Integrated control of matching delay and CPU utilization in information dissemination systems

Ming Chen, Xiaorui Wang, Ben Taylor
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引用次数: 6

Abstract

The demand for high performance information dissemination is increasing in many applications, such as e-commerce and security alerting systems. These applications usually require that the desired information be matched between sources and sinks based on established subscriptions in a timely manner while a maximal system throughput be achieved to find more matched results. Existing work primarily focuses on only one of the two requirements, either timeliness or throughput. This can lead to an unnecessarily underutilized system or poor guarantees on matching delays. In this paper, we propose an integrated solution that controls both the matching delay and CPU utilization in information dissemination systems to achieve bounded matching delay for high-priority information and maximized system throughput in an example information dissemination system. Our solution is based on optimal control theory for guaranteed control accuracy and system stability. Empirical results on a physical testbed demonstrate that our controllers can guarantee the timeliness requirements while achieving maximized system throughput.
信息传播系统中匹配延迟与CPU利用率的综合控制
在电子商务和安全报警系统等许多应用中,对高性能信息传播的需求日益增加。这些应用程序通常要求根据已建立的订阅及时地在源和接收器之间匹配所需的信息,同时实现最大的系统吞吐量以找到更多匹配的结果。现有的工作主要集中于两个需求中的一个,要么是及时性,要么是吞吐量。这可能导致不必要的未充分利用的系统或对匹配延迟的不良保证。本文提出了一种控制信息传播系统中匹配延迟和CPU利用率的集成解决方案,以实现高优先级信息的有限匹配延迟和一个示例信息传播系统的最大系统吞吐量。我们的解决方案基于最优控制理论,以保证控制精度和系统稳定性。在物理测试台上的实验结果表明,我们的控制器可以在保证及时性要求的同时实现最大的系统吞吐量。
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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