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Spectral efficiency of CDMA based ad-hoc networks

机译:基于CDma的ad-hoc网络的频谱效率

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摘要

Spectrum efficiency and energy efficiency are two important attributes driving innovation in wireless communication. Efficient spectrum utilization and sharing with multiple access techniques and using under-utilized spectra by cognitive radios is the current focus due to the scarcity and cost of the available radio spectrum. Energy efficiency to increase operating time of portable handheld devices like smartphones that handle simultaneous voice/video streaming and web browsing and battery powered nodes in a sensor network where battery capacity determines the lifetime of the network is another area attracting researchers. The focus of this thesis is the spectral efficiency of multicarrier code division multiple access (CDMA) in wireless ad-hoc networks. Furthermore, energy efficiency to maximize lifetime of a network are also studied.In a multicarrier CDMA system inter-carrier interference (ICI) due to carrier frequency offset and multiple access interference (MAI) are two major factors that deteriorate the performance. Previous work in this area has been mostly focused on simulation results due to the complexity of the analysis due to the large number of random variables involved. Taking into account accurate statistical models for ICI and MAI that account for the correlation between adjacent subcarriers, this thesis presents new mathematical analysis for the spectral efficiency of multicarrier CDMA communication systems over a frequency selective Rayleigh fading environment. We analyze and compare three multicarrier CDMA schemes which are multicarrier CDMA, multicarrier direct-sequence CDMA and multitone CDMA. We also present simulation results to confirm the validity of our analysis. We also analyze the performance of three simple multiple access techniques or coexistence etiquettes in detail, which are simple to implement and do not require any central control. Accurate interference models are developed and are used to derive accurate expressions for packet error rates in the case of direct sequence CDMA and slotted packet transmission schemes. These results are then used to study the performance of the coexistence etiquettes and compare them with each other. Finally we present a new joint node selection and power allocation strategy that increases lifetime of an ad-hoc network where nodes cooperate to enable diversity in transmission.
机译:频谱效率和能效是推动无线通信创新的两个重要属性。由于可用无线电频谱的稀缺性和成本,有效的频谱利用和与多种接入技术的共享以及认知无线电使用未充分利用的频谱是当前的重点。能源效率提高了诸如智能手机之类的便携式手持设备的运行时间,这些设备可同时处理语音/视频流和网络浏览以及传感器网络中由电池供电的节点,其中电池容量决定了网络的寿命是吸引研究人员的另一个领域。本文的重点是无线自组织网络中多载波码分多址(CDMA)的频谱效率。此外,还研究了使网络寿命最大化的能量效率。在多载波CDMA系统中,由于载波频率偏移和多址干扰(MAI)引起的载波间干扰(ICI)是使性能恶化的两个主要因素。由于涉及大量的随机变量,分析的复杂性使得该领域的先前工作主要集中在模拟结果上。考虑到ICI和MAI的精确统计模型,这些模型考虑了相邻子载波之间的相关性,提出了一种新的数学分析方法,用于对频率选择性瑞利衰落环境下多载波CDMA通信系统的频谱效率进行分析。我们分析并比较了三种多载波CDMA方案,即多载波CDMA,多载波直接序列CDMA和多音CDMA。我们还提出了模拟结果,以确认我们分析的有效性。我们还将详细分析三种简单的多址访问技术或共存礼节的性能,这些技术易于实现且不需要任何中央控制。在直接序列CDMA和时隙分组传输方案的情况下,开发了精确的干扰模型并将其用于得出分组错误率的精确表达式。然后将这些结果用于研究共存礼节的表现,并将其相互比较。最后,我们提出了一种新的联合节点选择和功率分配策略,该策略可以增加自组织网络的寿命,其中节点协作以实现传输的多样性。

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