Receiver Design for Dual-Mode Index Modulation Aided OFDM

Yusuf Acar, S. Çolak
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引用次数: 2

Abstract

Nowadays, variants of Spatial Modulation (SM) are studied by a lot of researchers in order to increase Spectral Efficiency (SE) more. One of the important variants of SM is known as Orthogonal Frequency Division Multiplexing Index Modulation (OFDM-IM). In OFDM-IM, selection of active subcarriers is based on the idea of the selection of active antennas in the SM. Then, to take OFDM-IM a step further in terms of SE, Dual Mode OFDM-IM (DM-OFDM-IM) has been proposed that activates entire subcarriers unlike that of OFDM-IM. However, in all these studies same assumption is made, i.e., channel is perfectly known at the receiver. However, this assumption is not accurate for practical applications. For this reason, the presented simulation results and theoretical analysis without channel estimation cannot represent the real system performance. In this study, a pilot symbol aided channel estimation for DM-OFDM-IM scheme is considered. We investigate the effect on Bit Error Rate (BER) performance of five different interpolation techniques. The simulation results illustrate that, interpolation techniques perform similiar BER performance for low and moderate Signal-to-Noise Ratio (SNR) range. However, at the high SNR values (SNR> 30 dB), Low-Pass and SPLINE interpolation techniques give the highest performance among all considered techniques.
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双模索引调制辅助OFDM接收机设计
为了进一步提高频谱效率,许多研究人员对空间调制(SM)的变体进行了研究。SM的一个重要变体是正交频分复用索引调制(OFDM-IM)。在OFDM-IM中,有源子载波的选择是基于SM中有源天线选择的思想。然后,为了使OFDM-IM在SE方面更进一步,提出了双模式OFDM-IM (DM-OFDM-IM),它与OFDM-IM不同,激活整个子载波。然而,在所有这些研究中都做出了相同的假设,即接收器完全知道信道。然而,这种假设对于实际应用并不准确。因此,没有进行信道估计的仿真结果和理论分析不能反映系统的真实性能。本文研究了一种导频符号辅助的DM-OFDM-IM信道估计方法。研究了五种不同的插值技术对误码率(BER)性能的影响。仿真结果表明,在低信噪比和中等信噪比范围内,插值技术具有相似的误码率性能。然而,在高信噪比值(信噪比> 30 dB)时,低通和样条插值技术在所有考虑的技术中具有最高的性能。
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