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Adaptive QoS Mechanisms for Dependable Data Delivery in Replication-based Voting Systems

机译:基于复制的投票系统中可靠数据传递的自适应QoS机制

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摘要

Majority voting among replicated data collection processes enhances the trust-worthiness of data flowing from a hostile external environment. It allows a correct data fusion and dissemination by the end-users, in the presence of content corruptions and/or timing failures that may possibly occur during data collection. In this paper, we provide a QoS-oriented approach to manage the data flow through various system elements. The underlying protocol-level parameters that influence data delivery performance are the data sizes, network bandwidth, and voter asynchrony. A replica voting protocol takes into account the interplay between these parameters as the faulty behavior of malicious processes unfolds in various forms during data collection. Our QoS-oriented approach casts the well-known fault-tolerance techniques, namely, 2-phase voting, with control mechanisms that adapt the data delivery to meet the end-to-end constraints -such as latency, miss rate, and resource cost. The QoS-oriented approach allows us to infuse the currently prevalent network-level mechanisms for resource management into the voting protocol operations in a seamless manner, while meeting both the fault-tolerance and end-to-end delivery performance.
机译:复制数据收集过程中的多数表决可增强来自敌对外部环境的数据的信任度。在存在可能在数据收集期间发生的内容损坏和/或定时故障的情况下,它允许最终用户进行正确的数据融合和分发。在本文中,我们提供了一种面向QoS的方法来管理通过各种系统元素的数据流。影响数据传递性能的基础协议级别参数是数据大小,网络带宽和投票器异步。当数据收集期间恶意进程的错误行为以各种形式展开时,副本投票协议会考虑这些参数之间的相互作用。我们以QoS为导向的方法采用了众所周知的容错技术,即两阶段投票,其控制机制可以使数据传输适应端到端约束,例如延迟,丢失率和资源成本。 。面向QoS的方法使我们能够无缝地将当前流行的网络级资源管理机制注入投票协议操作中,同时满足容错和端到端交付性能。

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