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Real-Time Quantile-Based Estimation of Resource Utilization on an FPGA Platform Using HLS

机译:基于实时定量的基于分位式使用HLS对FPGA平台的资源利用估算

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摘要

Hardware accelerated modules that can continuously measure/analyze resource (frequency channels, power, etc.) utilization in real-time can help in achieving efficient network control, and configuration in cloud managed wireless networks. As utilization of various network resources over time often exhibits broad and skewed distribution, estimating quantiles of metrics to characterize their distribution is more useful than typical approaches that tend to focus on measuring average values only. In this paper, we describe the development of a real-time quantile-based resource utilization estimator module for wireless networks. The intensive processing tasks run on the FPGA, while the command and control runs on an embedded ARM processor. The module is implemented by using high level synthesis (HLS) on a Xilinx & x2019;s Zynq-7000 series all programmable system on chip board. We test the performance of the implemented quantile estimator module, and as an example, we focus on forecasting congestion with real frequency channel utilization data. We compare the results from the implemented module against the results from a theoretical quantile estimator. We show that with high accuracy and in real time, the implemented module can perform quantile estimation and can be utilized to perform forecasting of congestion in wireless frequency spectrum utilization.
机译:硬件加速模块,可以连续测量/分析资源(频道,电源等)实时利用可以有助于实现有效的网络控制和云管理无线网络中的配置。随着各种网络资源的利用通常呈现广泛且倾斜的分布,估计指标的量级以表征其分布比倾向于专注于测量平均值的典型方法更有用。在本文中,我们描述了用于无线网络的实时定量基础资源利用率估计模块的开发。密集的处理任务在FPGA上运行,而命令和控制在嵌入式臂处理器上运行。该模块是通过在Xilinx和X2019; S Zynq-7000系列所有可编程系统上使用Xilinx-7000系列的高级合成(HLS)来实现。我们测试实现的定位估算器模块的性能,作为示例,我们专注于预测具有实际频率信道利用数据的拥塞。我们将实现模块的结果与理论分位式估算器的结果进行比较。我们以高精度且实时地表明,实现的模块可以执行量级估计,并且可以用于在无线频谱利用中进行拥塞的预测。

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