使用轻量级对称密钥算法确保云存储中的医疗保健数据安全

Vimala Devi Parthasarathy, Kalaichelvi Viswalingam
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引用次数: 0

摘要

如今,医疗保健监测系统是医疗领域中非常重要的系统,可以即时了解病人的健康状况。在提议的系统中,传感器被固定在病人身体上或放置在身体周围一定距离的地方,以收集病人的重要参数,如血压、体温、心跳速率等。医护人员通过蓝牙、ZigBee 等连接机制收集这些参数。这些重要数据将以安全的方式外包给云存储,以避免攻击者的攻击。因此,我们需要一些保护机制来保护这些信息。本文提出了一种轻量级加密算法(对称密钥),通过使用基于椭圆曲线(ECDH)加密技术的 Diffie-Hellman 密钥交换法生成随机数密钥。通过替换字节(S-box)和折叠(水平和垂直)操作,所提出的对称密钥算法很好地实现了密码学的首要特性,如混淆和扩散。实验结果表明,拟议算法的总体执行时间优于标准高级加密标准(AES)算法。建议算法的吞吐率为 20.525095 KB/秒,而标准 AES 算法的吞吐率为 18.727215 KB/秒。因此,提议的算法比现有的 AES 算法更快。此外,在拟议算法中,S 盒、IS 盒的构造和密钥生成程序完全不同,因此增加了攻击者的复杂性,并会给攻击者造成困惑。
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Healthcare Data Security in Cloud Storage Using Light Weight Symmetric Key Algorithm
Now-a-days, healthcare monitoring system is very much important system in the medical field to know the patient‘s health status immediately. In the proposed system, the sensors are fixed over the patient’s body or placed at some distances around the body to collect patient’s significant parameters like blood pressure, temperature, heart beat rate, etc. These parameters are collected by the healthcare professionals through some connectivity mechanisms like Bluetooth, ZigBee, etc. These significant data will be outsourced to the cloud storage in a secure way to avoid attack from the attackers. So, we need some protection mechanism to safeguard this information. This article proposes a light weight cryptographic algorithm (symmetric key) via random number key generation using Diffie-Hellman key exchange based on Elliptic Curve (ECDH) cryptography. As a result of substituting bytes (S-box) and folding (horizontal and vertical) operations, the proposed symmetric key algorithm achieves the foremost properties of cryptography such as confusion and diffusion quite well. Experimental results showed that the overall execution time of the proposed algorithm is superior to the standard Advanced Encryption Standard (AES) algorithm. The throughput rate of the proposed algorithm is 20.525095 KB/seconds whereas for the standard AES algorithm throughput rate is 18.727215 KB/seconds. So, the proposed algorithm is faster than the existing AES algorithm. Moreover, the construction of S-box, IS-box and the key generation procedures are entirely different in the proposed algorithm so, it increases the complexity for the attacker and it will create confusion to the attacker
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