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Sequential Encryption for Multiple Implantable Medical Devices

机译:多个植入医疗设备的顺序加密

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Wireless communication became an essential tool for modern Implantable Medical Devices (IMDs) for information exchange. In spite of the many advantages wireless technology has, it puts the patients health in serious danger if no proper security mechanism is deployed. We aim to secure these devices while taking into consideration the limitations these small devices suffer from. IMDs have resources that are relatively simple and sometimes require surgery to be altered. Consequently, common security mechanisms cannot be simply implemented in fear of consuming all the resources dedicated to healthcare needs. A certain balance between security and efficiency must be sought in each IMD architecture. In this work, we propose a sequential and secure encrypted communication scheme for patients with multiple IMDs. We present a model that delivers the information generated by all IMDs in one packet to the final receiver. This information will be encrypted sequentially going from one IMD to the next. This scheme eliminates the need for single IMD authentications with the receiver. Instead of each IMD communicating independently with the same receiver, each device will send its information to a different IMD in a single communication action. Performing this way, the scheme would exploit the inherent properties of the entropy of the physiological signals to randomize the exchanged messages. The scheme succeeded in NIST tests with high rates around 95%. This relieves the IMDs from the need for the encryption in addition to a recovery rate of 100% for the proposed architecture. At the end, the final message will be attack- resistant with length < 1Kb in short handling time in order of 100 ms.
机译:无线通信成为现代植入医疗设备(IMD)的重要工具,用于信息交换。尽管无线技术有很多优点,但如果没有部署了适当的安全机制,它会使患者健康处于严重危险中。我们的目标是在考虑这些小型设备遭受的限制的同时确保这些设备。 IMD具有相对简单的资源,有时需要改变手术。因此,不能简单地实施常见的安全机制,以担心消耗致力于医疗保健需求的所有资源。必须在每个IMD架构中寻求安全性和效率之间的一定平衡。在这项工作中,我们为多个IMD的患者提出了一种顺序和安全的加密通信方案。我们提出了一个模型,它将所有IMD中的信息提供给最终接收器。此信息将顺序加密从一个IMD到下一个IMD。该方案消除了对接收器的单个IMD认证的需求。而不是通过相同的接收器独立地通信的每个IMD,每个设备将其信息在单个通信动作中发送到不同的IMD。这种方式执行这种方式,该方案将利用生理信号熵的固有属性来随机化交换消息。该方案成功地进行了高率为95%的NIST测试。除了所提出的架构的恢复率为100%的恢复速率之外,这可以从加密的需要中减轻了IMD。最后,最终消息将抗攻击,长度<1kb,在短时间为100 ms。

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