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Pilot-Based Adaptive Channel Estimation for Underwater Spatial Modulation Technologies

机译:基于飞行员的水下空间调制技术自适应信道估计

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Spatial Modulation Technologies (SMTs) are schemes that reduce inter-carrier interference (ICI), inter-channel interference, inter-antenna synchronization (IAS), and system complexity for multiple-input multiple-output (MIMO) communication systems. Moreover, high spectral and energy efficiency have rendered SMTs attractive to underwater acoustic (UWA) MIMO communication systems. Consequently, this paper focuses on SMTs such as spatial modulation (SM), generalized spatial modulation (GSM), and fully generalized spatial modulation (FGSM) in which one constant number and one multiple number of antennas are active to transmit data symbols in any time interval for underwater acoustic communication (UWAC). In SMTs, the receiver requires perfect channel state information (P-CSI) for accurate data detection. However, it is impractical that the perfect channel knowledge is available at the receiver. Therefore, channel estimation is of critical importance to obtain the CSI. This paper proposes the pilot-based recursive least-square (RLS) adaptive channel estimation method over the underwater time-varying MIMO channel. Furthermore, maximum likelihood (ML) decoder is used to detect the transmitted data and antennas indices from the received signal and the estimated UWA-MIMO channel. The numerical computation of mean square error (MSE) and bit error rate (BER) performance are computed for different SMTs like SM, GSM and FSGM using Monte Carlo iterations. Simulation results demonstrate that the RLS channel estimation method achieves the nearly same BER performance as P-CSI.
机译:空间调制技术(SMT)是为多输入多输出(MIMO)通信系统降低载波间干扰(ICI),信道间干扰,天线间同步(IAS)和系统复杂性的方案。此外,高频谱和能量效率已使SMT吸引了水下声学(UWA)MIMO通信系统。因此,本文重点研究SMT,例如空间调制(SM),广义空间调制(GSM)和完全广义空间调制(FGSM),其中一个常数和一个或多个天线在任何时间都有效地发送数据符号水下声通信(UWAC)的间隔。在SMT中,接收器需要完美的信道状态信息(P-CSI)才能进行准确的数据检测。然而,在接收机处获得完美的信道知识是不切实际的。因此,信道估计对于获得CSI至关重要。提出了水下时变MIMO信道上基于导频的递归最小二乘(RLS)自适应信道估计方法。此外,最大似然(ML)解码器用于从接收信号和估计的UWA-MIMO信道中检测发送的数据和天线索引。使用蒙特卡洛迭代,针对不同的SMT(例如SM,GSM和FSGM)计算均方误差(MSE)和误码率(BER)性能的数值计算。仿真结果表明,RLS信道估计方法可获得与P-CSI几乎相同的BER性能。

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