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H-WSN with maximized QoS using secure data aggregation

机译:使用安全数据聚合的H-WSN具有最大化的QoS

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To perform some operation there is a need of some amount of energy over the node is same to the sending the single bit of data in the network. Data transportation reduces the network lifetime when sending data in sensor network. So the need to reduce the energy consumption for improving the network lifetime. As cluster head is aggregator node of the cluster it can take part in communication many times while communication is going on in the cluster members. That's the reason that the energy utilization of the cluster head is high as compared with the cluster members present in the cluster. The present system has a way to choose the cluster head unplanned due to its high level of energy consumption. To answer this problem we introduced a system represents a technique in that effective cluster head is chosen based on the distance from the base station as well as remaining energy. After selecting the cluster head, it makes use of minor amount of energy of sensor network as well as helps to improve the lifetime of the network of sensor network. Aggregation of the data received from the cluster members is duty of cluster head in the cluster. Verification of data is done by the cluster head prior to the data aggregation if data received is not valid then received data is discarded. Only verified data is taken for aggregation at cluster head. Encryption is done by making use of homomorphic encryption method as well as encrypted information send to the cluster head and information decryption is performed by base station (BS) for giving end to end security. An ID based signature technique is developed for hop by hop authentication. In this paper, we present the method for recovering the data which is lost due to the buffer overflow. In given system cache memory is provided by the cluster head for recovery of data loss. At last test results shows depending on parameter like time as well as energy consumption on Jung simulator that system presented is good compared to the available system.
机译:为了执行某些操作,节点上需要一定数量的能量,这与发送网络中的单个数据位相同。在传感器网络中发送数据时,数据传输会缩短网络寿命。因此需要减少能耗以提高网络寿命。由于群集头是群集的聚合器节点,因此在群集成员中进行通信时,它可以多次参与通信。这就是与簇中存在的簇成员相比,簇头的能量利用率高的原因。由于其高水平的能量消耗,本系统具有一种计划外地选择簇头的方法。为了回答这个问题,我们介绍了一种系统表示技术,该技术基于距基站的距离以及剩余能量来选择有效的簇头。选择簇头后,它利用了传感器网络的少量能量,并有助于提高传感器网络的寿命。从群集成员接收的数据的聚合是群集中群集头的职责。如果接收到的数据无效,则在数据聚合之前由簇头完成数据验证,然后丢弃接收到的数据。仅将已验证的数据用于群集头处的聚合。加密是通过使用同态加密方法完成的,并将加密的信息发送到群集头,并且信息解密是由基站(BS)进行的,以提供端到端的安全性。针对逐跳认证开发了基于ID的签名技术。在本文中,我们提出了一种恢复由于缓冲区溢出而丢失的数据的方法。在给定的系统中,群集头提供了高速缓存,用于恢复数据丢失。最后的测试结果表明,根据时间(例如时间)以及Jung模拟器上的能耗,所显示的系统与可用系统相比是好的。

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