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Introducing Network Coding to RPL: The Chained Secure Mode (CSM)

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arxiv 2006.00310 v3 pith:3OYLEHT2 submitted 2020-05-30 cs.NI cs.CR

classification cs.NIcs.CR
keywords modereplaysecureattacksprotectionroutingsecurityshowed
verification ladder T0 review T1 audit T2 compute T3 formal
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The current standard of Routing Protocol for Low Power and Lossy Networks (RPL) incorporates three modes of security: the Unsecured Mode (UM), Preinstalled Secure Mode (PSM), and the Authenticated Secure Mode (ASM). While the PSM and ASM are intended to protect against external routing attacks and some replay attacks (through an optional replay protection mechanism), recent research showed that RPL in PSM is still vulnerable to many routing attacks, both internal and external. In this paper, we propose a novel secure mode for RPL, the Chained Secure Mode (CSM), based on the concept of intraflow Network Coding. The main goal of CSM is to enhance RPL resilience against replay attacks, with the ability to mitigate some of them. The security and performance of a proof-of-concept prototype of CSM were evaluated and compared against RPL in UM and PSM (with and without the optional replay protection) in the presence of Neighbor attack as an example. It showed that CSM has better performance and more enhanced security compared to both the UM and PSM with the replay protection. On the other hand, it showed a need for a proper recovery mechanism for the case of losing a control message.

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  1. Predictive-CSM: Lightweight Fragment Security for 6LoWPAN IoT Networks

    cs.CR 2025-06 conditional novelty 4.0 of 10

    Predictive-CSM combines a behavioral trust score with chained HMAC fragment validation and reports simulated packet delivery above 97 percent under 6LoWPAN fragmentation attacks.

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