Polling the smart battery for efficiency: Lifetime optimization in battery-sensing intrusion protection systems

T. Buennemeyer, T. Nelson, R. Marchany, J. Tront
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引用次数: 8

Abstract

This paper introduces a supporting model for a unique battery-sensing intrusion protection system (B-SIPS) for mobile computers, which alerts when power changes are detected on small wireless devices. An analytical model is employed to examine smart battery characteristics to support the theoretical intrusion detection limits and capabilities of B-SIPS. Battery-based attack detections can be significantly increased by investigating variable smart battery polling rates, system management bus speeds, and attack execution times. This research explores the modification of smart battery polling rates in conjunction with the variance of malicious network activity. An optimum static polling rate for each of the selected illicit network attack densities was determined by altering these two parameters. These optimum static polling rates introduce minimum and maximum thresholds for the various scenarios mobile devices encounter on a daily basis. Future work will investigate dynamic solutions to optimize battery lifetime under a range of circumstances by encompassing the data results found in this study.
轮询智能电池的效率:电池传感入侵保护系统的寿命优化
本文介绍了一种独特的用于移动计算机的电池感应入侵保护系统(B-SIPS)的支持模型,该系统在小型无线设备上检测到电源变化时发出警报。采用一个分析模型来检验智能电池的特性,以支持B-SIPS的理论入侵检测限制和能力。通过调查可变的智能电池轮询率、系统管理总线速度和攻击执行时间,可以显著增加基于电池的攻击检测。本研究探讨了智能电池轮询率与恶意网络活动变化相结合的修改。通过改变这两个参数,确定了每个选择的非法网络攻击密度的最佳静态轮询速率。这些最佳静态轮询速率为移动设备每天遇到的各种场景引入了最小和最大阈值。未来的工作将研究动态解决方案,通过包含本研究中发现的数据结果,在一系列情况下优化电池寿命。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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