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首页> 外文期刊>Internet of Things Journal, IEEE >Design of Hybrid Wireless and Power Line Sensor Networks With Dual-Interface Relay in IoT
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Design of Hybrid Wireless and Power Line Sensor Networks With Dual-Interface Relay in IoT

机译:物联网中具有双接口中继的无线和电力线混合传感器网络的设计

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摘要

The hybrid wireless and power line communication (HWPLC) networks address the problem that mobile wireless sensors and power line communication (PLC) sensors cannot communicate with each other within an Internet of Things (IoT) network. In this paper, we design a relay equipped with a dual wireless and PLC interface, which connects both the PLC and wireless sensors into an IoT network. Furthermore, the dual-interface relay forwards messages by adaptively selecting a interface according to the channel state. A general mathematical probability model of the dual-interface relaying system is presented. The probability density function of the output signal-to-noise ratio (SNR) is developed, which is based on explicit closed-form expressions derived from the statistics character of the PLC and wireless channel. Furthermore, the average capacity, bit-error rate (BER) expressions, and the outage probability formulas are derived. Numerical results show that the HPLWC relaying system with the dual-interface can significantly improve the performance of capacity, BER, and outage probability by adaptively selecting the interface with the optimal received SNR.
机译:混合无线和电力线通信(HWPLC)网络解决了移动无线传感器和电力线通信(PLC)传感器无法在物联网(IoT)网络内相互通信的问题。在本文中,我们设计了一种具有双无线和PLC接口的继电器,该接口将PLC和无线传感器都连接到IoT网络中。此外,双接口中继通过根据信道状态自适应地选择接口来转发消息。提出了双接口中继系统的一般数学概率模型。开发了输出信噪比(SNR)的概率密度函数,该函数基于从PLC和无线通道的统计特性得出的显式封闭形式表达式。此外,推导了平均容量,误码率(BER)表达式以及中断概率公式。数值结果表明,具有双接口的HPLWC中继系统可以通过自适应地选择具有最佳接收SNR的接口来显着提高容量,BER和中断概率。

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