面向普及上下文异步一致性检查的并发事件检测

Yu Huang, Xiaoxing Ma, Jiannong Cao, Xianping Tao, Jian Lu
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引用次数: 41

摘要

上下文(捕捉计算环境特征的信息片段)在动态和不确定的普适计算环境中经常是不一致的。已经提出了各种方案来检查普适应用程序的上下文一致性。然而,现有的方案隐含地假设被检查的上下文属于同一时间快照。这种限制使得现有的方案不能在普适计算环境中工作,普适计算环境的特点是计算设备之间的异步协调。异步环境对上下文一致性检查的主要挑战是如何解释和检测并发事件。为此,本文提出了异步一致性检查并发事件检测(CEDA)算法。推导了CEDA的解析模型,并给出了相应的数值结果。我们还进行了广泛的实验评估,以调查CEDA是否适合上下文感知应用。理论分析和实验评估表明,在异步普测计算环境下,CEDA能够准确及时地检测并发事件,即使消息延迟、事件持续时间和上下文收集错误率发生了动态变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Concurrent Event Detection for Asynchronous consistency checking of pervasive context
Contexts, the pieces of information that capture the characteristics of computing environments, are often inconsistent in the dynamic and uncertain pervasive computing environments. Various schemes have been proposed to check context consistency for pervasive applications. However, existing schemes implicitly assume that the contexts being checked belong to the same snapshot of time. This limitation makes existing schemes do not work in pervasive computing environments, which are characterized by the asynchronous coordination among computing devices. The main challenge imposed on context consistency checking by asynchronous environments is how to interpret and detect concurrent events. To this end, we propose in this paper the Concurrent Events Detection for Asynchronous consistency checking (CEDA) algorithm. An analytical model, together with corresponding numerical results, is derived to study the performance of CEDA. We also conduct extensive experimental evaluation to investigate whether CEDA is desirable for context-aware applications. Both theoretical analysis and experimental evaluation show that CEDA accurately detects concurrent events in time in asynchronous pervasive computing environments, even with dynamic changes in message delay, duration of events and error rate of context collection.
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