论文标题
一阶Marcum $ Q $ function的半线性近似用于预测天线系统
A Semi-Linear Approximation of the First-Order Marcum $Q$-function with Application to Predictor Antenna Systems
论文作者
论文摘要
一阶Marcum $ Q $ unction在各种问题配方中都观察到。但是,这不是一个易于处理的功能。因此,在本文中,我们首先提出了Marcum $ Q $功能的半线性近似。我们提出的近似是有用的,因为它简化了,例如,包括Marcum $ Q $功能以及不同操作(例如参数优化),包括各种积分计算。然后,作为感兴趣的一个例子,我们将提出的近似方法应用于预测变量天线(PA)系统的性能分析。在这里,PA系统被称为一个系统,在车顶上有两组天线。然后,位于车辆前部的PA可用于改善与PA后面对齐的接收天线的数据传输的通道状态估计。考虑到由于迁移率而引起的空间不匹配,我们得出了瞬时和平均吞吐量以及吞吐量优化的速率分配的封闭形式表达式。如我们所示,我们提出的近似方案使我们能够以高准确性分析PA系统。此外,我们的结果表明,比率适应可以改善具有不同空间不匹配水平的PA系统的性能。
First-order Marcum $Q$-function is observed in various problem formulations. However, it is not an easy-to-handle function. For this reason, in this paper, we first present a semi-linear approximation of the Marcum $Q$-function. Our proposed approximation is useful because it simplifies, e.g., various integral calculations including Marcum $Q$-function as well as different operations such as parameter optimization. Then, as an example of interest, we apply our proposed approximation approach to the performance analysis of predictor antenna (PA) systems. Here, the PA system is referred to as a system with two sets of antennas on the roof of a vehicle. Then, the PA positioned in the front of the vehicle can be used to improve the channel state estimation for data transmission of the receive antenna that is aligned behind the PA. Considering spatial mismatch due to the mobility, we derive closed-form expressions for the instantaneous and average throughput as well as the throughput-optimized rate allocation. As we show, our proposed approximation scheme enables us to analyze PA systems with high accuracy. Moreover, our results show that rate adaptation can improve the performance of PA systems with different levels of spatial mismatch.