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Optimal Spot-Checking for Delayed Attack on Desktop Grid Systems

机译:台式机网格系统上延迟攻击的最佳现场检查

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This paper deals with an optimization problem of spot-checking to ensure reliability of Desktop Grid (DG) systems, in which some unreliable nodes (saboteurs) may perform delayed attack. In the delayed attack, saboteurs return correct results in the initial stage, and then start to return incorrect results afterward. The current sabotage-tolerance methods such as check-by-voting do not work well for the delayed attack, because they assume that sabotaging style does not change with time. As a counter measure to the delayed attack, this paper proposes a combined method of spot-checking and check-by-voting. Even if saboteurs start to return incorrect results in the delayed attack, spot-checking can detect such sabotaging and eliminate incorrect results. There is an optimal value for the spot-check rate q; that is, larger q reduces error rate of computations, which in turn decreases the throughput of the DG systems due to the spot-checking itself. Thus, we also propose a formula of estimating the minimal q that decreases the error rate to a given value or lower, regardless of the unknown parameters such as the period of the initial stage and sabotaging frequency. Simulation results show that obtained spot-check rate q by our formula is almost the same as the optimal value and is enough large to decrease the error rate less than the required level.
机译:本文讨论了抽检的优化问题,以确保桌面网格(DG)系统的可靠性,其中某些不可靠的节点(破坏者)可能会执行延迟攻击。在延迟的攻击中,破坏者会在初始阶段返回正确的结果,然后在之后开始返回错误的结果。当前的破坏破坏容忍方法(例如按投票检查)不适用于延迟攻击,因为它们认为破坏行为不会随时间变化。作为对付延迟攻击的一种措施,本文提出了一种现场检查和投票检查相结合的方法。即使破坏者在延迟的攻击中开始返回不正确的结果,抽查也可以检测到这种破坏并消除不正确的结果。抽查率q有一个最佳值;也就是说,较大的q会降低计算的错误率,这又会由于抽查本身而降低DG系统的吞吐量。因此,我们还提出了一个估计最小q的公式,该最小q将错误率降低到给定值或更低,而与未知参数(例如初始阶段的周期和破坏频率)无关。仿真结果表明,通过我们的公式获得的抽查率q与最佳值几乎相同,并且足够大以将错误率降低到所需水平以下。

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