Detection and Prevention of Blackhole Attack in the AOMDV Routing Protocol

Mobile ad-hoc network is a collection of dynamically organized nodes where each node acts as a host and router. Mobile ad-hoc networks are characterized by the lack of preexisting infrastructures or centralized administration. So, they are vulnerable to several types of attacks, especially the Black...

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Main Authors: Abdelaziz Tami, Sofiane Boukli Hacene, Moussa Ali Cherif
Format: Article
Language:English
Published: Croatian Communications and Information Society (CCIS) 2021-01-01
Series:Journal of Communications Software and Systems
Subjects:
Online Access:https://jcoms.fesb.unist.hr/10.24138/jcomss.v17i1.945/
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spelling doaj-8664a2106a7a43998aefd55c71018b0a2021-02-15T10:16:52ZengCroatian Communications and Information Society (CCIS)Journal of Communications Software and Systems1845-64211846-60792021-01-0117111210.24138/jcomss.v17i1.945Detection and Prevention of Blackhole Attack in the AOMDV Routing ProtocolAbdelaziz TamiSofiane Boukli HaceneMoussa Ali CherifMobile ad-hoc network is a collection of dynamically organized nodes where each node acts as a host and router. Mobile ad-hoc networks are characterized by the lack of preexisting infrastructures or centralized administration. So, they are vulnerable to several types of attacks, especially the Blackhole attack. This attack is one of the most serious attacks in this kind of mobile networks. In this type of attack, the malicious node sends a false answer indicating that it has the shortest path to the destination node by increasing the sequence number and decreasing the number of hops. This will have a significant negative impact on source nodes which send their data packets through the malicious node to the destination. This malicious node drop received data packets and absorbs all network traffic. In order overcome this problem, securing routing protocols become a very important requirement in mobile ad-hoc networks. Multipath routing protocols are among the protocols affected by the Blackhole attack. In this paper, we propose an effective and efficient technique that avoids misbehavior of Blackhole nodes and facilitates the discovery for the most reliable paths for the secure transmission of data packets between communicating nodes in the well-known Ad hoc On-demand multi-path routing protocol (AOMDV). We implement and simulate our proposed technique using the ns 2.35 simulator. We also compared on how the three routing protocols AOMDV, AOMDV under Blackhole attack (BHAOMDV), and the proposed solution to counter the Blackhole attack (IDSAOMDV) performs. The results show the degradation on how AOMDV under attack performs, it also presents similarities between normal AOMDV and the proposed solution by isolating misbehaving node which has resulted in increase the performance metrics to the standard values of the AOMDV protocol.https://jcoms.fesb.unist.hr/10.24138/jcomss.v17i1.945/mobile ad hoc networksaomdvblackhole attacksecure routingperformance evaluation
collection DOAJ
language English
format Article
sources DOAJ
author Abdelaziz Tami
Sofiane Boukli Hacene
Moussa Ali Cherif
spellingShingle Abdelaziz Tami
Sofiane Boukli Hacene
Moussa Ali Cherif
Detection and Prevention of Blackhole Attack in the AOMDV Routing Protocol
Journal of Communications Software and Systems
mobile ad hoc networks
aomdv
blackhole attack
secure routing
performance evaluation
author_facet Abdelaziz Tami
Sofiane Boukli Hacene
Moussa Ali Cherif
author_sort Abdelaziz Tami
title Detection and Prevention of Blackhole Attack in the AOMDV Routing Protocol
title_short Detection and Prevention of Blackhole Attack in the AOMDV Routing Protocol
title_full Detection and Prevention of Blackhole Attack in the AOMDV Routing Protocol
title_fullStr Detection and Prevention of Blackhole Attack in the AOMDV Routing Protocol
title_full_unstemmed Detection and Prevention of Blackhole Attack in the AOMDV Routing Protocol
title_sort detection and prevention of blackhole attack in the aomdv routing protocol
publisher Croatian Communications and Information Society (CCIS)
series Journal of Communications Software and Systems
issn 1845-6421
1846-6079
publishDate 2021-01-01
description Mobile ad-hoc network is a collection of dynamically organized nodes where each node acts as a host and router. Mobile ad-hoc networks are characterized by the lack of preexisting infrastructures or centralized administration. So, they are vulnerable to several types of attacks, especially the Blackhole attack. This attack is one of the most serious attacks in this kind of mobile networks. In this type of attack, the malicious node sends a false answer indicating that it has the shortest path to the destination node by increasing the sequence number and decreasing the number of hops. This will have a significant negative impact on source nodes which send their data packets through the malicious node to the destination. This malicious node drop received data packets and absorbs all network traffic. In order overcome this problem, securing routing protocols become a very important requirement in mobile ad-hoc networks. Multipath routing protocols are among the protocols affected by the Blackhole attack. In this paper, we propose an effective and efficient technique that avoids misbehavior of Blackhole nodes and facilitates the discovery for the most reliable paths for the secure transmission of data packets between communicating nodes in the well-known Ad hoc On-demand multi-path routing protocol (AOMDV). We implement and simulate our proposed technique using the ns 2.35 simulator. We also compared on how the three routing protocols AOMDV, AOMDV under Blackhole attack (BHAOMDV), and the proposed solution to counter the Blackhole attack (IDSAOMDV) performs. The results show the degradation on how AOMDV under attack performs, it also presents similarities between normal AOMDV and the proposed solution by isolating misbehaving node which has resulted in increase the performance metrics to the standard values of the AOMDV protocol.
topic mobile ad hoc networks
aomdv
blackhole attack
secure routing
performance evaluation
url https://jcoms.fesb.unist.hr/10.24138/jcomss.v17i1.945/
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