基于MUSIC的载波聚合正交频分复用通信多载波频偏估计

Yu Ting Sun, Jia-Chin Lin
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引用次数: 1

摘要

正交频分复用(OFDM)通信是一种很有前途的第四代移动通信技术。同时,载波聚合技术成为提高传输速率的关键技术。OFDM系统的可实现数据速率通常受频谱效率和可用带宽的限制;前者很大程度上取决于所采用的调制技术,后者很大程度上取决于频谱策略。载波聚合方法是一种可行的、灵活的带宽利用技术,通过聚合多个连续或不连续的载波来提高传输吞吐量。与传统的OFDM系统不同,载波聚合OFDM (CA-OFDM)通信必须考虑多载波频率偏移(cfo)。几个序文被构造为单个组件载体的导航仪。在了解前导特性的基础上,提出并研究了基于多信号分类(MUSIC)或根MUSIC算法的多cfo估计方法。仿真结果表明,在时变多径衰落信道中,该方法在检测错误率和均方误差(MSE)方面都取得了较好的性能。借助本文提出的精确的多cfo估计和补偿,利用更大规模的快速傅立叶变换(FFT)解调,可以有效地将传统上在介质访问控制(MAC)层由几个并行的普通OFDM内接收机完成的载波聚合转换为物理层(PHY)复用技术。这种转换可以减少独立构建多个并行普通内部接收器所需的实现开销。这种转换还可以节省MAC层前缀的报头长度,以便进行载波聚合。
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Multi-carrier frequency-offset estimation based on MUSIC for carrier-aggregation orthogonal frequency-division multiplexing communications
Orthogonal frequency-division multiplexing (OFDM) communication is a promising technique for use in fourth-generation (4G) mobile communications. Meanwhile, the carrier aggregation technique becomes crucial for raising the transmission rate. The achievable data rate of an OFDM system is generally limited by spectral efficiency and the available bandwidth; the former strongly depends on the adopted modulation techniques, and the latter strongly depends on the spectrum policy. A carrier aggregation method is a feasible and flexible bandwidth utilization technique that facilitates upgrades to transmission throughput by aggregating several contiguous or non-contiguous carriers. Unlike conventional OFDM systems, multiple carrier frequency offsets (CFOs) must be taken into consideration for carrier-aggregated OFDM (CA-OFDM) communications. Several preambles are constructed as pilots for individual component carriers. With knowledge of the preamble property, novel estimation methods for multiple CFOs are proposed and investigated by taking advantage of either a multiple signal classification (MUSIC) or a root-MUSIC algorithm. Simulation results show that the proposed method can achieve good performance in terms of the error rate of detection and the mean-square error (MSE) over time-varying multipath fading channels. With assistance from the accurate multi-CFO estimation and compensation proposed in this paper, the carrier aggregation, which is conventionally accomplished on the medium access control (MAC) layer with a few parallel, ordinary OFDM inner receivers, can be effectively transformed to be a physical-layer (PHY) multiplexing technique by means of a larger-size fast Fourier transform (FFT) demodulation. This transformation can reduce the implementation overhead needed by independently building several parallel ordinary inner receivers. This transformation can also save the header length prefixed on the MAC layer for conducting carrier aggregations.
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