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Li-MSD: A lightweight mitigation solution for DAO insider attack in RPL-based IoT

Abhishek Verma, Sachin Kumar Verma, Avinash Chandra Pandey, Jyoti Grover, Girish Sharma

TL;DR

A Lightweight Mitigation Solution for DAO insider attack is proposed, termed as 'Li-MSD', which uses a blacklisting strategy to mitigate the attack and restore RPL performance, significantly and it is shown that Li-MSD outperforms the existing solution in the literature.

Abstract

Many IoT applications run on a wireless infrastructure supported by resource-constrained nodes which is popularly known as Low-Power and Lossy Networks (LLNs). Currently, LLNs play a vital role in digital transformation of industries. The resource limitations of LLNs restrict the usage of traditional routing protocols and therefore require an energy-efficient routing solution. IETF's Routing Protocol for Low-power Lossy Networks (RPL, pronounced 'ripple') is one of the most popular energy-efficient protocols for LLNs, specified in RFC 6550. In RPL, Destination Advertisement Object (DAO) control message is transmitted by a child node to pass on its reachability information to its immediate parent or root node. An attacker may exploit the insecure DAO sending mechanism of RPL to perform 'DAO insider attack' by transmitting DAO multiple times. This paper shows that an aggressive DAO insider attacker can drastically degrade network performance. We propose a Lightweight Mitigation Solution for DAO insider attack, which is termed as 'Li-MSD'. Li-MSD uses a blacklisting strategy to mitigate the attack and restore RPL performance, significantly. By using simulations, it is shown that Li-MSD outperforms the existing solution in the literature.

Li-MSD: A lightweight mitigation solution for DAO insider attack in RPL-based IoT

TL;DR

A Lightweight Mitigation Solution for DAO insider attack is proposed, termed as 'Li-MSD', which uses a blacklisting strategy to mitigate the attack and restore RPL performance, significantly and it is shown that Li-MSD outperforms the existing solution in the literature.

Abstract

Many IoT applications run on a wireless infrastructure supported by resource-constrained nodes which is popularly known as Low-Power and Lossy Networks (LLNs). Currently, LLNs play a vital role in digital transformation of industries. The resource limitations of LLNs restrict the usage of traditional routing protocols and therefore require an energy-efficient routing solution. IETF's Routing Protocol for Low-power Lossy Networks (RPL, pronounced 'ripple') is one of the most popular energy-efficient protocols for LLNs, specified in RFC 6550. In RPL, Destination Advertisement Object (DAO) control message is transmitted by a child node to pass on its reachability information to its immediate parent or root node. An attacker may exploit the insecure DAO sending mechanism of RPL to perform 'DAO insider attack' by transmitting DAO multiple times. This paper shows that an aggressive DAO insider attacker can drastically degrade network performance. We propose a Lightweight Mitigation Solution for DAO insider attack, which is termed as 'Li-MSD'. Li-MSD uses a blacklisting strategy to mitigate the attack and restore RPL performance, significantly. By using simulations, it is shown that Li-MSD outperforms the existing solution in the literature.
Paper Structure (27 sections, 15 figures, 2 tables, 3 algorithms)

This paper contains 27 sections, 15 figures, 2 tables, 3 algorithms.

Figures (15)

  • Figure 1: DAO insider attack in storing mode
  • Figure 2: DAO insider attack in non-storing mode
  • Figure 3: Architecture of Li-MSD
  • Figure 4: An Illustration of Victim Node Problem (DAO receive threshold = 10)
  • Figure 5: Comparison of packet delivery ratio in non-attack and attack network scenarios
  • ...and 10 more figures