Secondary access based on sensing and primary ARQ feedback in spectrum sharing systems

Doha Hamza, S. Aïssa
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引用次数: 3

Abstract

In the context of primary/secondary spectrum sharing, we propose a randomized secondary access strategy with access probabilities that are a function of both the primary automatic repeat request (ARQ) feedback and the spectrum sensing outcome. The primary terminal operates in a time slotted fashion and is active only when it has a packet to send. The primary receiver can send a positive acknowledgment (ACK) when the received packet is decoded correctly. Lack of ARQ feedback is interpreted as erroneous reception or inactivity. We call this the explicit ACK scheme. The primary receiver may also send a negative acknowledgment (NACK) when the packet is received in error. Lack of ARQ feedback is interpreted as an ACK or no-transmission. This is called the explicit NACK scheme. Under both schemes, when the primary feedback is interpreted as a NACK, the secondary user assumes that there will be retransmission in the next slot and accesses the channel with a certain probability. When the primary feedback is interpreted as an ACK, the secondary user accesses the channel with either one of two probabilities based on the sensing outcome. Under these settings, we find the three optimal access probabilities via maximizing the secondary throughput given a constraint on the primary throughput. We compare the performance of the explicit ACK and explicit NACK schemes and contrast them with schemes based on either sensing or primary ARQ feedback only.
频谱共享系统中基于传感和主ARQ反馈的二次接入
在主次频谱共享的背景下,我们提出了一种随机的二次接入策略,其接入概率是主次自动重复请求(ARQ)反馈和频谱感知结果的函数。主终端以时隙方式运行,只有当它有数据包要发送时才活动。当接收到的数据包被正确解码时,主接收方可以发送一个积极的确认(ACK)。缺乏ARQ反馈被解释为错误接收或不活动。我们称之为显式ACK方案。当接收到错误的数据包时,主接收方也可以发送一个否定确认(NACK)。缺乏ARQ反馈被解释为ACK或不传输。这被称为显式NACK方案。在这两种方案中,当主反馈被解释为NACK时,从用户假设下一个时隙会有重传,并以一定的概率进入信道。当主反馈被解释为ACK时,辅助用户根据感知结果以两种概率中的一种访问通道。在这些设置下,我们通过在给定主吞吐量约束的情况下最大化辅助吞吐量来找到三个最优访问概率。我们比较了显式ACK和显式NACK方案的性能,并将它们与仅基于感知或主ARQ反馈的方案进行了对比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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