemes in 6LoWPAN under error-prone channel condition.http://dx.doi.org/10.1155/2013/242483
spellingShingle Tsung-Han Lee
Hung-Chi Chu
Lin-Huang Chang
Hung-Shiou Chiang
Yen-Wen Lin
Modeling and Performance Analysis of Route-Over and Mesh-Under Routing Schemes in 6LoWPAN under Error-Prone Channel Condition
Journal of Applied Mathematics
title Modeling and Performance Analysis of Route-Over and Mesh-Under Routing Schemes in 6LoWPAN under Error-Prone Channel Condition
title_full Modeling and Performance Analysis of Route-Over and Mesh-Under Routing Schemes in 6LoWPAN under Error-Prone Channel Condition
title_fullStr Modeling and Performance Analysis of Route-Over and Mesh-Under Routing Schemes in 6LoWPAN under Error-Prone Channel Condition
title_full_unstemmed Modeling and Performance Analysis of Route-Over and Mesh-Under Routing Schemes in 6LoWPAN under Error-Prone Channel Condition
title_short Modeling and Performance Analysis of Route-Over and Mesh-Under Routing Schemes in 6LoWPAN under Error-Prone Channel Condition
title_sort modeling and performance analysis of route over and mesh under routing schemes in 6lowpan under error prone channel condition
url http://dx.doi.org/10.1155/2013/242483
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AT linhuangchang modelingandperformanceanalysisofrouteoverandmeshunderroutingschemesin6lowpanundererrorpronechannelcondition
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