基于数据链路长度的频率控制传输提高协同水声无线传感器网络性能的新方法

V. Vakili, M. Jannati
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引用次数: 16

摘要

本文介绍了一种提高协同水声传感器网络性能的新方法。该方法基于对网络节点间数据链路载波频率的控制和优化。在UWA信道中,路径损耗和噪声功率谱密度(psd)与载波频率有关。因此,与无线电通信不同,UWA通信的信噪比除了与传播链路长度有关外,还与频率有关。在这种信道中,无法找到整个频带的最佳频率和链路长度。在协同传输中,发送器将传输的数据包的一份副本发送给中继节点。然后中继根据协作方案,对每个数据包进行放大或解码,重传至目的地。接收机使用并结合接收到的两个信号来估计传输的数据。本文提出了一种基于链路长度控制和次优化传输频率以降低网络功耗的新方法。为此,对水下1km ~ 10km长度(中程航道)的航道参数进行了模拟和分析。然后对链路长度进行分类,并在每个分类中计算最优频率。利用这些次优频率,传感器和基站可以根据链路长度自适应控制载波频率,降低网络功耗。最后,在UWA无线传感器网络中对不同的协同传输方案“解码转发(DF)”和“放大转发(AF)”进行了仿真。在接收机中,采用最大比值组合器(MRC)对接收到的信号进行组合并进行数据估计。仿真结果表明,该方法可使水声无线传感器网络性能提高40.14%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A New Method to Improve Performance of Cooperative Underwater Acoustic Wireless Sensor Networks via Frequency Controlled Transmission Based on Length of Data Links
In this paper a new method to improve performance of cooperative underwater acoustic (UWA) sensor networks will be introduced. The method is based on controlling and optimizing carrier frequencies which are used in data links between network nods. In UWA channels Pathloss and noise power spectrum density (psd) are related to carrier frequency. Therefore, unlike radio communications, in UWA Communications signal to noise ratio (SNR) is related to frequency besides propagation link length. In such channels an optimum frequency in whole frequency band and link lengths cannot be found. In Cooperative transmission, transmitter sends one copy of transmitted data packets to relay node. Then relay depending on cooperation scheme, amplifies or decodes each data packet and retransmit it to destination. Receiver uses and combines both received signals to estimate transmitted data. This paper wants to propose a new method to decrease network power consumptions by controlling and sub-optimizing transmission frequency based on link length. For this purpose, underwater channel parameters is simulated and analyzed in 1km to 10km lengths (midrange channel). Then link lengths sub categorized and in each category, optimum frequency is computed. With these sub optimum frequencies, sensors and base station can adaptively control their carrier frequencies based on link length and decrease network’s power consumptions. Finally Different Cooperative transmission schemes “Decode and Forward (DF)” and “Amplify and Forward (AF)”, are simulated in UWA wireless Sensor network with and without the new method. In receiver maximum ratio combiner (MRC) is used to combining received signals and making data estimations. Simulations show that the new method, called AFC cooperative UWA communication, can improve performance of underwater acoustic wireless sensor networks up to 40.14%.
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