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After an aerial object enters the water, physical changes to sounds in the water caused by the accompanying bubbles are quite complex. As a result, traditional signal analyzing methods cannot identify the real physical object. In view of this situation, a novel method for analyzing the sounds caused by an aerial object’s entry into water was proposed. This method analyzes the vibrational mode of the bubbles by using empitical mode decomposition. Experimental results showed that this method can efficiently remove noise and extract the broadband pulse signal and low-frequency fluctuating signal, producing an accurate resolution of entry time and frequency. This shows the improved performance of the proposed method.  相似文献   
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提出了声矢量信号互双谱估计算法.利用该算法和其它的二阶、高阶谱估计算法,提取了实测数据的声压和声矢量信号组合特征,并用不同组合特征构造了径向基函数神经网络的输入向量集,对矢量水听器实测的舰船目标进行了分类识别.结果表明,声矢量信号组合特征比声压信号组合特征具有更强的类别可分性,提高了水声目标的识别率.  相似文献   
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