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Adaptive Transmission Schemes for MISO Spectrum Sharing Systems: Tradeoffs and Performance Analysis

机译:MISO频谱共享系统的自适应传输方案:权衡和性能分析

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In this paper, we propose a number of adaptive transmission techniques in order to improve the performance of the secondary link in a spectrum sharing system. We first introduce the concept of minimum-selection maximum ratio transmission (MS-MRT) as an adaptive variation of the existing MRT (MRT) technique. While in MRT all available antennas are used for transmission, MS-MRT uses the minimum subset of antennas verifying both the interference constraint (IC) to the primary user and the bit error rate (BER) requirements. Similar to MRT, MS-MRT assumes that perfect channel state information (CSI) is available at the secondary transmitter (ST), which makes this scheme challenging from a practical point of view. To overcome this challenge, we propose another transmission technique based on orthogonal space–time block codes with transmit antenna selection (TAS). This technique uses the full-rate full-diversity Alamouti scheme in order to maximize the secondary's transmission rate. The performance of these techniques is analyzed in terms of the average spectral efficiency (ASE), average number of transmit antennas, average delay, average BER, and outage performance. In order to give the motivation behind these analytical results, the tradeoffs offered by the proposed schemes are summarized and then demonstrated through several numerical examples.
机译:在本文中,我们提出了许多自适应传输技术,以提高频谱共享系统中辅助链路的性能。我们首先介绍最小选择最大比率传输(MS-MRT)的概念,作为现有MRT(MRT)技术的自适应变体。在MRT中,所有可用天线都用于传输,而MS-MRT使用天线的最小子集,以验证对主要用户的干扰约束(IC)和误码率(BER)要求。与MRT相似,MS-MRT假定在辅助发送器(ST)处可获得完美的信道状态信息(CSI),这从实际的角度来看使该方案具有挑战性。为了克服这一挑战,我们提出了另一种基于正交空时分组码和发射天线选择(TAS)的传输技术。该技术使用全速率全分集Alamouti方案,以最大化次级的传输速率。根据平均频谱效率(ASE),平均发射天线数,平均延迟,平均BER和中断性能来分析这些技术的性能。为了给这些分析结果以动力,总结了所提出的方案所提供的权衡,然后通过几个数值示例进行了证明。

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