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Ultra-wideband technology: Prospective solution for 5G ultra-small cell networks

机译:超宽带技术:5G超小型电池网络的前瞻性解决方案

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Exhaustive research is being done to establish the technologies and standards of the fifth generation (5G) of wireless communication systems. Some of the most challenging requirements of 5G systems are to increase the spectral efficiency and the capacity by a factor of 10 and 1,000, respectively. New technologies must offer an adequate framework for the 5G uses cases, which will enable higher capacities and the flexibility to adapt to dynamic scenarios. To cope with these challenging demands, a compelling approach is to exploit the current radio service bands by means of spectrum sharing and cooperation techniques, which alleviate the bandwidth requirements. In addition, advanced modulation schemes have a fundamental role in ensuring the best usage of the spectrum available in band-limited systems. In this manuscript, we present the ultra-wideband (UWB) technology as a prospective solution for 5G picocells and femtocells. Its main feature is its capability to operate simultaneously, without introducing interference, with current radio services on an unlicensed basis. We report experimental results reaching data rates up to 35 Gbit/s using the multiband approach of carrierless amplitude phase (MB-CAP) modulation. To validate the versatility of the proposed system, our experimental tests were performed under the UWB regulations defined by the United States' Federal Communications Commission (FCC), the European Electronic Communications Committee (ECC), and the Russian State Committee for Radio Frequencies (SCRF). The regulations chosen provide diversity enough to demonstrate the capacity of MB-CAP modulation to comply with worldwide regulations.
机译:正在进行详尽的研究来建立第五代(5G)无线通信系统的技术和标准。 5G系统的一些最具挑战性要求是将光谱效率和容量分别提高10%和1,000倍。新技术必须为5G使用案例提供足够的框架,这将使能够更高的能力和适应动态方案的灵活性。为了应对这些挑战性要求,令人信服的方法是通过频谱共享和合作技术利用当前的无线电服务频段,这减轻了带宽要求。此外,高级调制方案在确保带限量系统中可用的频谱的最佳使用方面具有重要作用。在此稿件中,我们将超宽带(UWB)技术呈现为5G微微小区和毫微微蜂窝的前瞻性解决方案。其主要特征是其能够同时运行,而不会引入干扰,在无核的基础上具有当前无线电服务。我们报告了使用多频带幅度相位(MB-CAP)调制的多频带方法达到高达35 Gbit / s的实验结果。为了验证所提出的系统的多功能性,我们的实验测试是根据美国联邦通信委员会(FCC),欧洲电子通信委员会(ECC)和俄罗斯国家射频委员会(SCRF)所定义的UWB规定进行的)。选择的法规提供多样性足以证明MB-Cap调制的能力遵守全球法规。

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