认知无线网络中使用时间调度和用户位置的共存解决方案

Kyu-Ho Lee, Jae-Kark Choi, S. Yoo
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引用次数: 0

摘要

在认知无线网络中,辅助用户基于周期性感知结果机会地访问空信道,以避免对主用户可能产生的干扰。然而,由于在二次发射机的干扰范围内可能存在隐藏的主接收机,局部传感不能保证对主用户的充分保护。为了保护主系统,同时最大限度地利用辅助用户,我们需要为各种网络场景导出精心设计的共存解决方案。在本文中,我们根据上行/下行调度和用户位置,提出了无任何有害干扰的共存条件。根据向二级网络基站提供的信息,我们将共存条件分为四种不同的场景。对于每种情况,我们都展示了哪些辅助设备可以在哪个时间段访问信道,并且还推导了辅助系统可能的最大吞吐量。计算机仿真结果表明,该方法可以应用于真实的认知无线电系统,以提高CR设备的通信概率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coexistence solution using time schedule and user position in cognitive radio networks
In cognitive radio network, a secondary user opportunistically accesses an empty channel based on periodic sensing results for avoiding possible interference to the primary users. However local sensing does not guarantee the full protection of the primary users because hidden primary receivers may exist within the interference range of the secondary transmitter. To protect primary systems and simultaneously to maximize utilization of the secondary users, we need to derive carefully designed coexistence solutions for various network scenarios. In this paper, we propose coexistence conditions without any harmful interference in accordance with the uplink/downlink schedule and user position. We have classified the coexistence conditions into four different scenario cases depending on the provided information to the secondary network base stations. For each case, we have shown that which secondary devices can access the channel at which time period and the possible maximum throughput of the secondary system is also derived. Computer simulation results demonstrated that the proposed method can be applied to the real cognitive radio system to improve the communication probability of CR devices.
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