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Proposal of channel estimation method for wireless two-way relay system of using SFBC MIMO-OFDM technique

机译:利用SFBC MIMO-OFDM技术的无线双向中继系统的信道估计方法的建议

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摘要

In a two-way relay communication system, two user terminals (UTs) can communicate and exchange their information data through a relay station by using two timeslots. To realize the two-way relay communication system, each UT is required to estimate channel frequency responses (CFRs) both for up and down links in two timeslots efficiently which be employed in the demodulation of the other user's information data with frequency domain equalization. To satisfy this requirement, this paper proposes a novel CFR estimation method for the wireless two-way relay communication system of using SFBC MIMO-OFDM technique. The salient feature of proposed CFR estimation method is to employ the maximum likelihood estimation method for the proposed scattered pilot subcarriers assignment which can achieve higher CFR estimation accuracy even in higher time-varying fading channel and when the transmission OFDM signal is sampled by the non-Nyquist rate. In the proposed system, the SFBC technique is also employed for the data subcarriers both for the pilot symbols including data subcarriers and data symbols consisting of all data subcarriers in the frequency axis to improve the bit error rate (BER) performance in the two-way relay system. From the computer simulation results, this paper demonstrates the effectiveness of proposed two-way relay communication system of using SFBC MIMO-OFDM technique. To demonstrate the effectiveness of proposed two-way relay communication system of using SFBC MIMO-OFDM technique, this paper conducts various computer simulations as comparing with the conventional methods in higher time-varying fading channel. From the computer simulation results, this paper confirms that the proposed method even at the non-Nyquist rate can achieve higher channel estimation accuracy evaluated by the normalized mean square error (NMSE) and better BER performances by 5 and 22 times, respectively as comparing with the conventional methods when the normalized Doppler frequency () is and the carrier to noise power ratio (C/N) is 25 dB.
机译:在双向中继通信系统中,两个用户终端(UT)可以使用两个时隙通过中继站进行通信和交换其信息数据。为了实现双向中继通信系统,要求每个UT有效地估计两个时隙中的上行链路和下行链路的信道频率响应(CFR),该信道频率响应被用于在具有频域均衡的另一用户信息数据的解调中。为了满足这一要求,本文提出了一种新的基于SFBC MIMO-OFDM技术的无线双向中继通信系统的CFR估计方法。提出的CFR估计方法的显着特征是对提议的分散导频子载波分配采用最大似然估计方法,即使在更高的时变衰落信道中以及当非OFDM信号被采样时,也可以实现更高的CFR估计精度。奈奎斯特速率。在提出的系统中,SFBC技术还用于数据子载波,用于包括数据子载波的导频符号和频率轴上由所有数据子载波组成的数据符号,以提高双向的误码率(BER)性能中继系统。从计算机仿真结果来看,本文证明了所提出的使用SFBC MIMO-OFDM技术的双向中继通信系统的有效性。为了证明所提出的使用SFBC MIMO-OFDM技术的双向中继通信系统的有效性,在更高的时变衰落信道中,与常规方法相比,本文进行了各种计算机仿真。从计算机仿真结果来看,本文证实,即使与非奈奎斯特速率相比,该方法也可以实现更高的信道估计精度(与归一化均方误差(NMSE)相比),并且与相比,BER性能分别提高了5倍和22倍。当归一化多普勒频率为且载波噪声功率比(C / N)为25 dB时的常规方法。

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