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A secure and energy-efficient platform for the integration of Wireless Sensor Networks and Mobile Cloud Computing

机译:一个安全高效的平台,用于无线传感器网络和移动云计算的集成

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Wireless Sensor Networks suffer from power and energy consumption issues because the batteries used are small and power-limited. Mobile Cloud Computing suffers from several security threats such as integrity and privacy issues. The integration of both areas results in better energy conservation and a more secure environment. Thus, this research introduces a secure energy-efficient platform that reduces the energy consumption and maintains privacy. The security approach of the platform utilizes a modified version of the Sharing-based Scheme and a Precision-enhanced and Encryption-mixed Privacy-preserving Data Aggregation scheme. The first supports both authentication and encryption using XOR gates, while the second is a slicing, secure data aggregation protocol that enhances both security and energy. For energy consumption reduction, asynchronous scheduling duty cycling based on Location, Priority and PreConfiguration is introduced. The results show that the platform depends on the rate of sensing, frequency of sending data, data size, location and number of sleeping sensors, and smartphone battery capacity. In the case of less frequent rates and lower data sizes, the operational energy consumption is 1% of the mobile's entire battery capacity. In the case of sensors sleeping next to the sink, the cost is reduced by over 70% with an additional cost of 20% over the un-secured network. The simulations show that the encryption cost decreases as the number of sensors increases. Furthermore, when the number of sensors increase, the distance between the node decreases and therefore more sensors are tending to sleep, which leads to less energy consumption. As a result, the platform introduced in this work outperforms existing schemes for large numbers of sensors (greater than 300 sensors) with an additional average security cost of 2.96%. (C) 2019 Elsevier B.V. All rights reserved.
机译:无线传感器网络存在功耗和能耗问题,因为所使用的电池体积小且功率受限。移动云计算遭受多种安全威胁,例如完整性和隐私问题。这两个领域的融合带来了更好的节能效果和更安全的环境。因此,本研究引入了一个安全的节能平台,该平台可减少能耗并维护隐私。该平台的安全性方法利用了基于共享方案的改进版本以及精确度增强和加密混合的隐私保护数据聚合方案。第一种支持使用XOR门的身份验证和加密,而第二种则是可增强安全性和能量的切片式安全数据聚合协议。为了降低能耗,引入了基于位置,优先级和预配置的异步调度工作循环。结果表明,该平台取决于感应速率,发送数据的频率,数据大小,睡眠传感器的位置和数量以及智能手机的电池容量。在较低频率和较小数据量的情况下,操作能耗为移动电话整个电池容量的1%。如果传感器在接收器旁边睡觉,则成本降低了70%以上,而与不安全网络相比,成本降低了20%。仿真表明,加密成本随着传感器数量的增加而降低。此外,当传感器的数量增加时,节点之间的距离减小,因此更多的传感器趋向于睡眠,这导致更少的能量消耗。结果,在这项工作中引入的平台优于大量传感器(大于300个传感器)的现有方案,平均安全成本为2.96%。 (C)2019 Elsevier B.V.保留所有权利。

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