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Design and implementation of a secure cloud-based billing model for smart meters as an Internet of things using homomorphic cryptography

机译:使用同态密码学设计和实现面向物联网的智能电表的基于云的安全计费模型的设计和实现

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Smart grids introduce many outstanding security and privacy issues, especially when smart meters are connected to public networks, creating an Internet of things in which customer usage data is frequently exchanged and processed in large volumes. In this research, we propose a cloud-based data storage and processing model with the ability to preserve user privacy and confidentiality of smart meter data in a smart grid. This goal is achieved by encrypting smart meter data before storage on the cloud using a homomorphic asymmetric key cryptosystem. By applying the homomorphic feature of the cryptographic technique, we propose methods to allow most of the computing works of calculating customer invoices based on total electricity consumption to be done directly on encrypted data by the cloud. One of the outstanding features in our model is the aggregation of encrypted smart meter readings using fixed-point number arithmetic. To test the feasibility of our model, we conducted many experiments to estimate the number of homomorphic additions to be performed by the cloud and the computation time in different billing periods using data from the Smart project, in which smart grid readings were continuously collected from different households in every second within two months and electricity usage data collected every minute from 400 anonymous houses in one day. We also propose a parallel version of our billing algorithm to Utilize the processing capability of multi-core processors in cloud servers so that computation time is reduced significantly compared to using our sequential algorithm. Our research works and experiments demonstrate clearly how cloud services can strengthen the security, privacy and efficiency of privacy-sensitive data frequently exchanged and processed in an Internet of things where smart meters communicate directly with public networks.
机译:智能电网引入了许多突出的安全和隐私问题,尤其是当智能电表连接到公共网络时,创建了一个物联网,其中经常频繁地交换和处理客户使用情况数据。在这项研究中,我们提出了一种基于云的数据存储和处理模型,能够在智能电网中保留用户隐私和智能电表数据的机密性。通过使用同态非对称密钥密码系统在云上存储之前对智能电表数据进行加密,可以实现此目标。通过应用密码技术的同态特征,我们提出了一些方法,使大部分基于总用电量计算客户发票的计算工作可以直接由云对加密数据进行。我们模型的杰出功能之一是使用定点数算法对加密的智能电表读数进行汇总。为了测试我们模型的可行性,我们进行了许多实验,使用来自Smart项目的数据来估算云将要执行的同态加法运算的数量以及在不同计费周期内的计算时间,其中从不同项目连续收集智能电网读数在两个月内每秒获得住户更新数据,一天之内每分钟从400户匿名房屋中收集电力使用数据。我们还提出了计费算法的并行版本,以利用云服务器中多核处理器的处理能力,因此与使用顺序算法相比,计算时间显着减少。我们的研究工作和实验清楚地表明了云服务如何增强智能仪表直接与公共网络通信的物联网中频繁交换和处理的隐私敏感数据的安全性,隐私和效率。

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