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Design and Evaluation of Low-Cost and Energy-Efficient Magneto-Inductive Sensor Nodes for Wireless Sensor Networks

机译:无线传感器网络的低成本节能磁感应传感器节点的设计和评估

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A set of low-cost and energy-efficient sensor nodes are designed and implemented using magnetic induction (MI) communications for wireless sensor networks (WSN), which are especially suited for underwater and underground networks where the conventional mode of communication does not perform well. Hardware features of the sensor nodes include a three-dimensional MI coil antenna and its different configurations for transmit and receive operations, low-power circuits for sleep mode, several types of sensors, data storage, and best transmit/receive circuits selected to achieve the maximum communication range with low-power consumption. The material cost of a sensor node is less than $100 USD at the prototyping stage and can be drastically reduced at volume production. Software design utilizes low-power modes of microcontrollers and power supply circuits, state machine implementation of sleep, receive, sensing, and transmit modes, range estimation from received signal strength indicators (RSSIs), and medium access protocols, such as carrier sense multiple access (CSMA). Extensive lab and field tests conducted with the sensor nodes demonstrate promising performance in terms of low-power consumption, communication range, range estimation, and robustness against mismatching of coil orientations, and networking capabilities. The current consumption is as low as 60 mu A in sleep mode, 0.49 mA in receive mode, and 253 mA in transmit mode. The sensor node achieves a maximum of 40-m range with 1 kb/s data rate at 125 kHz carrier frequency.
机译:使用用于无线传感器网络(WSN)的磁感应(MI)通信设计和实现了一组低成本和高能效的传感器节点,该传感器节点特别适合于常规通信模式无法很好执行的水下和地下网络。传感器节点的硬件功能包括三维MI线圈天线及其用于发送和接收操作的不同配置,用于睡眠模式的低功耗电路,几种类型的传感器,数据存储以及为实现以下目的而选择的最佳发送/接收电路低功耗实现最大通信范围。在原型设计阶段,传感器节点的材料成本不到100美元,并且可以在批量生产时大大降低。软件设计利用微控制器和电源电路的低功耗模式,睡眠,接收,感测和发送模式的状态机实现,从接收信号强度指示器(RSSI)进行范围估计以及介质访问协议(例如载波侦听多路访问) (CSMA)。利用传感器节点进行的广泛的实验室和现场测试证明,在低功耗,通信范围,范围估计以及针对线圈方向不匹配的鲁棒性和联网功能方面,性能令人鼓舞。睡眠模式下的电流消耗低至60μA,接收模式下的电流消耗低至0.49 mA,发送模式下的电流消耗低至253 mA。传感器节点在125 kHz载波频率下以1 kb / s的数据速率实现最大40 m的范围。

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