A novel time interpolation channel estimation for IEEE802.11ac system

Yajie Chai, F. Hu, Libiao Jin
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引用次数: 4

Abstract

IEEE802.11ac is a 5GHz based very high throughput (VHT) wireless local area network (WLAN) standard with superior performance at channel capacity and transmission rate due to accurate channel estimation. Traditionally, the channel state information (CSI) of data field is obtained via training sequence in time domain such as VHI-LTF, which performs weakly in non-flat and slow fading channel. This paper proposed a novel time domain interpolation channel estimation algorithm to improve the estimation performance in non-flat and slow fading channel. Linear interpolation in time domain is taken between VHT-LTF symbols in current and the next frames signal, which can overcome the estimation error for channel fading variation. Simulation results show that the proposed scheme has better performance than conventional method considering estimation accuracy. 4 dB SNR improvement at 10-2 BER performance compared to the conventional method is shown in the SISO system with the constellation mode of 256QAM. In addition, the influence of different modulation orders and antenna configurations are also studied so as to compare the accuracy of channel estimation with the modified method.
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IEEE802.11ac系统中一种新的时间插值信道估计方法
IEEE802.11ac是一种基于5GHz的非常高吞吐量(VHT)无线局域网(WLAN)标准,由于准确的信道估计,在信道容量和传输速率方面具有卓越的性能。传统的数据场信道状态信息(CSI)是通过VHI-LTF等时域训练序列获得的,在非平坦和慢衰落信道中表现较弱。为了提高非平坦慢衰落信道的估计性能,提出了一种新的时域插值信道估计算法。在当前VHT-LTF符号与下一帧信号之间进行时域线性插值,克服了信道衰落变化的估计误差。仿真结果表明,在考虑估计精度的情况下,该方案比传统方法具有更好的性能。在星座模式为256QAM的SISO系统中,与传统方法相比,在10-2误码率下的信噪比提高了4 dB。此外,还研究了不同调制阶数和天线配置对信道估计的影响,比较了改进方法与信道估计的精度。
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