Random access preamble format for systems with many antennas

H. Sahlin, S. Parkvall, M. Frenne, P. Nauclér
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引用次数: 5

Abstract

The computational complexity of FFT (Fast Fourier Transform) processing in an OFDM (Orthogonal Frequency Division Multiplex) based receiver is large with a large amount of receiver antennas. In LTE (Long Term Evolution) release 8, FFTs of different size are used for user data and random-access preambles [1] requiring additional FFTs to be implemented for random-access reception. Within the current paper, a 5G random-access preamble format is proposed based on a short sequence of the same length as the length of the OFDM symbols that are used for other uplink physical channels, such as user data, control signaling, and reference signals. The preamble sequence is constructed by repeating the short sequence multiple times. A corresponding preamble detector in which FFTs of the same size as for other uplink channels and signals are used is also described. In this way, the amount of special random-access related processing and hardware support is significantly reduced for multi-antenna systems with frequency-domain beamforming. This preamble detector is also robust against inter-carrier interference from other uplink channels and signals. Furthermore, the proposed preamble detector scheme can be used in 5G scenarios with a high amount of phase noise and frequency errors. For time-domain beamforming, the beamforming weights can be changed during preamble reception such that the number of spatial directions is increased for which preamble detection is done. Simulation results are used to compare preamble formats for different lengths of the sequences.
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多天线系统的随机存取前导格式
在基于正交频分复用(OFDM)的接收机中,快速傅里叶变换(FFT)处理的计算量很大,且接收天线数量多。在LTE(长期演进)版本8中,不同大小的fft用于用户数据和随机接入前导[1],需要额外的fft来实现随机接入接收。在本文中,提出了一种5G随机接入序言格式,该格式基于与用于其他上行物理信道(如用户数据、控制信令和参考信号)的OFDM符号长度相同的短序列。通过多次重复短序列来构造前导序列。还描述了一种相应的前置检测器,其中使用与其他上行信道和信号相同大小的fft。这样,对于频域波束形成的多天线系统,与随机访问相关的特殊处理和硬件支持的数量显著减少。该前导检测器对来自其他上行信道和信号的载波间干扰也具有鲁棒性。此外,所提出的前导检测器方案可用于具有大量相位噪声和频率误差的5G场景。对于时域波束形成,可以在前导接收期间改变波束形成权重,从而增加对前导进行检测的空间方向的数量。仿真结果用于比较不同长度序列的前导格式。
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