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Protocol for improved energy efficiency in wireless sensor networks to support mobile robots

机译:在无线传感器网络中提高能效以支持移动机器人的协议

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摘要

In this paper we propose a low cost and computationally inexpensive adaptive transmission power control algorithm for wireless sensors to communicate with the base station or hub. This power control algorithm can be used in scenarios where the transmitting station is not static and the distance between the transmitter and the receiving station changes with time. In addition to that there can be unwanted obstructions in between the transmitter and the receiver. Since the primary reason for drop in received signal strength is distance, it is important to select a set of power levels that will deliver the packets within a threshold error rate while saving energy. This adaptive algorithm does not use received signal strength indicator (RSSI) based beacon or probe packet for channel estimation nor listens for any busy channel before actual packet transmission. The hardware used for evaluating the protocol parameters is nRF24L01+ transceiver module from Nordic Semiconductor Inc. This chip is extremely cheap and the application of the adaptive power control protocol can reduce the overall deployment cost of sensor network. This algorithm is designed to meet the challenge of responding to an unknown and variable radio channel in an energy-efficient manner. The adaptive protocol uses past transmission experience or memory to decide the power level at which the new packet transmission will start. This lightweight protocol can be applied in mobile robots that collect data in real time from sensors and transmit to the base station.
机译:在本文中,我们为无线传感器与基站或集线器通信提出了一种低成本且计算成本低廉的自适应传输功率控制算法。此功率控制算法可用于以下情况:发射站不是静态的,并且发射器和接收站之间的距离会随时间变化。除此之外,在发射器和接收器之间可能存在不必要的障碍。由于接收信号强度下降的主要原因是距离,因此选择一组功率电平以在阈值错误率内传送数据包同时节省能量非常重要。该自适应算法不使用基于接收信号强度指示符(RSSI)的信标或探测数据包进行信道估计,也不在实际数据包传输之前侦听任何繁忙的信道。用于评估协议参数的硬件是Nordic Semiconductor Inc.的nRF24L01 +收发器模块。该芯片非常便宜,自适应功率控制协议的应用可以降低传感器网络的总体部署成本。该算法旨在满足以节能方式响应未知和可变无线电信道的挑战。自适应协议使用过去的传输经验或内存来确定新数据包传输将开始的功率级别。这种轻量级协议可以应用于从传感器实时收集数据并传输到基站的移动机器人中。

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