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A New Method to Improve Performance of Cooperative Underwater Acoustic Wireless Sensor Networks via Frequency Controlled Transmission Based on Length of Data Links 被引量:1
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作者 Vahid Tabataba Vakily Mohammadjavad Jannati 《Wireless Sensor Network》 2010年第5期381-389,共9页
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 da... 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%. 展开更多
关键词 underwater acoustic communicationS Wireless Sensor Networks COOPERATIVE transmission Decode and FORWARD Amplify and FORWARD
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Energy-Efficient Mobile Data Collection Adopting Node Cooperation in an Underwater Acoustic Sensor Network
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作者 Yougan Chen Xiaoting Jin Xiaomei Xu 《China Communications》 SCIE CSCD 2017年第6期32-42,共11页
This paper considers an underwater acoustic sensor network with one mobile surface node to collect data from multiple underwater nodes,where the mobile destination requests retransmission from each underwater node ind... This paper considers an underwater acoustic sensor network with one mobile surface node to collect data from multiple underwater nodes,where the mobile destination requests retransmission from each underwater node individually employing traditional automatic-repeat-request(ARQ) protocol.We propose a practical node cooperation(NC) protocol to enhance the collection efficiency,utilizing the fact that underwater nodes can overhear the transmission of others.To reduce the source level of underwater nodes,the underwater data collection area is divided into several sub-zones,and in each sub-zone,the mobile surface node adopting the NC protocol could switch adaptively between selective relay cooperation(SRC) and dynamic network coded cooperation(DNC) .The difference of SRC and DNC lies in whether or not the selected relay node combines the local data and the data overheard from undecoded node(s) to form network coded packets in the retransmission phase.The NC protocol could also be applied across the sub-zones due to the wiretap property.In addition,we investigate the effects of different mobile collection paths,collection area division and cooperative zone design for energy saving.The numerical results showthat the proposed NC protocol can effectively save energy compared with the traditional ARQ scheme. 展开更多
关键词 underwater acoustic sensor networks mobile data collection node cooperation cooperative communications energy efficiency
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水声传感节点数据低时延传输的时钟同步算法
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作者 李丽丽 杨欣宇 +1 位作者 滕艳平 陈久玲 《计算机仿真》 北大核心 2020年第12期189-192,198,共5页
传统的时钟同步算法是在不同网络层延时假设一致的情况下进行的,导致误差补偿过大、误差消除效果不够理想。提出水声传感节点数据低时延传输的时钟同步算法。首先通过时钟同步原理,分析误差产生原因,将正确预测链路的传播延迟作为时钟... 传统的时钟同步算法是在不同网络层延时假设一致的情况下进行的,导致误差补偿过大、误差消除效果不够理想。提出水声传感节点数据低时延传输的时钟同步算法。首先通过时钟同步原理,分析误差产生原因,将正确预测链路的传播延迟作为时钟同步算法的核心;其次,对不同传感器节点时钟值采样,实现子样空间越大,同步精准率越高;然后记录并传输时间戳,获取本地时钟与参考时钟差值,计算时钟同步的累计误差,最后利用自回归积分滑动控制算法对同步累计误差补偿,从而实现低时延传输的时钟同步。仿真结果表明,所提时钟同步算法可以降低水下传感网络的延时性、提高通信效率,符合水下通信要求。 展开更多
关键词 水声传感节点 低时延传输 时钟同步 自回归积分滑动 误差补偿
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定向传输水声通信网络邻节点发现机制 被引量:2
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作者 杨健敏 乔钢 +1 位作者 刘凇佐 尹艳玲 《哈尔滨工程大学学报》 EI CAS CSCD 北大核心 2019年第9期1549-1554,共6页
针对水声通信网络拓扑不稳定的问题,本文对其邻节点发现机制进行了研究。邻节点发现机制将网络新增节点的邻节点分为全向传输范围内邻节点与定向传输范围内邻节点2类,全向传输范围内邻节点按照邻节点发现机制选取部分节点作为邻节点代表... 针对水声通信网络拓扑不稳定的问题,本文对其邻节点发现机制进行了研究。邻节点发现机制将网络新增节点的邻节点分为全向传输范围内邻节点与定向传输范围内邻节点2类,全向传输范围内邻节点按照邻节点发现机制选取部分节点作为邻节点代表,选出的邻节点代表根据自身情况向新增节点发送邻节点信息完成邻节点发现过程。本文通过理论计算与仿真分析验证所提邻节点发现机制性能,所得理论结果与仿真结果一致,仿真结果还表明所提邻节点发现机制中参与邻节点发现过程的节点数小于全向传输范围内节点数。 展开更多
关键词 水声通信网络 邻节点发现 定向传输 邻节点代表 信息冗余 全向传输 网络拓扑 传输范围
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三维空间下的近海水声通讯系统传输节点的系泊系统设计
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作者 赵子润 杨晔 +1 位作者 孟凡杰 赵庆新 《天津科技》 2016年第12期39-43,共5页
近海水声通讯系统由多个传输节点组成,每个传输节点由浮标系统、系泊系统和水声通讯系统组成,其系泊系统对水声通讯信号具有显著影响。在三维空间下,对近海水声通讯系统传输节点的系泊系统进行受力分析,得到了系统中各组成部分之间相互... 近海水声通讯系统由多个传输节点组成,每个传输节点由浮标系统、系泊系统和水声通讯系统组成,其系泊系统对水声通讯信号具有显著影响。在三维空间下,对近海水声通讯系统传输节点的系泊系统进行受力分析,得到了系统中各组成部分之间相互的受力关系,接着引入悬链线方程来刻画锚链的受力情况,并运用迭代思想及物体之间的几何关系,利用MATLAB与LINGO专业软件,建立了关于风力、水流力以及水深的系泊系统设计模型。 展开更多
关键词 三维空间近海水声通讯系统传输节点系泊系统设计
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