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A novel vision based adaptive transmission power control algorithm for energy efficiency in wireless sensor networks employing mobile robots

机译:一种基于视觉的新型自适应传输功率控制算法,用于采用移动机器人的无线传感器网络中的能源效率

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In a sensor network, there are scenarios when the distance between the transmitting node and the receiving node is not fixed, but varies with time. Such scenarios can arise, for example, when both the transmitting node and receiving node are mounted on mobile robots. Such scenarios could also arise when the transmitting node is fixed (for example, mounted on the ceiling), and the receiving node is mounted on a mobile robot. In such scenarios, it is difficult to predict the appropriate transmission power for successful packet exchanges. A simple strategy is to transmit packets at maximum available power level to ensure successfully transmission, all the time. However, such a strategy would result in a waste of power. We propose a new vision based adaptive transmission power control algorithm for power efficiency in cases when the distance between the transmitter and the receiver varies with time. The proposed algorithm estimates the distance between the transmitter and the receiver by image processing, and accordingly adjusts the transmitting power levels. We tested the algorithm in both noise-free and noisy (when there are obstructions, for ex. people, between the transmitter and the receiver) conditions of the environment on mobile robots using nRF24L01+ transceiver module. We found the algorithm to be robust and able to adjust the transmission power, in real time, to save energy.
机译:在传感器网络中,存在以下情况:发送节点和接收节点之间的距离不是固定的,而是随时间变化的。例如,当发送节点和接收节点都安装在移动机器人上时,可能会出现这种情况。当发送节点固定(例如,安装在天花板上)而接收节点安装在移动机器人上时,也会出现此类情况。在这种情况下,很难为成功的数据包交换预测合适的传输功率。一种简单的策略是以最大可用功率水平传输数据包,以确保始终成功传输。然而,这样的策略将导致功率的浪费。当发射机和接收机之间的距离随时间变化时,我们提出了一种新的基于视觉的自适应传输功率控制算法,以提高功率效率。所提出的算法通过图像处理来估计发射器和接收器之间的距离,并相应地调整发射功率水平。我们使用nRF24L01 +收发器模块在移动机器人的环境条件下(无噪声和嘈杂(例如,在发送方和接收方之间存在障碍物的情况下))对算法进行了测试。我们发现该算法是鲁棒的,并且能够实时调整传输功率以节省能源。

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