DR-SDSN: An Elastic Differentiated Routing Framework for Software-Defined Satellite Networks
Software-defined satellite networking (SDSN) has recently gained unprecedented attention due to its great controllability for traffic delivery. However, it is still facing several fundamental challenges in routing, which mainly involves effective network maintenance, heterogeneous network convergenc...
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Veröffentlicht in: | IEEE wireless communications 2022-12, Vol.29 (6), p.80-86 |
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creator | Feng, Bohao Huang, Yunxue Tian, Aleteng Wang, Hongchao Zhou, Huachun Yu, Shui Zhang, Hongke |
description | Software-defined satellite networking (SDSN) has recently gained unprecedented attention due to its great controllability for traffic delivery. However, it is still facing several fundamental challenges in routing, which mainly involves effective network maintenance, heterogeneous network convergence, and customized flow steering. Hence, in this article, we propose an elastic routing framework for SDSN, aiming to first build a robust control path for signalling exchanges, then offer a transparent channel for IP services based on Loc/ID mappings and associated encapsulations, and finally enable hybrid packet forwarding manners to meet user various demands. Moreover, we define a new 8 B network header for DR-SDSN to further decrease overheads in packet encapsulations, where 16-bit addresses are used instead of 32-bit IPv4 and 128-bit IPv6 addresses. At last, we have implemented a corresponding proof-of-concept prototype with the modified Ryu and OvS, and the Linux socket application programming interface is also extended to handle our protocol with 16-bit addresses. Extensive evaluations are performed and associated results have confirmed the feasibility and advantages of the proposed DR-SDSN framework. |
doi_str_mv | 10.1109/MWC.011.2100578 |
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However, it is still facing several fundamental challenges in routing, which mainly involves effective network maintenance, heterogeneous network convergence, and customized flow steering. Hence, in this article, we propose an elastic routing framework for SDSN, aiming to first build a robust control path for signalling exchanges, then offer a transparent channel for IP services based on Loc/ID mappings and associated encapsulations, and finally enable hybrid packet forwarding manners to meet user various demands. Moreover, we define a new 8 B network header for DR-SDSN to further decrease overheads in packet encapsulations, where 16-bit addresses are used instead of 32-bit IPv4 and 128-bit IPv6 addresses. At last, we have implemented a corresponding proof-of-concept prototype with the modified Ryu and OvS, and the Linux socket application programming interface is also extended to handle our protocol with 16-bit addresses. 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However, it is still facing several fundamental challenges in routing, which mainly involves effective network maintenance, heterogeneous network convergence, and customized flow steering. Hence, in this article, we propose an elastic routing framework for SDSN, aiming to first build a robust control path for signalling exchanges, then offer a transparent channel for IP services based on Loc/ID mappings and associated encapsulations, and finally enable hybrid packet forwarding manners to meet user various demands. Moreover, we define a new 8 B network header for DR-SDSN to further decrease overheads in packet encapsulations, where 16-bit addresses are used instead of 32-bit IPv4 and 128-bit IPv6 addresses. At last, we have implemented a corresponding proof-of-concept prototype with the modified Ryu and OvS, and the Linux socket application programming interface is also extended to handle our protocol with 16-bit addresses. Extensive evaluations are performed and associated results have confirmed the feasibility and advantages of the proposed DR-SDSN framework.</description><subject>Encapsulation</subject><subject>Low earth orbit satellites</subject><subject>Network topology</subject><subject>Robust control</subject><subject>Routing</subject><subject>Satellite broadcasting</subject><subject>Satellite networks</subject><subject>Satellites</subject><subject>Software-defined networking</subject><subject>Steering</subject><subject>Topology</subject><subject>Traffic control</subject><issn>1536-1284</issn><issn>1558-0687</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2022</creationdate><recordtype>article</recordtype><sourceid>RIE</sourceid><recordid>eNo9kM9LwzAUgIsoOKdnD14CnrsladIk3sZ-qDAnrIoXIaTdi2R27Uwyhv-9HRue3jt833vwJcktwQNCsBq-fIwHmJABJRhzIc-SHuFcpjiX4vywZ3lKqGSXyVUIa4yJyHneSz4ny7SYFIsHNGrQtDYhugpNnLXgoYnORFihZbuLrvlCM282sG_9N7KtR0Vr4954SCdgXdNhRQfXtYuAFhAPWLhOLqypA9ycZj95n03fxk_p_PXxeTyapxWVKqacUSnZSuQKlCEUqGBlZUBYxriEkhHLrMWG5QJLIpQUUFJeCdZ5QilRZv3k_nh369ufHYSo1-3ON91LTQVXDNNMyo4aHqnKtyF4sHrr3cb4X02wPiTUXULdJdSnhJ1xdzQcAPzTSgiSMZr9AQUca0w</recordid><startdate>202212</startdate><enddate>202212</enddate><creator>Feng, Bohao</creator><creator>Huang, Yunxue</creator><creator>Tian, Aleteng</creator><creator>Wang, Hongchao</creator><creator>Zhou, Huachun</creator><creator>Yu, Shui</creator><creator>Zhang, Hongke</creator><general>IEEE</general><general>The Institute of Electrical and Electronics Engineers, Inc. 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However, it is still facing several fundamental challenges in routing, which mainly involves effective network maintenance, heterogeneous network convergence, and customized flow steering. Hence, in this article, we propose an elastic routing framework for SDSN, aiming to first build a robust control path for signalling exchanges, then offer a transparent channel for IP services based on Loc/ID mappings and associated encapsulations, and finally enable hybrid packet forwarding manners to meet user various demands. Moreover, we define a new 8 B network header for DR-SDSN to further decrease overheads in packet encapsulations, where 16-bit addresses are used instead of 32-bit IPv4 and 128-bit IPv6 addresses. At last, we have implemented a corresponding proof-of-concept prototype with the modified Ryu and OvS, and the Linux socket application programming interface is also extended to handle our protocol with 16-bit addresses. Extensive evaluations are performed and associated results have confirmed the feasibility and advantages of the proposed DR-SDSN framework.</abstract><cop>New York</cop><pub>IEEE</pub><doi>10.1109/MWC.011.2100578</doi><tpages>7</tpages></addata></record> |
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subjects | Encapsulation Low earth orbit satellites Network topology Robust control Routing Satellite broadcasting Satellite networks Satellites Software-defined networking Steering Topology Traffic control |
title | DR-SDSN: An Elastic Differentiated Routing Framework for Software-Defined Satellite Networks |
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