A Robust Blockchain Architecture for Electronic Health Data using Efficient Lightweight Encryption Model with Re-Encryption Scheme

A. G. Chandini, P. I. Basarkod
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引用次数: 2

Abstract

The handling of electronic health records (EHRs) from the Internet of Medical Things (IoMT) is one of the most challenging research areas as it consists of sensitive information which is a target for attackers. Also, it is highly complex and expensive to deal with modern healthcare systems as it requires a lot of secured storage space. However, these problems can be mitigated with the improvement in health record management using blockchain technology. To improve data security, patient privacy, and scalability, the proposed work develops a scalable lightweight framework based on blockchain technology. Initially, the COVID-19 related data records are hashed by using an enhanced Merkle tree (EMT) data structure. The hashed values are encrypted by lattice-based cryptography with a Homomorphic Proxy Re-Encryption scheme (LBC-HPRS) in which the input data are secured. After the completion of the encryption process, the blockchain uses IPFS to store secured information. Finally, the Proof of Work (PoW) concept is utilized to verify and validate the security of the input COVID-based data records. The experimental setup of the proposed work is performed by using a python tool and the performance metrics like encryption time, re-encryption time, decryption time, overall processing time and latency prove the efficacy of the proposed schemes.
使用高效轻量级加密模型和重加密方案的电子健康数据健壮的区块链体系结构
来自医疗物联网(IoMT)的电子健康记录(EHRs)的处理是最具挑战性的研究领域之一,因为它包含敏感信息,是攻击者的目标。此外,处理现代医疗保健系统非常复杂和昂贵,因为它需要大量的安全存储空间。然而,这些问题可以通过使用区块链技术改进健康记录管理来缓解。为了提高数据安全性、患者隐私和可扩展性,提议的工作开发了一个基于区块链技术的可扩展轻量级框架。首先,使用增强型Merkle树(EMT)数据结构对COVID-19相关数据记录进行散列处理。散列值采用基于格的加密技术进行加密,采用同态代理重加密方案(LBC-HPRS),确保输入数据的安全。加密过程完成后,区块链使用IPFS存储安全信息。最后,利用工作量证明(PoW)概念来验证和验证输入的基于covid的数据记录的安全性。使用python工具对所提出的工作进行了实验设置,加密时间、重新加密时间、解密时间、总体处理时间和延迟等性能指标证明了所提出方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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