正交频分复用
啁啾声
计算机科学
算法
单天线干扰消除
多路复用
码分多址
干扰(通信)
快速傅里叶变换
电子工程
最小均方误差
计算复杂性理论
频道(广播)
数学
解码方法
电信
工程类
物理
统计
估计员
激光器
光学
作者
Julio Manco,Marwa Chafii,Gerhard Fettweis
标识
DOI:10.1109/wcncw.2019.8902857
摘要
This paper proposes a low-complexity iterative receiver for the recently proposed Orthogonal Chirp Division Multiplexing (OCDM) modulation scheme, where we consider a system under frequency-selective channels and constrained to channel state information availability only at the receiver. It has been shown that under these assumptions, OCDM becomes an optimal waveform in terms of performance, i.e., frame error rate (FER), when employing a receiver capable of achieving perfect feedback equalizer (PFE) performance. Thus, this work targets proposing such a receiver for OCDM with low-complexity. Our approach is based on the well accepted minimum mean squared error with parallel interference cancellation (MMSE-PIC), where we derive an approximated equalizer whose complexity is reduced to two fast Fourier transforms (FFTs) per iteration. The FER results reveal that i) the proposed low-complexity receiver performs as good as the original MMSE-PIC, ii) OCDM performs very closely to PFE, and iii) OCDM has approximately 2 dB improvement over OFDM.
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