面向5G的数据库驱动频谱共享主专用区的知识更新

S. Yamashita, Koji Yamamoto, T. Nishio, M. Morikura
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引用次数: 0

摘要

为了实现高速、大容量的5G移动网络,从用户可能会投机性地使用分配给主用户的许可频谱。本文提出了一种框架来处理由于二次使用分配给PU的频谱而导致PU遭受有害干扰的情况。这里,假定PU是一个雷达系统。在我们提出的框架中,PU通知数据库它正在遭受有害干扰。收到此信息后,数据库更新主独占区域(PER),在PER区域中,SUs被禁止使用许可频谱。更新后的PER依赖于存储在数据库中的su的当前知识。我们假设一个以主接收器为中心的圆形PER,并使用随机几何推导出其最佳半径。对于存储在数据库中的每种SU知识,我们评估PU遭受有害干扰的目标概率的最佳PER半径。结果表明,越详细地了解SU密度和传输功率,更新后的PER半径就越小。因此,可以实现更有效的许可频谱空间复用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Knowledge-based update of primary exclusive region for database-driven spectrum sharing towards 5G
To realize high-speed and high-capacity 5G mobile networks, secondary users (SUs) may opportunistically use licensed spectrum allocated to primary users (PUs). This paper presents a framework to deal with the situation that occurs when a PU suffers harmful interference caused by the secondary use of the spectrum allocated to it. Here, the PU is assumed to be a radar system. In our proposed framework, the PU informs the database that it is suffering harmful interference. Receiving this information, the database updates the primary exclusive region (PER), where SUs are prohibited from using the licensed spectrum. The updated PER depends on the current knowledge of the SUs, which is stored in the database. We assume a circular PER centered at the primary receiver (PR) and derive its optimal radius using stochastic geometry. For each type of SU knowledge stored in the database, we evaluate the optimal PER radius for a target probability at which the PU suffers harmful interference. The results show that more detailed knowledge of the SU density and transmission powers leads to a smaller updated PER radius. Hence, a more efficient spatial reuse of the licensed spectrum is achieved.
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