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Integrating multicore awareness functions into distribution middleware for improving performance of distributed audio surveillance

机译:将多核感知功能集成到分布式中间件中,以提高分布式音频监控的性能

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摘要

This paper describes an approach to improve the performance of the distributed audio-processing functions for audio surveillance systems. In order to increase portability, current distributed audio-processing uses the default capacities offered by the underlying scheduling facilities of the operating system. In this approach, a set of capacities are added to the distribution software that enable the reduction of the distributed processing time of audio frames at the server side by adding functions that utilize the underlying hardware resources including exclusive core reservation. By loosing some generality in the design of the distribution software, it is possible to increase performance and provide better isolation to selected audio tasks in the presence of other competing software tasks. The approach is designed and implemented as well as analyzed on general purpose computers with a server-client architecture using serial scheduling of the audio tasks and parallelizing the digital signal processing computations. The proposed solution is implemented and analyzed showing benefits in performance and robustness over single threaded audio processing. The resulting system is significantly more robust in the presence of other competing software tasks (noise). These results directly yield the possibility to manage more concurrent audio streams at the server side.
机译:本文介绍了一种为音频监视系统提高分布式音频处理功能性能的方法。为了增加可移植性,当前的分布式音频处理使用操作系统底层调度功能提供的默认容量。在这种方法中,将一组容量添加到分发软件,通过添加利用包括专有核心预留在内的底层硬件资源的功能,可以减少服务器端音频帧的分布式处理时间。通过在分发软件的设计中失去一些通用性,可以提高性能,并在存在其他竞争软件任务的情况下更好地隔离选定的音频任务。该方法是在具有服务器-客户端体系结构的通用计算机上设计和实现的,并使用音频任务的串行调度并并行化数字信号处理计算来进行分析。所提出的解决方案得以实施和分析,显示出性能和鲁棒性优于单线程音频处理。在存在其他竞争性软件任务(噪声)的情况下,所得系统明显更强大。这些结果直接产生了在服务器端管理更多并发音频流的可能性。

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