A Robust and Secure Aggregation Protocol for Wireless Sensor Networks
Jaydip Sen

TL;DR
This paper introduces a secure, robust, and energy-efficient in-network aggregation protocol for wireless sensor networks that enhances fault tolerance and security against malicious nodes, outperforming traditional methods.
Contribution
It proposes a novel broadcast-based aggregation algorithm that improves fault tolerance and security in WSNs compared to traditional unicast approaches.
Findings
The algorithm is energy-efficient and secure against insider attacks.
Simulation results show improved fault tolerance and data availability.
The method outperforms traditional snapshot aggregation approaches.
Abstract
The purpose of a wireless sensor network (WSN) is to provide the users with access to the information of interest from data gathered by spatially distributed sensors. Generally the users require only certain aggregate functions of this distributed data. Computation of this aggregate data under the end-to-end information flow paradigm by communicating all the relevant data to a central collector node is a highly inefficient solution for this purpose. An alternative proposition is to perform in-network computation. This, however, raises questions such as: what is the optimal way to compute an aggregate function from a set of statistically correlated values stored in different nodes; what is the security of such aggregation as the results sent by a compromised or faulty node in the network can adversely affect the accuracy of the computed result. In this paper, we have presented an…
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Taxonomy
TopicsEnergy Efficient Wireless Sensor Networks · Distributed Sensor Networks and Detection Algorithms · Security in Wireless Sensor Networks
