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Secure Mobile Sensor Data Transfer using Asymmetric Cryptography Algorithms

机译:使用非对称加密算法安全移动传感器数据传输

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Mobile sensors are playing a vital role in various applications of a normal day life. Key size in securing data is an important issue to highlight in mobile sensor data transfer between a smart device and a data storage component. Such key size may affect memory storage and processing power of a mobile device. Therefore, we proposed a secure mobile sensor data transfer protocol called secure sensor protocol (SSP). SSP is based on Elliptic Curve Cryptography (ECC), which generates small size key in contrast to conventional asymmetric algorithms like RSA and Diffie Hellman. SSP receive values from light sensor and magnetic flux meter of a smart device. SSP encrypts mobile sensor data using ECC and afterwards it stores cipher information in MySQL database to receive remote data access. We compared the performance of the ECC with other existing asymmetric cryptography algorithms in terms of secure mobile sensor data transfer based on data encryption and decryption time, key size and encoded data size. In-addition, SSP shows better results than other cryptography algorithms in terms of secure mobile sensor data transfer.
机译:移动传感器在正常日常生活中的各种应用中发挥着重要作用。保护数据中的密钥大小是智能设备和数据存储组件之间的移动传感器数据传输中突出显示的重要问题。这种关键尺寸可能影响移动设备的存储器存储和处理能力。因此,我们提出了一种称为安全传感器协议(SSP)的安全移动传感器数据传输协议。 SSP基于椭圆曲线加密(ECC),其与传统的非对称算法相比,如RSA和Diffie Hellman等传统的不对称算法产生了小尺寸键。 SSP从光传感器和智能设备的磁通计接收值。 SSP使用ECC和之后使用ECC加密移动传感器数据,将密码信息存储在MySQL数据库中以接收远程数据访问。我们在基于数据加密和解密时间,密钥尺寸和编码数据大小的安全移动传感器数据传输方面将ECC与其他现有非对称加密算法进行了比较了ECC的性能。此外,在安全移动传感器数据传输方面,SSP显示出比其他加密算法更好的结果。

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