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Efficient and secure searchable encryption protocol for cloud-based Internet of Things

机译:基于云的物联网的高效,安全的可搜索加密协议

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Internet of things (IoT) applications comprising thousands or millions of intelligent devices or things is fast becoming a norm in our inter-connected world, and the significant amount of data generated from IoT applications is often stored in the cloud. However, searching encrypted data (i.e. Searchable Encryption—SE) in the cloud remains an ongoing challenge. Existing SE protocols include searchable symmetric encryption (SSE) and public-key encryption with keyword search (PEKS). Limitations of SSE include complex and expensive key management and distribution, while PEKS suffer from inefficiency and are vulnerable to insider keyword guessing attacks (KGA). Besides, most protocols are insecure against file-injection attacks carried out by a malicious server. Thus, in this paper, we propose an efficient and secure searchable encryption protocol using the trapdoor permutation function (TPF). The protocol is designed for cloud-based IoT (also referred to as Cloud of Things - CoT) deployment, such as Cloud of Battlefield Things and Cloud of Military Things. Compared with other existing SE protocols, our proposed SE protocol incurs lower computation cost at the expense of a slightly higher storage cost (which is less of an issue, considering the decreasing costs of storage). We also prove that our protocol achieves inside KGA resilience, forward privacy, and file-injection attack resilience.
机译:包含成千上万种智能设备或物联网的物联网(IoT)应用正在迅速成为我们互联世界中的一种规范,而从物联网应用生成的大量数据通常存储在云中。但是,在云中搜索加密的数据(即,可搜索的加密-SE)仍然是一个持续的挑战。现有的SE协议包括可搜索对称加密(SSE)和带有关键字搜索的公钥加密(PEKS)。 SSE的局限性包括复杂且昂贵的密钥管理和分发,而PEKS效率低下,并且容易受到内部关键字猜测攻击(KGA)的攻击。此外,大多数协议对于恶意服务器进行的文件注入攻击都是不安全的。因此,在本文中,我们提出了使用活板门置换函数(TPF)的有效且安全的可搜索加密协议。该协议专为基于云的物联网(也称为物联网-CoT)部署而设计,例如战场物联网和军事物联网。与其他现有的SE协议相比,我们提出的SE协议以较低的存储成本为代价而导致较低的计算成本(考虑到存储成本的降低,这是一个较小的问题)。我们还证明了我们的协议可实现内部KGA弹性,转发隐私和文件注入攻击弹性。

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