In this paper, we propose flash-based hardware security primitives as a viable solution to meet the security challenges of the IoT and specifically telehealth markets. We have created a novel solution, called the High and Low (HaLo) method, that generates physical unclonable function (PUF) signatures based on process variations within flash memory in order to uniquely identify and authenticate remote sensors. The HaLo method consumes 60% less power than conventional authentication schemes, has an average latency of only 39ms for signature generation, and can be readily implemented through firmware on ONFI 2.2 compliant off-the-shelf NAND flash memory chips. The HaLo method generates 512 bit signatures with an average error rate of 5.9 * 10^-4, while also adapting for flash chip aging. Due to its low latency, low error rate, and high power efficiency, the HaLo method could help progress the field of remote patient monitoring by accurately and efficiently authenticating remote health sensors.
翻译:在本文中,我们提出了闪光硬件安全原始材料,作为应对IOT特别是远程保健市场安全挑战的可行解决方案。我们创建了新型解决方案,称为高低(Halo)法,根据闪存内存内的进程变异生成物理不易变函数(PUF)签名,以独特识别和认证远程传感器。HaLo法比常规认证计划耗电少60%,在签名生成方面平均只有39米的延迟度,并且可以通过ONFI2.2符合现成NAND闪存芯片的坚固软件轻易实施。HaLo法生成了512位位签名,平均误率为5.9* 10 ⁇ -4,同时适应闪存的闪存。由于薄度低、低误率和高功率,HaLo法可以通过准确和高效的远程健康传感器帮助远程病人监测领域取得进展。