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Sub-sampled OFDM based sub-band ultra-wideband system

机译:基于子采样OFDM的子带超宽带系统

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In sub-band ultra-wideband (SUWB) systems, the use of spreading codes in conjunction with sub-banding enables energy efficient reduced sampling rate receiver designs. In this work, the orthogonal frequency division multiplexing (OFDM) technique is proposed for SUWB systems as a means to mitigate the multipath fading effects of the channel. The OFDM demodulation performed at the sub-sampled rate with reduced number of discrete Fourier transform (DFT) points provides scope for low power receiver implementations. Moreover, OFDM improves the flexibility as bandwidth resources can be allocated with improved granularity at integral multiples of the OFDM sub-channel bandwidth. The requisite correlation properties of the spreading codes is relaxed in the proposed OFDM-SUWB system and more number of spreading codes can be used when compared to the existing SUWB system. Also, a simple channel estimation method exploiting the low complexity advantage of the inherent spreading code based receiver is proposed. Simulation results in terms of the bit error rate (BER) performance are presented over the IEEE 802.15.4a channel models and also comparisons with the multi-band OFDM (MB-OFDM) system are made demonstrating the usefulness of the proposed scheme.
机译:在子带超宽带(SUWB)系统中,将扩展码与子带结合使用可实现节能高效的采样率接收机设计。在这项工作中,针对SUWB系统提出了正交频分复用(OFDM)技术,以减轻信道的多径衰落效应。以子采样率执行的OFDM解调具有数量减少的离散傅里叶变换(DFT)点,为低功率接收机的实现提供了空间。此外,由于可以在OFDM子信道带宽的整数倍处以改进的粒度分配带宽资源,因此OFDM提高了灵活性。在所提出的OFDM-SUWB系统中,扩展码的必要的相关特性被放宽,并且与现有的SUWB系统相比,可以使用更多数量的扩展码。此外,提出了一种简单的信道估计方法,该方法利用了基于固有扩频码的接收机的低复杂度优势。在IEEE 802.15.4a信道模型上提供了有关误码率(BER)性能的仿真结果,并与多频带OFDM(MB-OFDM)系统进行了比较,证明了该方案的实用性。

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