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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Novel Expressions and Applications for the Level Crossing Rate of Maximal Ratio Combining in the Presence of Cochannel Interferers
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Novel Expressions and Applications for the Level Crossing Rate of Maximal Ratio Combining in the Presence of Cochannel Interferers

机译:同频干扰源存在下最大比平交率的新型表达及应用

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The level crossing rate (LCR) is an important second-order statistical quantity that characterizes the rate of occurrence of fading time intervals. In this paper, we investigate the LCR of multiantenna flat-fading channels in the presence of additive white Gaussian noise and cochannel interferers with unequal received powers and Doppler shifts. We first present a unified approach to derive the exact LCR of the signal-to-interference-noise ratio at a receiver, where maximum ratio combining is deployed over spatially correlated or uncorrelated systems. Through the exact LCR derivation, we identify an accurate approach to obtain a simplified approximate LCR expression in the spatially uncorrelated system case. Benefits of the LCR expressions derived in the paper are demonstrated in two important applications: 1) the packet error rate is evaluated through the finite-state Markov channel model; and 2) the optimum packet length to maximize the throughput of the system with the stop-and-wait automatic repeat request protocol is derived. The analytical results are validated by simulations.
机译:电平交叉速率(LCR)是重要的二阶统计量,它表征衰落时间间隔的发生率。在本文中,我们研究了在存在加性高斯白噪声和具有不相等接收功率和多普勒频移的同信道干扰源的情况下多天线平坦衰落信道的LCR。我们首先提出一种统一的方法,以在接收器处得出信噪比的精确LCR,其中在空间相关或不相关的系统上部署最大比率组合。通过精确的LCR推导,我们确定了一种在空间不相关的系统情况下获得简化的近似LCR表达式的准确方法。本文得出的LCR表达式的优点在两个重要的应用中得到了证明:1)通过有限状态马尔可夫信道模型评估分组错误率; 2)通过停止和等待自动重发请求协议,推导出最佳分组长度,以最大化系统的吞吐量。分析结果通过仿真验证。

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