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Evaluation of overlay/underlay waveform via SD-SMSE framework for enhancing spectrum efficiency.

机译:通过SD-SMSE框架评估上/下波形,以提高频谱效率。

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摘要

Recent studies have suggested that spectrum congestion is mainly due to the inefficient use of spectrum rather than its unavailability. Dynamic Spectrum Access (DSA) and Cognitive Radio (CR) are two terminologies which are used in the context of improved spectrum efficiency and usage. The DSA concept has been around for quite some time while the advent of CR has created a paradigm shift in wireless communications and instigated a change in FCC policy towards spectrum regulations. DSA can be broadly categorized as using a (1) Dynamic Exclusive Use Model, (2) Spectrum Commons or Open sharing model or (3) Hierarchical Access model. The hierarchical access model envisions primary licensed bands, to be opened up for secondary users, while inducing a minimum acceptable interference to primary users. Spectrum overlay and spectrum underlay technologies fall within the hierarchical model, and allow primary and secondary users to coexist while improving spectrum efficiency. Spectrum overlay in conjunction with the present CR model considers only the unused (white) spectral regions while in spectrum underlay the underused (gray) spectral regions are utilized. The underlay approach is similar to ultra wide band (UWB) and spread spectrum (SS) techniques utilize much wider spectrum and operate below the noise floor of primary users.;Software defined radio (SDR) is considered a key CR enabling technology. Spectrally modulated, spectrally encoded (SMSE) multi-carrier signals such as Orthogonal Frequency Domain Multiplexing (OFDM) and Multi-carrier Code Division Multiple Access (MCCDMA) are hailed as candidate CR waveforms. The SMSE structure supports and is well-suited for SDR based CR applications. This work began by developing a general soft decision (SD) CR framework, based on a previously developed SMSE framework that combines benefits of both the overlay and underlay techniques to improve spectrum efficiency and maximizing the channel capacity. The resultant SD-SMSE framework provides a user with considerable flexibility to choose overlay, underlay or hybrid overlay/underlay waveform depending on the scenario, situation or need. Overlay/Underlay SD-SMSE framework flexibility is demonstrated by applying it to a family of SMSE modulated signals such as OFDM, MCCDMA, Carrier Interferometry (CI) MCCDMA and Transform Domain Communication System (TDCS). Based on simulation results, a performance analysis of Overlay, Underlay and hybrid Overlay/Underlay waveforms is presented. Finally, the benefits of combining overlay/underlay techniques to improve spectrum efficiency and maximize channel capacity is addressed.
机译:最近的研究表明,频谱拥塞主要是由于频谱使用效率低而不是频谱不可用。动态频谱访问(DSA)和认知无线电(CR)是在提高频谱效率和使用情况下使用的两个术语。 DSA的概念已经存在了相当一段时间,而CR的出现在无线通信领域引起了范式转变,并促使FCC政策朝着频谱法规的方向转变。 DSA可以大致归类为使用(1)动态专用模型,(2)频谱共享或开放共享模型或(3)分层访问模型。分层访问模型设想了主要许可频段,将为次要用户开放,同时对主要用户产生最小的可接受干扰。频谱覆盖和频谱底层技术属于分层模型,可在提高频谱效率的同时使主要用户和次要用户共存。与当前CR模型结合使用的频谱叠加仅考虑未使用的(白色)频谱区域,而在频谱底层中,利用了未充分利用的(灰色)频谱区域。底层方法类似于超宽带(UWB),扩频(SS)技术利用更宽的频谱并在主要用户的本底噪声以下运行。软件定义无线电(SDR)被认为是关键的CR支持技术。诸如正交频域复用(OFDM)和多载波码分多址(MCCDMA)之类的频谱调制,频谱编码(SMSE)多载波信号被称为候选CR波形。 SMSE结构支持并且非常适合基于SDR的CR应用程序。这项工作首先基于先前开发的SMSE框架,开发了一个通用软判决(SD)CR框架,该框架结合了覆盖和底层技术的优势,从而提高了频谱效率并最大化了信道容量。最终的SD-SMSE框架为用户提供了相当大的灵活性,可以根据情况,情况或需要选择覆盖,参考底图或混合参考图/参考底图波形。通过将其应用于一系列SMSE调制信号(例如OFDM,MCCDMA,载波干涉测量(CI)MCCDMA和变换域通信系统(TDCS)),可以证明叠加/底层SD-SMSE框架的灵活性。根据仿真结果,对重叠,重叠和混合重叠/重叠波形进行了性能分析。最后,解决了组合覆盖/底层技术以提高频谱效率和最大化信道容量的好处。

著录项

  • 作者

    Chakravarthy, Vasu D.;

  • 作者单位

    Wright State University.;

  • 授予单位 Wright State University.;
  • 学科 Engineering Electronics and Electrical.;Computer Science.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 155 p.
  • 总页数 155
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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