Collaborative Secure Data Aggregation in Wireless Sensor Networks
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Abstract
Wireless Sensor Networks are composed of tiny sensor nodes which are capable of sensing,
newlineprocessing and communicating with limited computational resources. Wireless Sensor
newlineNetworks are not designed with a fixed infrastructure, therefore the topology of
newlinethe network changes continuously based on the sink type, hop count, node type and
newlineschedule type. A maximum quantity of sensor nodes are deployed in various applications
newlinefor surveillance and monitoring physical and environmental conditions such as firemonitoring,
newlinemilitary surveillance, volcano and urban sensing etc.,. Hence, the emerging
newlineWireless Sensor Networks applications have a group of stringent prerequisite that include
newlinedata aggregation, security and reliability. These requirements pose new challenges in the
newlineWireless Sensor Networks that include resource limitations, data redundancy, intrusion
newlinedetection, etc.
newlineThe various secure data aggregation protocols can be classified into structured and
newlinestructure-free based that are capable of minimizing redundant data transmission and can
newlinedetect intruders in the network. The structure-free data aggregation protocol does not
newlinehave definite fixed structure whereas structure-based data aggregation protocols have
newlinespecified infrastructure. Most of the existing structure-based secure data aggregation
newlineprotocols elect an aggregator node based on the resource parameter viz., residual energy,
newlineEuclidean distance, etc., to aggregate the data but these resources are insufficient.
newlineThe Collaborative Secure Data Aggregation protocol utilizes the resources efficiently and
newlinepromises to supply data securely to the destination.
newlineThe aim of our research work is to design and implement a Collaborative Secure Data
newlineAggregation (CSDA) Protocol for Wireless Sensor Networks. The data aggregation protocol
newlinereduces the redundant data transmissions which inturn utilize energy effectively
newlineand increases the network lifetime. The security protocol detects the intruder and avoids
newlinethe data transmission among the intruder nodes, resulting in maximum throughput