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CDMA-Based Analog Network Coding for Underwater Acoustic Sensor Networks

机译:水下声传感器网络的基于CDMA的模拟网络编码

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We propose ANC-CDMA, a CDMA-based analog network coding scheme for underwater acoustic sensor networks (UW-ASNs) that can significantly improve the underwater acoustic channel utilization. First, we analyze a unidirectional multihop network, in which two acoustic nodes separated by two hops are assigned the same code-division channel (i.e., spreading code) to transmit concurrently. The packets transmitted by the two nodes will collide at the intermediate (relay) node. However, we show that, by exploiting information, i.e., the interfered packet previously received from one of the nodes, and applying joint channel estimation through pilot supervision along with a newly designed adaptive RAKE receiver, the relay node can cancel the interference before decoding the packet of interest. We then extend our analysis to a bidirectional network, in which two nodes first concurrently transmit their packets to the relay using the same spreading code. The relay amplifies and forwards the received interfered packet to the two nodes. We show that either node can still decode the packet of interest after equalizing the channel effects introduced during the propagation from the relay to itself and jointly estimating multipath affected channels and suppressing the self-interference signal before applying the adaptive RAKE receiver. The proposed ANC-CDMA scheme is implemented in a testbed based on Teledyne Benthos Telesonar SM-975 underwater modems and tested extensively in Lake LaSalle. Experiments and simulations demonstrate that for a 1–2 dB tradeoff in signal-to-noise ratio (SNR), the proposed scheme can significantly improve the channel utilization of a unidirectional and bidirectional networks by up to 50% and 100%, respectively, compared with conventional multiuser DS-CDMA scheme.
机译:我们提出ANC-CDMA,这是一种用于水下声传感器网络(UW-ASN)的基于CDMA的模拟网络编码方案,可以显着提高水下声信道的利用率。首先,我们分析一个单向多跳网络,其中由两个跳分开的两个声学节点被分配了相同的码分信道(即扩频码)以同时发送。两个节点传输的数据包将在中间(中继)节点上发生冲突。但是,我们表明,通过利用信息,即先前从节点之一接收到的受干扰数据包,并通过导频监督与新设计的自适应RAKE接收器一起应用联合信道估计,中继节点可以在解码信号之前消除干扰。感兴趣的数据包。然后,我们将分析扩展到双向网络,其中两个节点首先使用相同的扩展码同时将其数据包传输到中继。中继将接收到的受干扰数据包放大并转发到两个节点。我们证明,在应用自适应RAKE接收器之前,均衡从中继到自身的传播过程中引入的信道效应,并共同估计多径受影响的信道并抑制自干扰信号后,任何一个节点仍可以对感兴趣的数据包进行解码。拟议的ANC-CDMA方案在基于Teledyne Benthos Telesonar SM-975水下调制解调器的测试台中实施,并在拉萨尔湖进行了广泛的测试。实验和仿真表明,与1-2 dB的信噪比(SNR)折衷相比,所提出的方案可以分别将单向和双向网络的信道利用率分别提高50%和100%。传统的多用户DS-CDMA方案。

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