Enhanced airport surface multi-carrier communication systems: Filterbank advantages over AeroMACS OFDM

Hosseinali Jamal, D. Matolak
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引用次数: 3

Abstract

Civil aviation is continuing to grow, and along with growth in numbers of flights and passengers comes growth in communications. In particular airport surface environments are one of the areas in which rapid development of communication systems is taking place. Several years ago the Federal Aviation Administration, EUROCONTROL, and the International Civil Aviation Organization proposed a communication system based on WiMAX technology for airport surface areas: AeroMACS. The AeroMACS communication system is designed for civil aircraft but could also be applied to military airports as well. In this paper we investigate a new communication system for the unique airport surface environment. Our system has physical layer specifications similar to the orthogonal frequency division multiplexing (OFDM) approach used in AeroMACS, but is instead based on the filterbank multicarrier (FBMC) technique. Via computer simulations, using channel models based on measured data collected by NASA Glenn Research Center, we illustrate the FBMC advantages over AeroMACS. Our results show that using zero-forcing or least-square (LS) channel estimation techniques, FBMC and AeroMACS have similar performance, but FBMC affords a significant gain in throughput. Although FBMC has slightly worse bit error ratio (BER) performance than AeroMACS at high signal-to-noise ratios (SNRs) the throughput advantage of the proposed FBMC design is approximately 23 percent.
增强的机场地面多载波通信系统:滤波器组优于AeroMACS OFDM
民航正在持续增长,随着航班和乘客数量的增长,通信也在增长。特别是机场地面环境是通信系统正在迅速发展的领域之一。几年前,联邦航空管理局、欧洲航空控制组织和国际民用航空组织提出了一种基于WiMAX技术的机场表面通信系统:AeroMACS。AeroMACS通信系统是为民用飞机设计的,但也可以应用于军用机场。本文针对独特的机场地面环境,研究了一种新的通信系统。我们的系统具有类似于AeroMACS中使用的正交频分复用(OFDM)方法的物理层规范,但它是基于滤波器组多载波(FBMC)技术。通过计算机模拟,利用基于NASA Glenn研究中心收集的测量数据的通道模型,我们说明了FBMC相对于AeroMACS的优势。我们的研究结果表明,使用零强迫或最小二乘(LS)信道估计技术,FBMC和AeroMACS具有相似的性能,但FBMC在吞吐量方面提供了显着的增益。尽管FBMC在高信噪比(SNRs)下的误码率(BER)性能略低于AeroMACS,但FBMC设计的吞吐量优势约为23%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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