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数字自干扰消除在异步带内全双工水声通信中的应用。

Digital Self-Interference Cancellation for Asynchronous In-Band Full-Duplex Underwater Acoustic Communication.

机构信息

Acoustic Science and Technology Laboratory, Harbin Engineering University, Harbin 150001,China.

Key Laboratory of Marine Information Acquisition and Security (Harbin Engineering University), Ministry of Industry and Information Technology, Harbin 150001, China.

出版信息

Sensors (Basel). 2018 May 24;18(6):1700. doi: 10.3390/s18061700.

Abstract

To improve the throughput of underwater acoustic (UWA) networking, the In-band full-duplex (IBFD) communication is one of the most vital pieces of research. The major drawback of IBFD-UWA communication is Self-Interference (SI). This paper presents a digital SI cancellation algorithm for asynchronous IBFD-UWA communication system. We focus on two issues: one is asynchronous communication dissimilar to IBFD radio communication, the other is nonlinear distortion caused by power amplifier (PA). First, we discuss asynchronous IBFD-UWA signal model with the nonlinear distortion of PA. Then, we design a scheme for asynchronous IBFD-UWA communication utilizing the non-overlapping region between SI and intended signal to estimate the nonlinear SI channel. To cancel the nonlinear distortion caused by PA, we propose an Over-Parameterization based Recursive Least Squares (RLS) algorithm (OPRLS) to estimate the nonlinear SI channel. Furthermore, we present the OPRLS with a sparse constraint to estimate the SI channel, which reduces the requirement of the length of the non-overlapping region. Finally, we verify our concept through simulation and the pool experiment. Results demonstrate that the proposed digital SI cancellation scheme can cancel SI efficiently.

摘要

为了提高水下声(UWA)网络的吞吐量,带内全双工(IBFD)通信是最关键的研究内容之一。IBFD-UWA 通信的主要缺点是自干扰(SI)。本文提出了一种用于异步 IBFD-UWA 通信系统的数字 SI 消除算法。我们重点关注两个问题:一个是与 IBFD 无线电通信不同的异步通信,另一个是功率放大器(PA)引起的非线性失真。首先,我们讨论了具有 PA 非线性失真的异步 IBFD-UWA 信号模型。然后,我们设计了一种利用 SI 和期望信号之间的非重叠区域来估计非线性 SI 信道的异步 IBFD-UWA 通信方案。为了消除 PA 引起的非线性失真,我们提出了一种基于过参数化的递归最小二乘(RLS)算法(OPRLS)来估计非线性 SI 信道。此外,我们提出了一种具有稀疏约束的 OPRLS 来估计 SI 信道,这降低了非重叠区域长度的要求。最后,我们通过仿真和水池实验验证了我们的概念。结果表明,所提出的数字 SI 消除方案能够有效地消除 SI。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6459/6021861/9dbc0d071a4f/sensors-18-01700-g001.jpg

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