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首页> 外文期刊>電子情報通信学会技術研究報告. 無線通信システム. Radio Communication Systems >Proposal of Channel Estimation Method for Uplink OFDMA System under Time-varying Fading Environments
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Proposal of Channel Estimation Method for Uplink OFDMA System under Time-varying Fading Environments

机译:时变衰落环境下上行OFDMA系统信道估计方法的建议

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摘要

Orthogonal Frequency Division Multiple Access (OFDMA) is considered as one of promising wireless access techniques which can accommodate multiple users flexibly and efficiently. In the uplink OFDMA system, it is required to estimate all users' channel frequency responses (CFRs) simultaneously which are used in the equalization for the data information at the base station (BS). To realize this requirement, the Discrete Fourier Transform interpolation-based channel estimation (DFTI-CE) method was proposed in which all users transmit one scattered pilot symbol to the BS at the same time. The DFTI-CE method can achieve higher estimation accuracy for all users' CFRs only when the number of FFT points is equal to the number of data subcarriers which corresponds to the Nyquist rate. However the CFR estimation accuracy would be degraded in the actual OFDM system at the non-Nyquist rate in which null subcarriers (zero padding) are added at both ends of OFDM data subcarrier to reject the aliasing occurring at the output of digital to analogue (D/A) converter. To solve this problem, this paper proposes a time-domain channel estimation (TD-CE) method which can achieve higher estimation accuracy even at the non-Nyquist rate. This paper presents various simulation results for the uplink OFDMA system in the time-varying fading channels to demonstrate the effectiveness of proposed estimation method.
机译:正交频分多址(OFDMA)被认为是一种有前途的无线接入技术,可以灵活,高效地容纳多个用户。在上行OFDMA系统中,需要同时估计所有用户的信道频率响应(CFR),这些信道频率响应在基站(BS)的数据信息均衡中使用。为了实现这一要求,提出了基于离散傅里叶变换插值的信道估计(DFTI-CE)方法,其中所有用户同时向BS发送一个分散的导频符号。仅当FFT点的数量等于对应于奈奎斯特速率的数据子载波的数量时,DFTI-CE方法才能为所有用户的CFR实现更高的估计精度。但是,在非奈奎斯特速率下,在实际的OFDM系统中,CFR估计精度会降低,因为在非奈奎斯特速率下,在OFDM数据副载波的两端添加了空副载波(零填充),以拒绝在数模转换(D / A)转换器。为了解决这个问题,本文提出了一种时域信道估计(TD-CE)方法,即使在非奈奎斯特速率下也可以实现更高的估计精度。本文给出了时变衰落信道中上行OFDMA系统的各种仿真结果,以证明所提出的估计方法的有效性。

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