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首页> 外文期刊>Wireless Communications, IEEE Transactions on >Orthogonal convolutional modulation for UWB-impulse radio systems: performance analysis and adaptive schemes
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Orthogonal convolutional modulation for UWB-impulse radio systems: performance analysis and adaptive schemes

机译:UWB脉冲无线电系统的正交卷积调制:性能分析和自适应方案

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摘要

In the context of UWB (ultra-wide band) Impulse Radio (IR) heterogeneous low data-rate networks, the need for coding/modulation schemes amenable of both coherent and noncoherent detection has emerged. The rationale is the potential coexistence of different classes of nodes, characterized by different complexity and performances. In such scenario, one of the main technical challenges is the design of efficient coding/modulation schemes incorporating forward error correction (FEC) and spreading capabilities, thus providing the necessary processing and coding gain, to guarantee robust communications. In this work, we introduce novel coding schemes exploiting the trellis structure of Orthogonal Convolutional Codes for generating time-hopping sequences suitable for UWB-IR, while simultaneously mapping the information bits onto the transmitted waveforms. Namely, we present a new class of Orthogonal Convolutional Modulation (OCM) schemes, highlighting the trade-offs in terms of coherent vs. non-coherent detection performance. Then we develop an adaptive OCM scheme (AOCM) for application to broadcast transmission in heterogeneous UWB-IR networks, illustrating advantages in terms of energy savings and potential drawbacks.
机译:在UWB(超宽带)脉冲无线电(IR)异构低数据速率网络的背景下,出现了对适用于相干和非相干检测的编码/调制方案的需求。基本原理是不同类别节点的潜在共存,其特征是不同的复杂性和性能。在这种情况下,主要的技术挑战之一是结合前向纠错(FEC)和扩频能力的有效编码/调制方案的设计,从而提供必要的处理和编码增益,以确保可靠的通信。在这项工作中,我们介绍了利用正交卷积码的网格结构来生成适用于UWB-IR的跳时序列,同时将信息比特映射到传输波形的新颖编码方案。也就是说,我们提出了一类新的正交卷积调制(OCM)方案,重点介绍了相干检测性能与非相干检测性能之间的权衡。然后,我们开发了一种自适应OCM方案(AOCM),适用于异构UWB-IR网络中的广播传输,从而说明了在节能和潜在缺点方面的优势。

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