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A Reliable Channel Estimation Scheme Using Scattered Pilot Pattern for IEEE 802.22-Based Mobile Communication System

机译:基于IEEE 802.22的移动通信系统的分散导频模式的可靠信道估计方案

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Current vehicular communication systems are disadvantageous in dealing with a full-range futuristic intelligent transportation system (ITS) with regard to coverage and cost. On the contrary, TV white-spaces have the potential to provide a wide-coverage, large-capacity, and cost-effective connectivity for ITS because of the excellent propagation properties, and there are increasing demands for applying IEEE 802.22 to mobile communication system capable of a wide coverage of 10-30 km. Meanwhile, since IEEE 802.22 was standardized as a fixed communication system, its scattered pilot pattern hinders accurate channel estimation in a highly mobile environment due to the Doppler shift and long-delay multipath fading. In this paper, we propose a reliable channel estimation scheme enabling an IEEE 802.22-based mobile communication system in rural areas without altering physical layer parameters. The proposed scheme effectively uses pilot symbols in adjacent subcarriers to extend interpolation range and shorten interpolation interval and offers high-accurate and stable channel estimation while maintaining flexibility in downstream/upstream ratio. As a simulation result, our proposed scheme sufficiently achieves a required bit error rate of 2 x 10(-4) in a highly mobile long-delay multipath fading environment even in the presence of high carrier frequency offset.
机译:目前的车辆通信系统在处理全面的未来型智能交通系统(其)方面是不利的,以考虑到覆盖率和成本。相反,电视白板有可能为其提供宽覆盖,大容量和经济效益的连接,因为它具有出色的传播特性,并且对移动通信系统应用IEEE 802.22的需求越来越大广泛的覆盖范围为10-30公里。同时,由于IEEE 802.22被标准化为固定通信系统,因此由于多普勒频移和长延迟多径衰落,其散射的导频模式阻碍了在高度移动环境中的精确信道估计。在本文中,我们提出了一种可靠的信道估计方案,使得在农村地区的基于IEEE 802.22的移动通信系统而不改变物理层参数。所提出的方案有效地使用相邻子载波中的导频符号来扩展插值范围并缩短插值间隔,并提供高精度且稳定的信道估计,同时保持下游/上游比率的灵活性。作为仿真结果,即使在高载波频率偏移的情况下,我们所提出的方案也足够地实现了高度移动的长延迟多径衰落环境中的2×10(-4)的所需比特误差率。

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