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Reliable Communication Performance for Energy Harvesting Wireless Sensor Networks

机译:能量收集无线传感器网络的可靠通信性能

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In this paper, we study the problem of how to provide reliable communications for energy harvesting (EH) wireless sensor network (WSN). Using the example of an autonomous quarry, where self-driving trucks autonomously collect and transport goods, there is a need for multiple wireless sensors collecting data about where and when goods can be collected, while guaranteeing reliable operation of the quarry. The vehicles transfer energy to the wireless sensors within range, forming a cluster. The sensors use this energy to transmit data to the vehicles. Finally, the vehicles relay information to an access point (AP). The AP processes the collected information and synchronize the operation of all vehicles. We propose an interference channel selection policy for the sensors-to-vehicles links and vehiclesto- AP links to improve the reliability of the communications, while enhancing the energy utilization. Accordingly, closed-form expression on how to achieve reliable communication within the considered system is derived and numerical results show that the proposed channel selection strategy not only improves the probability of achieving sufficiently reliable communication but also enhances the energy utilization.
机译:在本文中,我们研究了如何为能量收集(EH)无线传感器网络(WSN)提供可靠的通信的问题。以自动驾驶卡车为例,自动驾驶卡车自动收集和运输货物,因此需要多个无线传感器来收集有关可在何处以及何时收集货物的数据,同时还要保证该卡车的可靠运行。车辆将能量传递到范围内的无线传感器,形成一个集群。传感器利用这种能量将数据传输到车辆。最后,车辆将信息中继到接入点(AP)。 AP处理收集到的信息并同步所有车辆的操作。我们针对传感器到车辆的链路和车辆到AP的链路提出了一种干扰信道选择策略,以提高通信的可靠性,同时提高能源利用率。因此,推导了关于如何在所考虑的系统内实现可靠通信的闭式表达式,数值结果表明,所提出的信道选择策略不仅提高了实现足够可靠通信的可能性,而且提高了能量利用率。

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