Multi-Function Radar Work Mode Recognition Based on Encoder-Decoder Model

Hongyu Chen, Kangan Feng, Yukai Kong, Lidong Zhang, Xianxiang Yu, Wei Yi
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引用次数: 2

Abstract

The multi-function radar (MFR) is capable of transmitting complex signals and achieving beam agility according to different tasks, thus leading to many challenges in the work mode recognition field. This paper, therefore, develops an Encoder-Decoder model based on the gated recurrent units (GRU) network to achieve work mode recognition. It involves the use of the Encoder structure to extract the temporal features and the work mode transition regulations of the intercepted pulse group sequence while leveraging the Decoder structure to decode the features and transition regulations as a part of the input for the next decoding process. Additionally, the label substitution (LS) method is utilized for improving the ability of the Decoder structure to recognize work mode under non-ideal situations. Simulation results show that the proposed method is less sensitive in the presence of non-ideal situations and shares better performance than existing work mode recognition methods.
基于编码器-解码器模型的多功能雷达工作模式识别
多功能雷达(MFR)能够根据不同的任务传输复杂的信号并实现波束的敏捷性,这给工作模式识别领域带来了许多挑战。因此,本文开发了一种基于门控循环单元(GRU)网络的编码器-解码器模型来实现工作模式识别。它涉及使用编码器结构提取截获脉冲组序列的时间特征和工作模式转换规则,同时利用解码器结构对特征和转换规则进行解码,作为下一个解码过程的输入的一部分。此外,利用标签替换(LS)方法提高了解码器结构在非理想情况下识别工作模式的能力。仿真结果表明,与现有的工作模式识别方法相比,该方法在非理想情况下具有较低的敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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