Timer-based distributed node selection scheme exploiting power control and capture

Dewangan, Vikas Kumar ; Mehta, Neelesh B. (2015) Timer-based distributed node selection scheme exploiting power control and capture In: IEEE Transactions on Wireless Communications, 04 November 2014, India–U.K. Advanced Technology Center (IU-ATC).

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Official URL: https://doi.org/10.1109/TWC.2014.2367018

Related URL: http://dx.doi.org/10.1109/TWC.2014.2367018

Abstract

Opportunistic selection in multi-node wireless systems improves system performance by selecting the “best” node and by using it for data transmission. In these systems, each node has a real-valued local metric, which is a measure of its ability to improve system performance. Our goal is to identify the best node, which has the largest metric. We propose, analyze, and optimize a new distributed, yet simple, node selection scheme that combines the timer scheme with power control. In it, each node sets a timer and transmit power level as a function of its metric. The power control is designed such that the best node is captured even if η other nodes simultaneously transmit with it. We develop several structural properties about the optimal metric-to-timer-and-power mapping, which maximizes the probability of selecting the best node. These significantly reduce the computational complexity of finding the optimal mapping and yield valuable insights about it. We show that the proposed scheme is scalable and significantly outperforms the conventional timer scheme. We investigate the effect of η and the number of receive power levels. Furthermore, we find that the practical peak power constraint has a negligible impact on the performance of the scheme.

Item Type:Conference or Workshop Item (Paper)
Source:Copyright of this article belongs to IEEE.
Keywords:Measurement; Power control; Wireless communication; Data communication; Throughput; Signal to noise ratio; System performance.
ID Code:139119
Deposited On:15 Sep 2025 10:47
Last Modified:15 Sep 2025 10:47

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