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An Energy-Efficient IEEE 802.11ad Mesh Network for Seismic Acquisition

机译:节能地震采集的IEEE 802.11ad网状网络

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Modern seismic surveys can obtain subsurface images of superior quality and depth, albeit requiring wireless acquisition systems to keep up with higher data rate requirements. Data communication protocols have been studied primarily for links between the geophones and the gateway nodes, leaving a dearth of analysis for the communication links between the gateway nodes and the sink node. In this paper, a novel wireless geophone network architecture based on the IEEE 802.11ad standard is proposed with the objective of providing gigabit rates in order to support real-time seismic acquisition. A performance analysis reveals that the latency and power consumption are dependent on the ratio of the data generation rate to the data transfer rate. An additional Power-Saving Geophone Relay (PSGR) scheme is described, which exploits idle periods of operation to conserve power at the cost of an increased latency. The trade-off between the latency and power consumption under the PSGR scheme is evaluated for a variety of scenarios in seismic acquisition.
机译:尽管需要无线采集系统来满足更高的数据速率要求,但是现代地震勘测可以获取质量和深度更高的地下图像。主要针对地震检波器与网关节点之间的链路研究了数据通信协议,而缺乏对网关节点与宿节点之间的通信链路的分析。本文提出了一种基于IEEE 802.11ad标准的新型无线地震检波器网络架构,其目的是提供千兆速率以支持实时地震采集。性能分析表明,等待时间和功耗取决于数据生成速率与数据传输速率的比值。描述了一种额外的节电地震检波器中继(PSGR)方案,该方案利用空闲的操作周期来节省功率,但代价是增加了等待时间。针对地震采集中的各种场景,评估了PSGR方案下的等待时间和功耗之间的权衡。

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