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Peer to peer authentication for small embedded systems: A zero-knowledge-based approach to security for the Internet of Things

机译:小型嵌入式系统的对等身份验证:基于零知识的物联网安全方法

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With an estimated 50 billion internet-enabled devices deployed by 2020, the arrival of the Internet of Things (IoT) or Internet of Everything (IoE) raises many questions regarding the suitability and adaptability of current computer security standards to provide privacy, data integrity and end entity authentication between communicating peers. In this paper we present a new protocol which combines zero-knowledge proofs and key exchange mechanisms to provide secure and authenticated communication in static machine-to-machine (M2M) networks. This approach addresses all of the aforementioned issues while also being suitable for devices with limited computational resources and can be deployed in wireless sensor networks. While the protocol requires an a-priori knowledge about the network setup and structure, it guarantees perfect forward secrecy.
机译:到2020年,估计将部署500亿个支持互联网的设备,物联网(IoT)或万物互联(IoE)的到来引发了许多有关当前计算机安全标准是否适合提供隐私,数据完整性和安全性的问题。通信对等方之间的最终实体身份验证。在本文中,我们提出了一种新的协议,该协议结合了零知识证明和密钥交换机制,可以在静态机器对机器(M2M)网络中提供安全且经过身份验证的通信。该方法解决了所有上述问题,同时也适用于计算资源有限的设备,并且可以部署在无线传感器网络中。虽然该协议需要有关网络设置和结构的先验知识,但它可以保证完美的前向保密性。

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