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Soft tamper-proofing via program integrity verification in wireless sensor networks

机译:通过无线传感器网络中的程序完整性验证进行软防篡改

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Small low-cost sensor devices, each equipped with limited resources, are networked and used for various critical applications, especially those related to homeland security. Making such a sensor network secure is challenging mainly because it usually has to operate in a harsh, sometimes hostile, and unattended environment, where it is subject to capture, reverse-engineering, and manipulation. To address this challenge, we present a program-integrity verification (PIV) protocol that verifies the integrity of the program residing in each sensor device whenever the device joins the network or has experienced a long service blockage. The heart of PIV is the novel randomized hash function tailored to low-cost CPUs, by which the algorithm for hash computation on the program can be randomly generated whenever the program needs to be verified. By realizing this randomized hash function, the PlV protocol 1) prevents manipulation/reverse-engineering/reprogramming of sensors unless the attacker modifies the sensor hardware (e.g., attaching more memory), 2) provides purely software-based protection, and 3) triggers the verification infrequently, thus incurring minimal intrusiveness into normal sensor functions. Our performance evaluation shows that the PIV protocol is computationally efficient and incurs only a small communication overhead, hence making it ideal for use in low-cost sensor networks.
机译:小型,低成本的传感器设备(每个设备都配备了有限的资源)被联网并用于各种关键应用,尤其是与国土安全相关的应用。确保这种传感器网络的安全性具有挑战性,主要是因为它通常必须在恶劣的,有时是敌对的,无人值守的环境中运行,在该环境中必须对其进行捕获,逆向工程和操纵。为了解决这一挑战,我们提出了程序完整性验证(PIV)协议,该协议可在设备加入网络或遭受长期服务阻塞时验证驻留在每个传感器设备中的程序的完整性。 PIV的核心是专门针对低成本CPU的新型随机哈希函数,通过该函数,可以在需要验证程序时随机生成用于程序哈希计算的算法。通过实现此随机哈希函数,PlV协议1)防止对传感器进行操纵/逆向工程/重新编程,除非攻击者修改了传感器硬件(例如,附加了更多的内存),2)提供了纯粹基于软件的保护以及3)触发很少进行验证,因此对正常传感器功能的干扰最小。我们的性能评估表明,PIV协议计算效率高,仅产生很小的通信开销,因此使其非常适合用于低成本传感器网络。

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