OFDM波形设计妥协频谱零,旁瓣抑制和距离分辨率

T. Guo, R. Qiu
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引用次数: 32

摘要

在日益恶化的电磁共存环境下,OFDM信号格式在通信和雷达领域的双重应用,本文研究了考虑多个设计目标的发射波形设计问题。频谱零化是窄带系统友好共存的一种典型方法。然而,通过关闭干扰子载波产生的非连续正交频分复用(NC-OFDM)波形不能达到令人满意的效果。本文采用一种基于凸优化的波形设计框架,在保持低波形自相关旁瓣和良好距离分辨率的同时实现深度谱零化。由于波形的双重用途,要传输的数据块要么是未知的,要么是从已知数据集中选择的。给出了给定传输数据块的最优子载波权重。此外,对未知数据块的波形设计进行了讨论和检验。
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OFDM waveform design compromising spectral nulling, side-lobe suppression and range resolution
Motivated by dual use of OFDM signal format for communications and radar in ever-worsening Electromagnetic (EM) coexistence environments, this paper deals with transmit waveform design problem considering multiple design objectives. Spectral nulling is a typical way for friendly coexistence with narrow band systems. However, a Non-Contiguous Orthogonal Frequency-Division Multiplexing (NC-OFDM) waveform generated by turning off the interfering sub-carriers does not lead to satisfactory results. In this paper a convex optimization based waveform design framework is used to achieve deep spectral nulling while retaining low waveform autocorrelation side lobes and good range resolution. Because of dual use of the waveform, the data blocks to transmit are either unknown or chosen from a known dataset. Optimal sub-carrier weights are obtained for given transmission data blocks. In addition, waveform design for unknown data blocks are discussed and examined.
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