Wojtuń Jarosław, Ziółkowski Cezary, Kelner Jan M
Institute of Communications Systems, Faculty of Electronics, Military University of Technology, 00-908 Warsaw, Poland.
Sensors (Basel). 2023 Nov 7;23(22):9022. doi: 10.3390/s23229022.
The occurrence of cross-beam interference in the received signal is one of the main problems that limit the possibilities of massive multiple-input-multiple-output technology (massive-MIMO) in fifth-generation (5G) systems. Thus, the evaluation of the level of this interference is one of the most important procedures in the spatial planning of currently wireless networks. We propose a novel modification of simple antenna pattern models, which is based only on changing the directivity of real antenna system patterns. This approach is independent of the antenna system's type, structure, and analytical description. Based on the developed modification, the original methodology for assessing the signal-to-interference ratio (SIR) from adjacent beams of a common antenna system is presented. The change in the radiation direction and the accompanying change in the complex shape and parameters of the real antenna beam pattern is one of the problems that significantly hinders the evaluation of the analyzed interference. Hence, in the presented methodology, we propose using our modification. In this case, the modification is reduced to a proportional change in the directivity concerning the real antenna system, which results from a change in the beam direction. The simulation studies used a multi-ellipsoidal propagation model and a real massive MIMO antenna pattern description from 3GPP. For the SIR error analysis, the 3GPP pattern is used as a reference. The simulation results show that modifying simple antenna pattern models allows us to obtain an SIR error of no more than 3 dB and 0.1 dB under line-of-sight (LOS) and non-LOS conditions, respectively.
接收信号中出现的横梁干扰是限制第五代(5G)系统中大规模多输入多输出技术(大规模MIMO)应用可能性的主要问题之一。因此,评估这种干扰的程度是当前无线网络空间规划中最重要的程序之一。我们提出了一种对简单天线方向图模型的新颖改进,该改进仅基于改变实际天线系统方向图的方向性。这种方法与天线系统的类型、结构和解析描述无关。基于所开发的改进,提出了用于评估来自普通天线系统相邻波束的信号干扰比(SIR)的原始方法。辐射方向的变化以及实际天线波束方向图复杂形状和参数的随之变化是严重阻碍对所分析干扰进行评估的问题之一。因此,在所提出的方法中,我们建议使用我们的改进。在这种情况下,改进简化为与实际天线系统方向性成比例的变化,这是由波束方向的变化引起的。仿真研究使用了多椭球传播模型和来自3GPP的实际大规模MIMO天线方向图描述。对于SIR误差分析,将3GPP方向图用作参考。仿真结果表明,修改简单天线方向图模型分别使我们在视距(LOS)和非视距条件下获得的SIR误差不超过3 dB和0.1 dB。