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An efficient preamble compression for multi clock-rate sampling wireless devices

机译:用于多时钟速率采样无线设备的高效前导压缩

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The recent trend in wireless communication networks has seen the focus shift from spectrum efficiency to energy efficiency. Use of multi clock-rate sampling devices to provide reduced power idle listening promises to significantly reduce power consumption in wireless devices without affecting throughput or transmission range. However, the use of frequency agnostic preamble to enable multi clock-rate detection causes linear scaling of preamble length, and consequently, the goodput performance of the network suffers. In this paper, we look at a modification of RObust Header Compression (ROHC) as a means to restrict header length scaling and its applicability in networks of multi-frequency sampling wireless devices. We analyze the modified preamble compression scheme deployed on multi clock-rate sampling wireless devices and determine performance metrics such as channel utilization and goodput across different error rates and downclocking factors. The energy efficiency performance of such a network is also studied. The results obtained are validated using extensive simulation.
机译:最近无线通信网络的趋势已经看出,从频谱效率到能效的焦点偏移。使用多时钟速率采样器件可提供减少的功率空闲聆听承诺,以显着降低无线设备中的功耗而不会影响吞吐量或传输范围。然而,使用频率不可知前导码使得多时钟速率检测导致前导码长度的线性缩放,因此,网络的良好性能遭受。在本文中,我们研究强大的标题压缩(RoHC)的修改,作为限制标题长度缩放的方法及其在多频采样无线设备网络中的适用性。我们分析了部署在多时钟速率采样无线设备上的修改的前导码压缩方案,并确定跨不同误差率和下划线因子的沟道利用率和良品等性能度量。还研究了这种网络的能效性能。获得的结果使用广泛的模拟验证。

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