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A novel millimeter-wave channel simulator and applications for 5G wireless communications

机译:一种新颖的毫米波通道模拟器和5G无线通信的应用

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This paper presents details and applications of a novel channel simulation software named NYUSIM, which can be used to generate realistic temporal and spatial channel responses to support realistic physical-and link-layer simulations and design for fifth-generation (5G) cellular communications. NYUSIM is built upon the statistical spatial channel model for broadband millimeter-wave (mmWave) wireless communication systems developed by researchers at New York University (NYU). The simulator is applicable for a wide range of carrier frequencies (500 MHz to 100 GHz), radio frequency (RF) bandwidths (0 to 800 MHz), antenna beamwidths (7° to 360° for azimuth and 7° to 45° for elevation), and operating scenarios (urban microcell, urban macrocell, and rural macrocell), and also incorporates multiple-input multiple-output (MIMO) antenna arrays at the transmitter and receiver. This paper also provides examples to demonstrate how to use NYUSIM for analyzing MIMO channel conditions and spectral efficiencies, which show that NYUSIM is an alternative and more realistic channel model compared to the 3rd Generation Partnership Project (3GPP) and other channel models for mmWave bands.
机译:本文介绍了名为NYUSIM的新颖频道仿真软件的详细信息和应用,可用于生成现实的时间和空间通道响应,以支持第五代(5G)蜂窝通信的逼真的物理和链接层模拟和设计。 Nyusim建立在纽约大学研究人员开发的宽带毫米波(MMWAVE)无线通信系统的统计空间通道模型之上。模拟器适用于各种载波频率(500 MHz至100 GHz),射频(RF)带宽(0至800 MHz),天线波束宽度(7°至360°,方位角为7°至45°,用于高度)和操作场景(城市Microcell,Urban Macrocell和Rural Macrocell),并在发射器和接收器处包含多输入的多输出(MIMO)天线阵列。本文还提供了示例,以演示如何使用Nyusim来分析MIMO信道条件和光谱效率,表明纽约市是与第三代合作伙伴项目(3GPP)和MMWave频段的其他通道模型相比的替代和更现实的频道模型。

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