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Adaptive Multi-Node Multiple Input and Multiple Output (MIMO) Transmission for Mobile Wireless Multimedia Sensor Networks

机译:移动无线多媒体传感器网络的自适应多节点多输入多输出(MIMO)传输

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摘要

Mobile wireless multimedia sensor networks (WMSNs), which consist of mobile sink or sensor nodes and use rich sensing information, require much faster and more reliable wireless links than static wireless sensor networks (WSNs). This paper proposes an adaptive multi-node (MN) multiple input and multiple output (MIMO) transmission to improve the transmission reliability and capacity of mobile sink nodes when they experience spatial correlation. Unlike conventional single-node (SN) MIMO transmission, the proposed scheme considers the use of transmission antennas from more than two sensor nodes. To find an optimal antenna set and a MIMO transmission scheme, a MN MIMO channel model is introduced first, followed by derivation of closed-form ergodic capacity expressions with different MIMO transmission schemes, such as space-time transmit diversity coding and spatial multiplexing. The capacity varies according to the antenna correlation and the path gain from multiple sensor nodes. Based on these statistical results, we propose an adaptive MIMO mode and antenna set switching algorithm that maximizes the ergodic capacity of mobile sink nodes. The ergodic capacity of the proposed scheme is compared with conventional SN MIMO schemes, where the gain increases as the antenna correlation and path gain ratio increase.
机译:由移动宿或传感器节点组成并使用丰富的传感信息的移动无线多媒体传感器网络(WMSN)比静态无线传感器网络(WSN)需要更快,更可靠的无线链路。本文提出了一种自适应多节点(MN)多输入多输出(MIMO)传输,以提高移动宿节点遇到空间相关性时的传输可靠性和容量。与常规的单节点(SN)MIMO传输不同,拟议的方案考虑了使用来自两个以上传感器节点的传输天线。为了找到最佳天线集和MIMO传输方案,首先引入MN MIMO信道模型,然后推导具有不同MIMO传输方案的闭式遍历容量表达式,例如时空发射分集编码和空间复用。容量根据天线相关性和来自多个传感器节点的路径增益而变化。基于这些统计结果,我们提出了一种自适应MIMO模式和天线集切换算法,该算法可以最大化移动宿节点的遍历容量。将所提方案的遍历容量与常规SN MIMO方案进行比较,后者的增益随着天线相关性和路径增益比的增加而增加。

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