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FPGA-based Fractional Brownian Motion Signal-Patterns for Optical Packet Generation

机译:基于FPGA的分数棕色运动信号模式,用于光学包生成

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Signal-pattern generation with different distributions and statistical parameters is an important issue for optical communications performance evaluation. This generation must include the signals' scaling or time-dependence degree representation. This paper proposes a new field-programmable gate array (FPGA)-based architecture to generate signals with fractional Brownian motion (fBm) patterns. The proposed implementation enables real-time performance experiments for optical communications using an Altera's Stratix Device Family. Uniform and a Gaussian sample generatioas were also implemented in this paper. The FPGA Mocks were validated considering a real H.263 encoded video sequence. The experiments show that the proposed fBm block architecture well-fitted the statistical parameters of the real video sequence and the fBm pattern. The proposed solution also presents an interesting trade-off between FPGA device resources usage and a maximum clock frequency.
机译:具有不同分布和统计参数的信号模式生成是光通信性能评估的重要问题。该一代必须包括信号'缩放或时间依赖度表示。本文提出了一种新的现场可编程门阵列(FPGA)的基于架构,以产生具有分数褐色运动(FBM)模式的信号。建议的实施使得使用Altera的Stratix设备系列来实现用于光通信的实时性能实验。本文还实施了统一和高斯样品发生。考虑到真正的H.263编码的视频序列,验证了FPGA模拟。实验表明,建议的FBM块建筑拟合了真实视频序列和FBM模式的统计参数。所提出的解决方案还呈现了FPGA设备资源使用和最大时钟频率之间有趣的权衡。

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