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Combating Enhanced Thermal Covert Channel in Multi-/Many-Core Systems With Channel-Aware Jamming

机译:用通道感知卡住的多/多核系统中的增强的热覆盖通道

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摘要

As a means to thwart thermal covert channel attack in a multi-/many-core system, a strong heat noise whose frequency band coincides with that occupied by the thermal covert channel is injected to jam the channel. However, this undiscriminating channel jamming-based countermeasure will fail if a thermal covert channel is allowed to change its transmission frequency dynamically in response to the jamming. To combat this enhanced thermal covert channel, a more advanced countermeasure is needed and thus proposed that checks the frequency spectrum and tracks any possible covert channel. Only after a channel is detected to be susceptible, a thermal noise with this channel frequency is then emitted to jam the covert channel. The communication protocols and frequency changing scheme pertaining to this enhanced thermal covert channel are described in this article. The experimental results confirm that, when the proposed countermeasure is applied, the enhanced thermal covert channel, much more resilient to jamming, suffers from an extremely high packet error rate (PER), which makes any meaningful data leakage practically impossible. As the proposed countermeasure method is poised to contain dangerous thermal covert channel attacks with an anti-jamming capability, it lends itself well to secure multi-/many-core systems.
机译:作为在多/许多核心系统中进行热覆盖信道攻击的方法,频带与被热盖通道占据的频带重合的强热噪声被注入频道以堵塞通道。然而,如果允许热盖信道响应于干扰而动态地改变其传输频率,则基于未偏见的通道基于频道的对策将失败。为了打击这种增强的热盖通道,需要更先进的对策,因此提出检查频谱并跟踪任何可能的隐蔽信道。仅在检测到频道易感之后,然后将具有该信道频率的热噪声发射以使盖子通道堵塞。本文描述了与该增强的热盖通道有关的通信协议和频率改变方案。实验结果证实,当应用提出的对策时,增强的热覆盖通道,更具弹性的卡姆,遭受极高的数据包错误率(每个),这使得任何有意义的数据泄漏实际上是不可能的。由于所提出的对策方法准备含有抗干扰能力的危险的热覆盖渠道攻击,因此可以很好地保护多/多核系统。

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