可重构开关电容DC-DC转换器,用于提高物联网设备的安全性

R. Jevtic, M. Ylitolva, L. Koskinen
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引用次数: 5

摘要

随着物联网设备数量的不断增加,安全性和能效已成为电路设计的关键制约因素。为了实现小尺寸和能源效率,器件需要由片上调节器提供。电力线在电路中产生最强的信号,它被电力和电磁、侧信道攻击所利用。在这项工作中,我们提出通过在不同的转换器拓扑之间随机切换来提高片上开关电容DC-DC转换器的安全性。随机纹波大小和最大电源电压调制电路电流和功耗,使电路更健壮地抵抗侧信道攻击。我们分析了最常见的转换器拓扑结构,并提出了可重构的开关电容电池,以便在CMOS技术中有效实现。结果表明,与常用的DC-DC变换器电池相比,该电池的功率和时间熵均有显著提高。在恒定负载下,DC-DC开关频率约有6%的变化,并且在测量信号的频谱中观察到额外的噪声,因此增加了攻击的难度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reconfigurable Switched Capacitor DC-DC Converter for Improved Security in IoT Devices
With the ever increasing number of IoT devices, security and energy efficiency have become critical constraints in circuit design. To achieve small size and energy efficiency, devices need to be supplied by on-chip regulators. The power line generates the strongest signal in the circuit, and it is exploited for both, power and electromagnetic, side-channel attacks. In this work we propose to improve the security of the on-chip switched capacitor DC-DC converters by randomly switching between different converter topologies. Random ripple size and maximum supply voltage modulate the circuit current and power consumption, making the circuit more robust against side-channel attacks. We analyze the most common converter topologies and propose reconfigurable switched-capacitor cell for the efficient implementation in CMOS technology. The results show that power and time entropy of the proposed cell are increased significantly when compared to the commonly used DC-DC converter cell. There is around 6% variation in the DC-DC switching frequency for the constant load, and additional noise is observed in the frequency spectrum of the measured signal, thus, increasing the difficulty of the attack.
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