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Blockage-Aware Power Allocation and Relay Selection in Millimeter-Wave Small Cell Network

机译:毫米波小型蜂窝网络中的阻塞感知功率分配和中继选择

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Millimeter wave (mm-wave) communication technology promises to provide higher data rates as the spectrum is highly under-utilized and more amount of spectrum can be allocated. However, mm-wave cannot travel longer distances and it is sensitive to blockages. The former issue can be dealt with via the small cell technology. Small cell technology can increase the spectral efficiency of the system if the resources are efficiently utilized. The transmission distance between the mobile user and the small cell access point is reduced and it makes an ideal candidate for the use of mm-wave. However, the latter issue of blockages still needs to be handled in order to exploit the full benefits of mm-wave in small cell network. In this paper, a blockage-aware allocation of resources for a mm-wave small cell network is investigated. Our objective is to maximize the downlink sum-rate of all users such that the quality of service (QoS) and power constraints are satisfied. The formulated problem takes into consideration the presence of blockages and the best link (both LOS and relay, only LOS, only relay) possible. We propose a blockage-aware relay selection and power allocation algorithm (BARSPAA) for mm-wave in small cells. The BARSPAA algorithm is compared with exhaustive and bounded exhaustive search algorithms. Numerical results show that the proposed BARSPAA achieves a significantly close performance while the algorithm complexity is much reduced.
机译:毫米波(mm-wave)通信技术有望提供更高的数据速率,因为频谱利用率不高,可以分配更多频谱。但是,毫米波不能传播更长的距离,并且对阻塞很敏感。前一个问题可以通过小型蜂窝技术来解决。如果资源得到有效利用,小小区技术可以提高系统的频谱效率。减少了移动用户和小型小区接入点之间的传输距离,这使其成为使用毫米波的理想选择。但是,为了充分利用毫米波在小型蜂窝网络中的全部优势,仍然需要处理后一个阻塞问题。在本文中,研究了毫米波小型蜂窝网络的阻塞感知资源分配。我们的目标是使所有用户的下行链路总速率最大化,从而满足服务质量(QoS)和功率限制。提出的问题考虑了可能存在的阻塞和最佳链接(LOS和中继,仅LOS,仅中继)。我们提出了一种用于小小区毫米波的可感知阻塞的中继选择和功率分配算法(BARSPAA)。将BARSPAA算法与穷举和有界穷举搜索算法进行了比较。数值结果表明,所提出的BARSPAA实现了显着的性能,同时大大降低了算法的复杂度。

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