研究了Pattern时延差编码(Pattern Time Delay Shift Coding,PTDS)水声通信的差分解码技术。在移动水声通信中,多普勒频偏会对信号产生时间上的压缩或展宽。差分解码通过测量相邻Pattern的时间差进行时延估计完成译码,克服了多普勒频偏...研究了Pattern时延差编码(Pattern Time Delay Shift Coding,PTDS)水声通信的差分解码技术。在移动水声通信中,多普勒频偏会对信号产生时间上的压缩或展宽。差分解码通过测量相邻Pattern的时间差进行时延估计完成译码,克服了多普勒频偏在时间上的累加效应,具有更强的抵抗多普勒能力,为移动水声通信技术的研究打下了基础。仿真实验证明所提出的解码方案简单易行、性能优良。展开更多
The major constraint on the performance of orthogonal frequency division multiplexing (OFDM) based underwater acoustic (UWA) communication is to keep subcarriers orthogonal. In this paper, Doppler estimation and t...The major constraint on the performance of orthogonal frequency division multiplexing (OFDM) based underwater acoustic (UWA) communication is to keep subcarriers orthogonal. In this paper, Doppler estimation and the respective compensation technique along with various diversity techniques were deliberated for OFDM-based systems best suited for underwater wireless information exchange. In practice, for mobile communication, adjustment and tuning of transducers in order to get spatial diversity is extremely difficult. Considering the relatively low coherence bandwidth in UWA, the frequency diversity design with the Doppler compensation function was elaborated here. The outfield experiments of mobile underwater acoustic communication (UWAC) based on OFDM were carried out with 0.17 bit/(s-Hz) spectral efficiency. The validity and the dependability of the scheme were also analyzed.展开更多
文摘研究了Pattern时延差编码(Pattern Time Delay Shift Coding,PTDS)水声通信的差分解码技术。在移动水声通信中,多普勒频偏会对信号产生时间上的压缩或展宽。差分解码通过测量相邻Pattern的时间差进行时延估计完成译码,克服了多普勒频偏在时间上的累加效应,具有更强的抵抗多普勒能力,为移动水声通信技术的研究打下了基础。仿真实验证明所提出的解码方案简单易行、性能优良。
基金Supported by the National High Technology Research and Development Program of China (2009AA093601-2)the National Defense Foundation Research (B2420110007)
文摘The major constraint on the performance of orthogonal frequency division multiplexing (OFDM) based underwater acoustic (UWA) communication is to keep subcarriers orthogonal. In this paper, Doppler estimation and the respective compensation technique along with various diversity techniques were deliberated for OFDM-based systems best suited for underwater wireless information exchange. In practice, for mobile communication, adjustment and tuning of transducers in order to get spatial diversity is extremely difficult. Considering the relatively low coherence bandwidth in UWA, the frequency diversity design with the Doppler compensation function was elaborated here. The outfield experiments of mobile underwater acoustic communication (UWAC) based on OFDM were carried out with 0.17 bit/(s-Hz) spectral efficiency. The validity and the dependability of the scheme were also analyzed.