高清无线电调幅系统基带收发器的设计与实现

Chien-Sheng Chen, N. Chilamkurti, Chen-Ming Tseng
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引用次数: 0

摘要

近年来,频谱资源已成为无线通信系统设计中越来越重要的考虑因素。因此,混合带内信道(HIBOC)广播系统被提出作为在常规调幅频段内传输数字和模拟调幅信号的复合解决方案。该系统已被美国采用为数字无线电广播标准,该规范被命名为高清调幅广播。虽然该标准中的调制方案是在各种数字通信系统中广泛应用的正交频分复用(OFDM),但由于模拟信号和数字信号之间的频谱重叠,接收机结构不能与传统的OFDM接收机设计相同。本文采用高通滤波器来提高符号时序检测的性能。在衰落信道中,必须在消除模拟调幅信号的干扰之前估计信道响应。此外,在基于FPGA的硬件平台上实现系统时,从理论和实际两个方面都考虑了硬件资源的利用率。仿真结果表明,该方案能保持较好的系统性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and implementation of the baseband transceiver for the HD radio AM system
In recent years, the spectrum resource has become a more and more important consideration for the designs of wireless communication system. Therefore, Hybrid In-Band On-Channel (HIBOC) broadcasting system has been proposed as a composite solution to transmit digital and analog amplitude modulation (AM) signals in the conventional AM band. This system has been adopted by US as a digital radio broadcasting standard, and the specification is named as HD Radio AM. Although the modulation scheme in this standard is the Orthogonal Frequency Division Multiplexing (OFDM) which has been widely applied to various digital communication systems, the receiver architecture could not be the same as the conventional OFDM receiver design owing to the overlapping spectrum between the analog and digital signals. In this paper, a high-pass filter is employed to improve the performance of the symbol timing detection. In a fading channel, the channel response must be estimated before canceling the interference of the analog AM signals. Besides, when implementing the system on the FPGA based hardware platform, both the theoretical and the practical aspects have been considered to reach the available hardware resource. Simulation results show that the proposed scheme can keep good system performance.
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