2007Unpublished venueRequires access

Survivable and Efficient Clustered Keying in Wireless Sensor Network

Zhang Xizheng

Open publisher page 5 citations

Abstract

Large-scale wireless sensor networks (WSNs) are highly vulnerable to attacks because they consist of numerous resource-constrained devices and communicate via wireless links. It is necessary to provide security services to these networks to ensure their survival. Providing security for WSN presents unique challenges. Existing key management are more appropriate for short -lifetime WSNs rather than longlived WSNs. We propose a novel, self-organizing key management scheme for large-scale and long-lived WSNs, called lightweight key administration layer (LIKAL). LIKAL provides administrative services that ensures the survivability of the network. Analytical and simulation results show that LIKAL is robust against the attacks and efficient with low communication and storage overhead on the sensor nodes.

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What this paper is about

Large-scale wireless sensor networks (WSNs) are highly vulnerable to attacks because they consist of numerous resource-constrained devices and communicate via wireless links. It is necessary to provide security services to these networks to ensure their survival. Providing security for WSN presents unique challenges. Existing key management are more appropriate for short -lifetime WSNs rather than longlived WSNs. We propose a novel, self-organizing key management scheme for large-scale and long-lived WSNs, called lightweight key administration layer (LIKAL). LIKAL provides administrative services that ensures the survivability of the network. Analytical and simulation results show that LIKAL is robust against the attacks and efficient with low communication and storage overhead on the sensor nodes.

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OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Large-scale wireless sensor networks (WSNs) are highly vulnerable to attacks because they consist of numerous resource-constrained devices and communicate via wireless links. It is necessary to provide security services to these networks to ensure their survival. Providing security for WSN presents unique challenges. Existing key management are more appropriate for short -lifetime WSNs rather than longlived WSNs. We propose a novel, self-organizing key management scheme for large-scale and long-lived WSNs, called lightweight key administration layer (LIKAL). LIKAL provides administrative services that ensures the survivability of the network. Analytical and simulation results show that LIKAL is robust against the attacks and efficient with low communication and storage overhead on the sensor nodes.

Key concepts: Wireless sensor network, Computer network, Survivability, Computer science, Overhead (engineering), Key management, Key distribution in wireless sensor networks, Key (lock)

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