A Concentrated Energy Consumption Wireless Sensor Network by Symmetric Encryption and Attribute Based Encryption Technique

A. Soni
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引用次数: 0

Abstract

Wireless sensor networks (WSNs) are increasingly used in a wide variety of settings, including defence, industry, healthcare, and education. Hundreds or even thousands of sensor nodes are spread out across a given area and linked to a central Base Station (BS) in order to keep tabs on the environment. The BS then sends the data out to the users over the internet. The sensor network's adaptability, portability, dependability, and quickness are driving its widespread use across industries. The suggested SHS evaluates the efficiency of well-established symmetric algorithms to see where it stands in the spectrum of security. The Blowfish encryption algorithm was proven to require the least amount of processing power after extensive benchmarking. Therefore, the Blowfish algorithm is selected to protect sensitive medical information. The medical database receives the encrypted health records. Only those with proper permissions should be able to access them. Therefore, the CP-ABE is implemented to regulate access to patient records. The SHS's results on the dataset are compared to those of other existing systems. With SHS, health data may be transmitted to doctors rapidly and securely because it requires less computing time and energy. In addition to these benefits, SHS also offers privacy, authentication, and authorization.
基于对称加密和属性加密技术的集中能耗无线传感器网络
无线传感器网络(wsn)越来越多地应用于各种环境,包括国防、工业、医疗保健和教育。数百甚至数千个传感器节点分布在给定的区域,并连接到中央基站(BS),以便密切关注环境。然后,BS将数据通过互联网发送给用户。传感器网络的适应性、便携性、可靠性和快速性正在推动其在各行业的广泛应用。建议的SHS评估已建立的对称算法的效率,以了解它在安全性范围中的位置。经过广泛的基准测试,Blowfish加密算法被证明需要最少的处理能力。因此,选择Blowfish算法来保护敏感的医疗信息。医疗数据库接收加密的健康记录。只有具有适当权限的人才能访问它们。因此,实施CP-ABE来规范对患者记录的访问。SHS在数据集上的结果与其他现有系统的结果进行了比较。有了SHS,健康数据可以快速安全地传输给医生,因为它需要更少的计算时间和精力。除了这些优点之外,SHS还提供隐私、身份验证和授权。
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CiteScore
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