随着声呐技术的迅速发展,水声通信在海洋科学研究及海洋开发中发挥着非常重要的作用,水声通信换能器是水声通信设备中负责电声转换的重要部件。研究了一款带底座的溢流圆管换能器,通过有限元仿真计算了换能器发送电压响应和方向性等参数...随着声呐技术的迅速发展,水声通信在海洋科学研究及海洋开发中发挥着非常重要的作用,水声通信换能器是水声通信设备中负责电声转换的重要部件。研究了一款带底座的溢流圆管换能器,通过有限元仿真计算了换能器发送电压响应和方向性等参数,优化了换能器中的陶瓷元件和底座的结构尺寸,制作并测量得到一款半空间指向性的水声通信换能器,换能器的工作频段为11~23 k Hz,带内起伏为3 d B,最大发送电压响应为133 d B,-3 d B垂直开角大于180°。展开更多
In this paper,a design of ultraphonic tubulous water communication system based on OFDM is introduced. The system takes PL3106 which is embedded enhanced 8051 microprocessor as the control chip and takes TMS320VC5509 ...In this paper,a design of ultraphonic tubulous water communication system based on OFDM is introduced. The system takes PL3106 which is embedded enhanced 8051 microprocessor as the control chip and takes TMS320VC5509 as the core of OFDM modulation-demodulation.In the paper,the principle of OFDM is introduced briefly.The hardware and software of the system are designed and the experimental results are analysed and concluded.展开更多
文摘随着声呐技术的迅速发展,水声通信在海洋科学研究及海洋开发中发挥着非常重要的作用,水声通信换能器是水声通信设备中负责电声转换的重要部件。研究了一款带底座的溢流圆管换能器,通过有限元仿真计算了换能器发送电压响应和方向性等参数,优化了换能器中的陶瓷元件和底座的结构尺寸,制作并测量得到一款半空间指向性的水声通信换能器,换能器的工作频段为11~23 k Hz,带内起伏为3 d B,最大发送电压响应为133 d B,-3 d B垂直开角大于180°。
文摘In this paper,a design of ultraphonic tubulous water communication system based on OFDM is introduced. The system takes PL3106 which is embedded enhanced 8051 microprocessor as the control chip and takes TMS320VC5509 as the core of OFDM modulation-demodulation.In the paper,the principle of OFDM is introduced briefly.The hardware and software of the system are designed and the experimental results are analysed and concluded.