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Design of a New Stress Wave-Based Pulse Position Modulation (PPM) Communication System with Piezoceramic Transducers

机译:基于压电陶瓷换能器的新型基于应力波的脉冲位置调制(PPM)通信系统的设计

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摘要

Stress wave-based communication has great potential for succeeding in subsea environments where many conventional methods would otherwise face excessive difficulty, and it can benefit logging well by using the drill string as a conduit for stress wave propagation. To achieve stress wave communication, a new stress wave-based pulse position modulation (PPM) communication system is designed and implemented to transmit data through pipeline structures with the help of piezoceramic transducers. This system consists of both hardware and software components. The hardware is composed of a piezoceramic transducer that can generate powerful stress waves travelling along a pipeline, upon touching, and a PPM signal generator that drives the piezoceramic transducer. Once the transducer is in contact with a pipeline surface, the generator integrated with an amplifier is utilized to excite the piezoceramic transducer with a voltage signal that is modulated to encode the information. The resulting vibrations of the transducer generates stress waves that propagate throughout the pipeline. Meanwhile, piezoceramic sensors mounted on the pipeline convert the stress waves to electric signals and the signal can be demodulated. In order to enable the encoding and decoding of information in the stress wave, a PPM-based communication protocol was integrated into the software system. A verification experiment demonstrates the functionality of the developed system for stress wave communication using piezoceramic transducers and the result shows that the data transmission speed of this new communication system can reach 67 bits per second (bps).
机译:基于应力波的通信在海底环境中具有巨大的成功潜力,在海底环境中,许多传统方法否则将面临极大的困难,并且通过使用钻柱作为应力波传播的管道,它可以使测井很好。为了实现应力波通信,设计并实现了一种新的基于应力波的脉冲位置调制(PPM)通信系统,以借助压电陶瓷换能器通过管道结构传输数据。该系统由硬件和软件组件组成。该硬件由一个压电陶瓷换能器和一个PPM信号发生器组成,该压电陶瓷换能器在触摸时会产生强大的应力波,该应力波沿着管道传播。一旦换能器与管道表面接触,便会利用与放大器集成在一起的发生器来激励压电陶瓷换能器,其电压信号经过调制以对信息进行编码。换能器产生的振动会产生应力波,该应力波会在整个管道中传播。同时,安装在管道上的压电陶瓷传感器将应力波转换为电信号,并且可以对信号进行解调。为了能够对应力波中的信息进行编码和解码,将基于PPM的通信协议集成到软件系统中。验证实验证明了所开发的系统使用压电陶瓷换能器进行应力波通信的功能,结果表明该新通信系统的数据传输速度可以达到每秒67位(bps)。

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