基于FPGA并行技术的高速实时多通道声纳仿真信号源的设计

Xiaoyan Huang, Xi'an Feng, Tiande Gao
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引用次数: 5

摘要

声纳仿真信号源的主要任务是利用水声信号特性、相对运动特性和水下环境噪声产生实时动态回波信号。声纳仿真信号源应用于半实物仿真系统。因此,实时能力和高速传输是系统设计的主要因素。本文采用嵌入式软实时处理器结合高速硬实时模块,基于FPGA并行技术生成128路仿真信号。单频脉冲信号(CW)、线调频脉冲信号(LFM)、双曲调频脉冲信号(HFM),这三类脉冲信号都是通过上述技术在系统中动态产生的。系统测试结果表明,当工作在192 KHz时,FPGA模块的平均计算时间为9.13867ms,这是产生128通道信号的最高系统采样率。同时,需要小于2.5K的系统闪存空间来保证连续的仿真信号输出。实验结果表明,该系统具有较高的实时性和可靠性。
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The design of high-speed real time multi-channel sonar simulation signal source based on FPGA parallel technology
The mainly task of sonar simulation signal source is to generate real time dynamic echo signal using the underwater acoustic signal properties, the relative motion properties and the underwater environment noise. Sonar simulation signal source is applied in a semi-physical simulation system. So real time ability and high-speed transmission is the main factors in the system design. This paper using the embedded soft real time processor combining high speed hard real time module to generate 128 channel simulation signals based on FPGA parallel technology. Single frequency pulse signal (CW), line frequency modulation pulse signal (LFM), hyperbolic frequency modulation pulse signal (HFM), this three type of pulses signals have dynamic generated through above technology in the system. The system test results show that the average compute time of FPGA module is consumed 9.13867ms when working at 192 KHz, the highest system sampling rate to generate 128 channel signals. Meanwhile, less than 2.5K system flash memory space is needed to ensure continuous simulation signal output. Experimental results show that System has high real time ability and reliability.
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