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Measurement, modelling and capacity analysis for novel, fixed multi-user single-antenna MIMO-OFDM system, in rural environments

机译:农村环境中新型固定多用户单天线MIMO-OFDM系统的测量,建模和容量分析

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摘要

High-speed broadband internet access is widely recognised as a catalyst to social and economic development. However, the provision of broadband Internet services with the existing solutions to rural population, scattered over an extensive geographical area, remains both an economic and technical challenge. As a feasible solution, the Commonwealth Scientific and Industrial Research Organization (CSIRO) proposed a highly spectrally efficient, innovative and cost-effective fixed wireless broadband access technology, which uses analogue TV frequency spectrum and Multi-User MIMO (MUMIMO) technology with Orthogonal-Frequency-Division-Multiplexing (OFDM).ududMIMO systems have emerged as a promising solution for the increasing demand of higher data rates, better quality of service, and higher network capacity. However, the performance of MIMO systems can be significantly affected by different types of propagation environments e.g., indoor, outdoor urban, or outdoor rural and operating frequencies. For instance, large spectral efficiencies associated with MIMO systems, which assume a rich scattering environment in urban environments, may not be valid for all propagation environments, such as outdoor rural environments, due to the presence of less scatterer densities. Since this is the first time a MU-MIMO-OFDM fixed broadband wireless access solution is deployed in a rural environment, questions from both theoretical and practical standpoints arise; For example, what capacity gains are available for the proposed solution under realistic rural propagation conditions?. Currently, no comprehensive channel measurement and capacity analysis results are available for MU-MIMO-OFDM fixed broadband wireless access systems which employ large scale multiple antennas at the Access Point (AP) and analogue TV frequency spectrum in rural environments. Moreover, according to the literature, no deterministic MU-MIMO channel models exist that define rural wireless channels by accounting for terrain effects.ududThis thesis fills the aforementioned knowledge gaps with channel measurements, channel modeling and comprehensive capacity analysis for MU-MIMO-OFDM fixed wireless broadband access systems in rural environments. For the first time, channel measurements were conducted in a rural farmland near Smithton, Tasmania using CSIRO's broadband wireless access solution. A novel deterministic MU-MIMO-OFDM channel model, which can be used for accurate performance prediction of rural MUMIMO channels with dominant Line-of-Sight (LoS) paths, was developed under this research.ududResults show that the proposed solution can achieve 43.7 bits/s/Hz at a Signal-to- Noise Ratio (SNR) of 20 dB in rural environments. Based on channel measurement results, this thesis verifies that the deterministic channel model accurately predicts channel capacity in rural environments with a Root Mean Square (RMS) error of 0.18 bits/s/Hz. Moreover, this study presents a comprehensive capacity analysis of rural MU-MIMOOFDM channels using experimental, simulated and theoretical models. Based on the validated deterministic model, further investigations on channel capacity and the eects of capacity variation, with different user distribution angles (θ) around the AP, were analysed. For instance, when SNR = 20dB, the capacity increases from 15.5 bits/s/Hz to 43.7 bits/s/Hz as θ increases from 10° to 360°. Strategies to mitigate these capacity degradation effects are also presented by employing a suitable user grouping method.ududOutcomes of this thesis have already been used by CSIRO scientists to determine optimum user distribution angles around the AP, and are of great significance for researchers and MU-MUMO-OFDM system developers to understand the advantages and potential capacity gains of MU-MIMO systems in rural environments. Also, results of this study are useful to further improve the performance of MU-MIMO-OFDM systems in rural environments. Ultimately, this knowledge contribution will be useful in delivering efficient, cost-effective high-speed wireless broadband systems that are tailor-made for rural environments, thus, improving the quality of life and economic prosperity of rural populations.
机译:高速宽带互联网访问被广泛认为是社会和经济发展的催化剂。然而,通过现有解决方案为农村人口提供宽带互联网服务,这些解决方案分散在广泛的地理区域,仍然是经济和技术挑战。作为一种可行的解决方案,英联邦科学与工业研究组织(CSIRO)提出了一种频谱高效,创新且具有成本效益的固定无线宽带接入技术,该技术将模拟电视频谱和多用户MIMO(MUMIMO)技术与正交频分复用(OFDM).ud udMIMO系统已成为对更高数据速率,更好的服务质量和更高的网络容量不断增长的需求的有前途的解决方案。然而,MIMO系统的性能会受到不同类型的传播环境(例如,室内,室外城市或室外农村和工作频率)的显着影响。例如,由于存在较少的散射密度,与MIMO系统相关联的大频谱效率在城市环境中假设了丰富的散射环境,可能不适用于所有传播环境,例如室外农村环境。由于这是在农村环境中首次部署MU-MIMO-OFDM固定宽带无线接入解决方案,因此出现了从理论和实践角度都存在的问题。例如,在现实的农村传播条件下,所提出的解决方案可获得哪些容量增益?当前,尚无针对MU-MIMO-OFDM固定宽带无线接入系统的全面信道测量和容量分析结果,该系统在乡村环境中在接入点(AP)使用大型多天线和模拟电视频谱。此外,根据文献,尚不存在通过考虑地形影响来定义农村无线信道的确定性MU-MIMO信道模型。 ud ud本文通过信道测量,信道建模和MU-MIMO的综合容量分析来填补上述知识空白。 -农村环境中的OFDM固定无线宽带接入系统。首次使用CSIRO的宽带无线接入解决方案在塔斯马尼亚州Smithton附近的农村农田中进行了信道测量。在此研究基础上,开发了一种新颖的确定性MU-MIMO-OFDM信道模型,该模型可用于精确预测具有主导视线(LoS)路径的农村MUMIMO信道的性能。 ud ud结果表明,提出的解决方案在农村环境中,在20 dB的信噪比(SNR)下可以达到43.7 bit / s / Hz。基于信道测量结果,本文验证了确定性信道模型能够准确预测农村环境中的信道容量,其均方根(RMS)误差为0.18 bit / s / Hz。此外,本研究使用实验,仿真和理论模型对农村MU-MIMOOFDM信道进行了全面的容量分析。基于已验证的确定性模型,分析了在AP周围具有不同用户分布角度(θ)的信道容量和容量变化影响的进一步研究。例如,当SNR = 20dB时,随着θ从10°增加到360°,容量从15.5位/秒/赫兹增加到43.7位/秒/赫兹。还通过采用合适的用户分组方法提出了缓解这些容量降低影响的策略。 ud udCSIRO科学家已经使用了本论文的结果来确定AP周围的最佳用户分布角度,这对于研究人员和研究人员具有重要意义。 MU-MUMO-OFDM系统开发人员了解农村环境中MU-MIMO系统的优势和潜在的容量增加。而且,这项研究的结果对于进一步改善农村环境中MU-MIMO-OFDM系统的性能很有用。最终,这种知识贡献将有助于交付针对农村环境量身定制的高效,经济高效的高速无线宽带系统,从而改善农村人口的生活质量和经济繁荣。

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    Ratnayake Nisal Lahiru;

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