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Optimization of Transmitted Power and Modulation Level for Minimizing Energy Consumption in Wireless Sensor Networks

机译:最小化无线传感器网络能源消耗的传输功率和调制水平的优化

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摘要

Energy saving is one of the most important issues of wireless sensor networks (WSNs) that are gaining a lot of attention. In other words, energy modeling plays a greater role in energy optimization that helps designers to produce an economical and practical design of sensor nodes. In this paper, the issue of energy-efficient WSNs design is investigated by focusing on the setting of physical layer parameters. This is achieved by deriving an energy consumption model that considers most of the parameters of the physical layers. The proposed model is validated with real measurements to measure the accuracy of the proposed model. Results show good agreement between proposed model and experimental measurements with mean absolute percentage error less than 6%. The validated model is used to optimize transmitted power and modulation level to achieve minimum energy consumption. Finally, closed-form expressions for optimum transmitted power and modulation level are derived for different modulation schemes.
机译:节能是无线传感器网络(WSNS)最重要的问题之一,这些问题正在受到很多关注。换句话说,能量建模在能量优化中起着更大的作用,帮助设计人员产生了传感器节点的经济和实用性。在本文中,通过专注于物理层参数的设置来研究节能WSNS设计问题。这是通过导出考虑物理层的大部分参数的能耗模型来实现的。所提出的模型验证了真实测量以测量所提出的模型的准确性。结果显示拟议模型与实验测量之间的良好一致性,其直观百分比误差小于6%。经过验证的模型用于优化传输功率和调制级别以实现最小能耗。最后,为不同的调制方案导出了用于最佳传输功率和调制级别的闭合表达式。

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