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Low-Complexity Implementation of Channel Estimation for ESPAR-OFDM Receiver

机译:ESPAR-OFDM接收器信道估计的低复杂性实现

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Electronically steerable parasitic array radiator (ESPAR) antenna is a novel low-cost technique to gain comparable diversity order to that of using multiple antennas while maintaining one radio frequency (RF) front-end, low power consumption, and simple wiring at the mobile receiver. It has huge potential to realize high energy efficiency for multiple and massive antennas systems. The main drawback of the ESPAR based OFDM system is that the channel estimation (CE) usually should be realized in time-domain with a huge computational complexity (CC) because the received signal to each parasitic element is overlapped each other both in frequency and time domain. This article will propose three ways to reduce the complexity of CE for the ESPAR-OFDM system. The parallel multi-column compressive sensing (CS) algorithm was first introduced to detect all locations of channel impulse response simultaneously using one small segment of sensing matrix. Furthermore, by exploiting the symmetrical properties of Digital Fourier transform (DFT), the size of matrix to decrease the CC of matrix operation. Finally, by selecting a small set of row vectors of sensing matrix at the receiver side, the CC involved in CS algorithm can be reduced. From the analysis and simulated results, the proposed method can obtain more than 90% CC reduction for CE of ESPAR-OFDM receiver can be confirmed.
机译:电子可转向寄生阵列辐射器(ESPAR)天线是一种新的低成本技术,用于获得使用多个天线的可比分集序,同时保持一个射频(RF)前端,低功耗和移动接收器的简单布线。它具有实现多个和大型天线系统的高能量效率具有巨大潜力。基于ESPAR的OFDM系统的主要缺点是,信道估计(CE)通常应该在具有巨大计算复杂度(CC)的时域中实现,因为每个寄生元件的接收信号在频率和时间内彼此重叠领域。本文将提出三种方法来降低ESPAR-OFDM系统的CE复杂性。首先引入并行多柱压缩检测(CS)算法以使用一小段检测信道脉冲响应的所有位置,使用一小段传感矩阵。此外,通过利用数字傅里叶变换(DFT)的对称性,矩阵的大小减小矩阵操作的CC。最后,通过在接收器侧选择一小集感测矩阵的行向量,可以减少CS算法中涉及的CC。从分析和模拟结果来看,所提出的方法可以获得ESPAR-OFDM接收器CE的90%以上CC减少。

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