MIMO-HFM: Acoustic system design for reliability and high data rate in underwater sensor networks

Sungryul Kim, Jiseong Lee, Younghwan Yoo
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引用次数: 1

Abstract

Accomplish of reliability and high data rate over the time-varying multipath acoustic channel is very challenging. In this paper, we propose Multiple-Input and Multiple-Output (MIMO) system using Hyperbolic Frequency Modulation (HFM) waveform. Our system combines the advantages of both system, the spatial multiplexing of MIMO and Doppler-tolerance of HFM. To increase spectral efficiency, we use M-ray HFM, and overlapped sub-channel by leveraging the high temporal resolution characteristic of HFM. Also, massive operation overhead in the receiver side is drastically reduced using Fast Fourier Transform (FFT). Based on our acoustic simulator, the performance of MIMO-HFM is evaluated to show its multipathfading resolution and Doppler-invariant. The simulation results show that the MIMO-HFM is robust in error-prone acoustic channel while increasing data rate as compared with single antenna system.
MIMO-HFM:水下传感器网络中可靠性和高数据速率的声学系统设计
在时变多径声道上实现高可靠性和高数据率是一个非常具有挑战性的问题。本文提出了一种采用双曲调频(HFM)波形的多输入多输出(MIMO)系统。本系统结合了MIMO的空间复用和高频调频的多普勒容忍两种系统的优点。为了提高频谱效率,我们利用m射线高频调频的高时间分辨率特性,使用重叠子信道。此外,使用快速傅里叶变换(FFT)大大减少了接收端大量的操作开销。在声学模拟器的基础上,对MIMO-HFM的多径衰落分辨率和多普勒不变性进行了评价。仿真结果表明,与单天线系统相比,MIMO-HFM在容易出错的声道中具有鲁棒性,同时数据速率也有所提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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