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Pattern Rewriting Framework for Event Processing Optimization

机译:用于事件处理优化的模式重写框架

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摘要

A growing segment of event-based applications require both strict performance goals and support in the processing of complex event patterns. Event processing patterns have multiple complexity dimensions: the semantics of the language constructs (e.g., sequence) and the variety of semantic interpretations for each pattern (controlled by policies). We introduce in this paper a novel approach for pattern rewriting that aims at efficiently processing patterns which comprise all levels of complexity. We present a formal model for pattern rewriting and demonstrate its usage in a comprehensive set of rewriting techniques for complex pattern types, taking various semantic interpretations into account. A cost model is presented, balancing processing latency and event throughput according to user's preference. Pattern cost is then estimated using simulation-based techniques. This work advances the state-of-the-art by analyzing complex event processing logic and by using explicit means to optimize elements that were considered "black box." Our empirical study yields encouraging results, with improvement gain of up to tenfold relative to the non optimized solutions that are used in the current state-of-the-art systems.
机译:越来越多的基于事件的应用程序部分需要严格的性能目标和对复杂事件模式的处理的支持。事件处理模式具有多个复杂性维度:语言构造的语义(例如序列)和每种模式的各种语义解释(由策略控制)。我们在本文中介绍了一种用于模式重写的新颖方法,该方法旨在有效处理包含所有复杂程度的模式。我们提出了一种模式重写的正式模型,并在考虑到各种语义解释的情况下,在复杂模式类型的全面重写技术中展示了其用法。提出了一种成本模型,可根据用户的偏好平衡处理延迟和事件吞吐量。然后使用基于仿真的技术来估计图案成本。这项工作通过分析复杂的事件处理逻辑并使用显式手段来优化被视为“黑匣子”的元素,从而提高了技术水平。我们的经验研究得出令人鼓舞的结果,相对于当前最先进的系统中使用的非优化解决方案,改进收益高达十倍。

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