Model-based control of device replication for trusted data collection

K. Ravindran, M. Rabby, Arun Adiththan
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引用次数: 1

Abstract

Voting among replicated data collection devices is a means to achieve dependable data delivery to the end-user in a hostile environment. Failures may occur during the data collection process: such as data corruptions by malicious devices and security/bandwidth attacks on data paths. For a voting system, how often a correct data is delivered to the user in a timely manner and with low overhead depicts the QoS. Prior works have focused on algorithm correctness issues and performance engineering of the voting protocol mechanisms. In this paper, we study the methods for autonomic management of device replication in the voting system to deal with situations where the available network bandwidth fluctuates, the fault parameters change unpredictably, and the devices have battery energy constraints. We treat the voting system as a `black-box' with programmable I/O behaviors. A management module exercises a macroscopic control of the voting box with situational inputs: such as application priorities, network resources, battery energy, and external threat levels.
用于可信数据收集的基于模型的设备复制控制
在复制的数据收集设备之间进行投票是在恶劣环境中向最终用户提供可靠数据的一种手段。数据采集过程中可能出现故障,如数据被恶意设备破坏、数据路径受到安全/带宽攻击等。对于一个投票系统来说,一个正确的数据以及时和低开销的方式传递给用户的频率描述了QoS。先前的工作主要集中在算法正确性问题和投票协议机制的性能工程上。本文研究了投票系统中设备复制的自主管理方法,以应对可用网络带宽波动、故障参数变化不可预测以及设备存在电池能量约束等情况。我们将投票系统视为具有可编程I/O行为的“黑盒子”。管理模块通过情景输入对投票箱进行宏观控制:例如应用程序优先级、网络资源、电池能量和外部威胁级别。
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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