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An improved AES-ECC hybrid encryption scheme for secure communication in cooperative diversity based Wireless Sensor Networks

机译:一种改进的AES-ECC混合加密方案,用于基于协作多样性的无线传感器网络中的安全通信

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Security of Wireless Sensor Networks (WSNs) is a very crucial factor when deployed for reconnaissance in sensitive areas. The existing symmetric encryption schemes provide a good amount of security, but maintenance of keys is difficult. When asymmetric schemes are used, maintenance of keys is easier, but they provide a lesser degree of security when compared to symmetric encryption schemes. In order to cope up with these shortcomings, we propose to use an improved version of the hybrid encryption scheme, which is a combination of Advanced Encryption Standard (AES) and Elliptical Curve Cryptography (ECC) with cross encrypted keys for secure key exchange and node authentication and hybrid encryption for enhanced cipher-text security. In case of transmission in WSNs, Statistical Cooperative Diversity based on Alamouti code is the most commonly used transmission scheme. However, for an arbitrary number of sensors, Alamouti code limits the BER performance and energy is not distributed equally, thereby creating the energy-hole problem which leads to early dysfunction of the sensors and may eventually lead to dysfunction of the Wireless Sensor Network (WSN). Extended Cooperative Space-time Block Codes (ECBSTBCs), which are obtained from Alamouti code, have the same characteristics of Alamouti code with the energy being distributed equally among the active sensors. With these factors in mind, we propose to use ECBSTBC as the transmission scheme. The improved hybrid scheme is ideal for ECBSTBC based WSN due to the speed of operation and higher degree of security that it offers.
机译:无线传感器网络的安全性(WSNS)是在敏感区域部署侦察时的一个非常重要的因素。现有的对称加密方案提供了很多的安全性,但钥匙的维护很难。当使用不对称方案时,键的维护更容易,但与对称加密方案相比,它们提供了较小的安全性。为了应对这些缺点,我们建议使用改进的混合加密方案版本,这是具有交叉加密密钥的高级加密标准(AES)和椭圆曲线加密(ECC)的组合,用于安全密钥交换和节点增强密码文本安全性的身份验证和混合加密。在WSN中传输的情况下,基于Alamouti码的统计协作分集是最常用的传输方案。然而,对于任意数量的传感器,Alamouti代码限制了BER性能,并且能量不同样地分布,从而产生能量孔问题,从而导致传感器的早期功能障碍,并且最终可能导致无线传感器网络的功能障碍(WSN )。从Alamouti码获得的扩展协作空间块代码(ecbstbcs)具有与Alamouti代码相同的特征,其中能量在有源传感器之间平等地分布。考虑到这些因素,我们建议使用eCBSTBC作为传输方案。改进的混合动力车方案是由于操作速度和提供的安全程度较高的基于ecbstBc的WSN的理想选择。

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