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首页> 外文期刊>IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems >Synthesis of Tamper-Resistant Pin-Constrained Digital Microfluidic Biochips
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Synthesis of Tamper-Resistant Pin-Constrained Digital Microfluidic Biochips

机译:抗篡改引脚约束数字微流体生物芯片的合成

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Digital microfluidic biochips (DMFBs) are an emerging technology that implements bioassays through manipulation of discrete fluid droplets. Recent results have shown that DMFBs are vulnerable to actuation tampering attacks, where a malicious adversary modifies control signals for the purposes of manipulating results or causing denial-of-service. Such attacks leverage the highly programmable nature of DMFBs. However, practical DMFBs often employ a technique called pin mapping to reduce control pin count while simultaneously reducing the degrees of freedom available for droplet manipulation. Attempts to control specific electrodes as part of an attack cannot be made without inadvertently actuating other electrodes on-chip, which makes the tampering evident. This paper explores this tamper resistance property of pin mapping in detail. We derive relevant security metrics, evaluate the tamper resistance of several existing pin mapping algorithms, and propose a new security-aware pin mapper. Further, we develop integer linear programming-based methodologies for inserting indicator droplets into a DMFB in order to boost tamper resistance. Experimental results show that the proposed techniques can significantly increase the difficulty for an attacker to make stealthy changes to the execution of a bioassay.
机译:数字微流体Biochips(DMFB)是一种新兴技术,通过操作离散流体液滴来实现生物测定。最近的结果表明,DMFBS容易受到驱动篡改攻击,其中恶意对手修改控制信号以便操纵结果或导致拒绝服务。这种攻击利用DMFB的高度可编程性质。然而,实用的DMFB经常采用称为引脚映射的技术,以减少控制引脚数,同时减少可用于液滴操作的自由度。在没有无意中致动片上的其他电极的情况下不能进行作为攻击的一部分来控制特定电极的尝试,这使得篡改明显。本文详细探讨了引脚映射的这种篡改性能。我们派生了相关的安全指标,评估了几个现有引脚映射算法的篡改电阻,并提出了一个新的安全感知PIN映射器。此外,我们开发基于整数的基于线性编程的方法,用于将指示器液滴插入DMFB以便提高防篡改。实验结果表明,建议的技术可以显着增加攻击者对生物测量的执行中的隐身变化的难度。

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