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首页> 外文期刊>International Journal of Distributed Sensor Networks >A low-complexity, energy-efficient data securing model for wireless sensor network based on linearly complex voice encryption mechanism of GSM technology
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A low-complexity, energy-efficient data securing model for wireless sensor network based on linearly complex voice encryption mechanism of GSM technology

机译:基于GSM技术线性复杂语音加密机制的无线传感器网络的低复杂性,节能数据保护模型

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摘要

A wireless sensor network is the formation of a temporary network of sensor nodes equipped with limited resources working in an ad hoc environment. Routing protocol is one of the key challenges while designing a wireless sensor network, which requires optimum use of limited resources of a sensor node, such as power and so on. Similarly, data security and integrity is another open issue that has emerged as a flash point in research community in the last decade. This article proposes a secure model for routing data from source to destination named as secure and energy-efficient routing. The proposed secure and energy-efficient routing is inherited from authentication and voice encryption scheme developed for Global System for Mobile Communications. Necessary modifications have been carried out in order to fit the Global System for Mobile Communications technology in a wireless sensor network ad hoc environment. Due to its low complexity, the secure and energy-efficient routing consumes lesser battery power both during encryption/decryption and for routing purposes. It is due to the XoR operation used in the proposed scheme which is considered as the most inexpensive process with respect to time and space complexity. It is observed through simulations that secure and energy-efficient routing can work effectively even in critical power level in a sensor network. The article also presents a simulation-based comparative analysis of the proposed secure and energy-efficient routing with two notable existing secure routing protocols. We proved that the proposed secure and energy-efficient routing helps to achieve the desired performance under dynamically changing network conditions with various numbers of malicious nodes. Moreover, in Global System for Mobile Communications, generally three linear feedback shift registers are used to fragment the key in data encryption mechanism. In this article, a mathematical model is proposed to increase the number of possible combinations of shift register in order to make the data encryption mechanism more secure which has never been done before. Due to its liner complexity, lesser power consumption, and more dynamic route updating, the secure and energy-efficient routing can easily find its use in the emerging Internet-of-Things systems.
机译:无线传感器网络是在临时环境中工作的有限资源的传感器节点的临时网络形成。路由协议是设计无线传感器网络时的关键挑战之一,这需要最佳使用传感器节点的有限资源,例如电源等。同样,数据安全性和完整性是另一个开放问题,该问题是过去十年中作为研究社区的闪点。本文提出了一种安全模型,用于将数据从源路由到目标名为Secure且节能路由的。建议的安全和节能路由是从为全球移动通信系统开发的认证和语音加密方案继承。已经进行了必要的修改,以便在无线传感器网络临时环境中符合全球移动通信技术系统。由于其较低的复杂性,安全和节能的路由在加密/解密期间消耗更小的电池电量和用于路由目的。它是由于所提出的方案中使用的XOR操作被认为是相对于时间和空间复杂性最便宜的过程。通过模拟观察到,即使在传感器网络中的临界功率水平中也可以有效地工作。本文还提出了一种基于模拟的比较分析,对提出的安全和节能路由,具有两个值得注意的现有安全路由协议。我们证明建议的安全和节能路由有助于在动态改变具有各种数量的恶意节点的网络条件下实现所需的性能。此外,在全球移动通信系统中,通常三个线性反馈移位寄存器用于将密钥分段为数据加密机制。在本文中,提出了一种数学模型来增加移位寄存器的可能组合的数量,以使数据加密机制更安全,从未完成过。由于其衬垫复杂性,功耗较小,更动态的路线更新,安全和节能的路由可以很容易地找到它在新兴的内部内容系统中的使用。

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