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Multidimensional modulation for ultra-wideband multiple-access impulse radio in wireless multipath channels

机译:无线多径信道中超宽带多址脉冲无线电的多维调制

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摘要

In this paper, we develop multidimensional modulation for ultra-wideband (UWB) multiple-access (MA) impulse-radio communications in wireless multipath environments. An important advantage of multidimensional modulation over single-dimensional modulation is the possibility of higher power efficiency, and this may be critical in UWB communications. For this reason, we propose a 2MN-ary biorthogonal keying (BOK) scheme, in which N orthogonal pulse shapes in conjunction with M orthogonal codes are employed to construct MN-dimensional biorthogonal modulation. The direct sequence (DS) MA performance of the proposed scheme is analyzed. A closed-form bit-error-rate expression is derived and compared with simulations based on the Intel Labs' UWB channel model. Orthogonal pulse shapes that comply with the Federal Communications Commission UWB indoor-emission limits are used in simulations. Our results confirm the power-efficiency improvement achieved by multidimensional modulation for UWB MA communications under multipath fading.
机译:在本文中,我们为无线多径环境中的超宽带(UWB)多址(MA)脉冲无线电通信开发了多维调制。多维调制相对于一维调制的一个重要优点是可以实现更高的功率效率,这在UWB通信中可能至关重要。因此,我们提出了2MN元双正交键控(BOK)方案,其中N个正交脉冲形状与M个正交码一起用于构造MN维双正交调制。分析了所提出方案的直接序列(DS)MA性能。得出封闭形式的误码率表达式,并将其与基于英特尔实验室的UWB信道模型的仿真进行比较。在仿真中使用符合联邦通信委员会UWB室内发射限制的正交脉冲形状。我们的结果证实了在多径衰落下通过多维调制实现UWB MA通信的功率效率提高。

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