RT-CaCC: A reliable transport with cache-aware congestion control protocol in wireless sensor networks

Reliability of data transport in wireless sensor networks is critical in the presence of high packet loss level either due to link contentions or buffer congestions. Mechanisms such as intermediate caching and congestion control can enhance the reliability performance of transport protocols in the e...

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Main Authors: Alipio, Melchizedek I., Tiglao, Nestor Michael C.
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Published: Animo Repository 2018
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Online Access:https://animorepository.dlsu.edu.ph/faculty_research/12095
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Institution: De La Salle University
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spelling oai:animorepository.dlsu.edu.ph:faculty_research-136192024-02-12T08:13:05Z RT-CaCC: A reliable transport with cache-aware congestion control protocol in wireless sensor networks Alipio, Melchizedek I. Tiglao, Nestor Michael C. Reliability of data transport in wireless sensor networks is critical in the presence of high packet loss level either due to link contentions or buffer congestions. Mechanisms such as intermediate caching and congestion control can enhance the reliability performance of transport protocols in the event of packet loss. However, these two mechanisms are designed independently for most cache-based transport protocols. In this paper, we developed a new reliable transport protocol with a cache-aware congestion control mechanism called RT-CaCC. RT-CaCC utilizes cache management policies such as cache insertion, cache elimination, and cache size allocation to mitigate packet losses in the network while maximizing cache utilization and bandwidth allocation. The protocol was evaluated in network topologies with different packet loss scenarios. Results showed that RT-CaCC obtained an average of 15%–38% improvement gain compared with baseline protocols. In addition, RT-CaCC consistently outperformed other cache-based transport protocols like distributed TCP caching and end-to-end reliable and congestion aware transport layer protocol in terms of cache utilization, end-to-end delay, and fairness metrics. Finally, the comparison between simulation and analytical results showed that there is an almost perfect match with the difference between curve points never exceeding 14% of the analytical cost. 2018-07-01T07:00:00Z text https://animorepository.dlsu.edu.ph/faculty_research/12095 info:doi/10.1109/TWC.2018.2827986 Faculty Research Work Animo Repository Cache memory Internet of things Wireless sensor networks Transportation Engineering
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
topic Cache memory
Internet of things
Wireless sensor networks
Transportation Engineering
spellingShingle Cache memory
Internet of things
Wireless sensor networks
Transportation Engineering
Alipio, Melchizedek I.
Tiglao, Nestor Michael C.
RT-CaCC: A reliable transport with cache-aware congestion control protocol in wireless sensor networks
description Reliability of data transport in wireless sensor networks is critical in the presence of high packet loss level either due to link contentions or buffer congestions. Mechanisms such as intermediate caching and congestion control can enhance the reliability performance of transport protocols in the event of packet loss. However, these two mechanisms are designed independently for most cache-based transport protocols. In this paper, we developed a new reliable transport protocol with a cache-aware congestion control mechanism called RT-CaCC. RT-CaCC utilizes cache management policies such as cache insertion, cache elimination, and cache size allocation to mitigate packet losses in the network while maximizing cache utilization and bandwidth allocation. The protocol was evaluated in network topologies with different packet loss scenarios. Results showed that RT-CaCC obtained an average of 15%–38% improvement gain compared with baseline protocols. In addition, RT-CaCC consistently outperformed other cache-based transport protocols like distributed TCP caching and end-to-end reliable and congestion aware transport layer protocol in terms of cache utilization, end-to-end delay, and fairness metrics. Finally, the comparison between simulation and analytical results showed that there is an almost perfect match with the difference between curve points never exceeding 14% of the analytical cost.
format text
author Alipio, Melchizedek I.
Tiglao, Nestor Michael C.
author_facet Alipio, Melchizedek I.
Tiglao, Nestor Michael C.
author_sort Alipio, Melchizedek I.
title RT-CaCC: A reliable transport with cache-aware congestion control protocol in wireless sensor networks
title_short RT-CaCC: A reliable transport with cache-aware congestion control protocol in wireless sensor networks
title_full RT-CaCC: A reliable transport with cache-aware congestion control protocol in wireless sensor networks
title_fullStr RT-CaCC: A reliable transport with cache-aware congestion control protocol in wireless sensor networks
title_full_unstemmed RT-CaCC: A reliable transport with cache-aware congestion control protocol in wireless sensor networks
title_sort rt-cacc: a reliable transport with cache-aware congestion control protocol in wireless sensor networks
publisher Animo Repository
publishDate 2018
url https://animorepository.dlsu.edu.ph/faculty_research/12095
_version_ 1800918920322875392