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Multi-Carrier Listen Before Talk With Power Leakage Awareness for LTE-LAA in Unlicensed Spectrum

机译:多运营商在免许可频谱中使用LTE-LAA的漏电感知进行通话前监听

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摘要

Licensed-assisted access (LAA) is a new feature of 3GPP LTE that utilizes unlicensed spectrum as a means of providing additional bandwidth. For fair coexistence with other incumbent systems such as Wi-Fi, LAA runs a listen-before-talk (LBT) procedure before transmission, which is designed to support multi-carrier operation as well. However, inherent power leakage to adjacent carriers ruins multi-carrier LBT and deteriorates aggregation capacity considerably. To solve this power leakage problem, we propose a hybrid design of the two LBT types of the specification to have the advantages of both, which is realized by carrier grouping, and develop an algorithm that determines division of carriers into multiple groups with a guard band in between to avoid power leakage among groups and selects the primary carrier of each group so as to maximize LAA’s carrier aggregation capacity. Through extensive simulation, we demonstrate that the proposed algorithm enhances system throughput considerably over conventional mechanisms while coexisting fairly with Wi-Fi systems. We also investigate the impact of the depth of group splitting and transmit power on performance.
机译:许可辅助访问(LAA)是3GPP LTE的一项新功能,该功能利用非许可频谱作为提供附加带宽的一种手段。为了与其他现有系统(例如Wi-Fi)公平共存,LAA在传输之前运行了先听后听(LBT)程序,该程序还旨在支持多载波操作。然而,向相邻载波的固有功率泄漏破坏了多载波LBT,并大大降低了聚合容量。为了解决此漏电问题,我们提出了规范的两种LBT类型的混合设计,以兼具两者的优点,这是通过载波分组实现的,并开发了一种算法,该算法可确定将载波划分为多个具有保护频带的组为了避免LAA之间的功率泄漏,选择每个组的主载波,以最大化LAA的载波聚合能力。通过广泛的仿真,我们证明了所提出的算法在与Wi-Fi系统共存的同时,比传统机制大大提高了系统吞吐量。我们还研究了分组拆分和传输功率深度对性能的影响。

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