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Communication Range Dynamics and Performance Analysis for a Self-Adaptive Transmission Power Controller

机译:自适应传输功率控制器的通信距离动态和性能分析

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摘要

The deployment of the nodes in a Wireless Sensor and Actuator Network (WSAN) is typically restricted by the sensing and acting coverage. This implies that the locations of the nodes may be, and usually are, not optimal from the point of view of the radio communication. Additionally, when the transmission power is tuned for those locations, there are other unpredictable factors that can cause connectivity failures, like interferences, signal fading due to passing objects and, of course, radio irregularities. A control-based self-adaptive system is a typical solution to improve the energy consumption while keeping good connectivity. In this paper, we explore how the communication range for each node evolves along the iterations of an energy saving self-adaptive transmission power controller when using different parameter sets in an outdoor scenario, providing a WSAN that automatically adapts to surrounding changes keeping good connectivity. The results obtained in this paper show how the parameters with the best performance keep a k-connected network, where k is in the range of the desired node degree plus or minus a specified tolerance value.
机译:无线传感器和执行器网络(WSAN)中节点的部署通常受到感测和作用范围的限制。这意味着从无线电通信的角度来看,节点的位置可能是并且通常不是最佳的。此外,当针对那些位置调整传输功率时,还有其他不可预测的因素会导致连接失败,例如干扰,由于经过物体而导致的信号衰落以及无线电不规则性。基于控制的自适应系统是一种典型的解决方案,可在保持良好连接的同时改善能耗。在本文中,我们探索了在室外场景中使用不同的参数集时,每个节点的通信范围如何随着节能型自适应传输功率控制器的迭代而变化,从而提供一种WSAN,它可以自动适应周围的变化并保持良好的连通性。本文获得的结果表明,具有最佳性能的参数如何保持k连接的网络,其中k在所需的节点度加上或减去指定的公差值的范围内。

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