Understanding Relative Network Delay inMicro-Energy Harvesting Wireless Networks

08/10/2019
by   Qi Chen, et al.
0

Micro-energy harvesting wireless network (MEHWN) enables a perpetual network deployment that cannot be achieved in traditional battery-operated counterparts. Despite its sustainability, end-to-end delay in an MEHWN could be very large, due to the large waiting delay on each hop in the network. In this work, we consider an MEHWN where every node constantly switches between on and off states, due to the limited amount of harvested energy. The network delay of an MEHWN is not well understood because of the energy uncertainty, asynchronized working schedules, and complex network topology in an MEHWN. To close this research gap, we define the relative network delay as the ratio between end-to-end delay and distance. Compared to previous works, we are able to identify a closed-form expression of the lower bound and a tighter upper bound of the relative network delay. The theoretical findings are verified in simulations. Our theoretical analysis deepens the understanding about the interplay of network delay, energy harvesting rate, and node density in an MEHWN.

READ FULL TEXT
research
04/05/2020

Analysis of Asymmetric Dual-Hop Energy Harvesting-Based Wireless Communication Systems in Mixed Fading Environments

In this paper, the performance of a dual-hop energy harvesting-based fix...
research
06/08/2018

Transient Delay Bounds for Multi-Hop Wireless Networks

In this article, we investigate the transient behavior of a sequence of ...
research
10/11/2022

Sizing up the Batteries: Modelling of Energy-Harvesting Sensor Nodes in a Delay Tolerant Network

For energy-harvesting sensor nodes, rechargeable batteries play a critic...
research
08/23/2013

Delay Optimal Scheduling for Energy Harvesting Based Communications

Green communication attracts increasing research interest recently. Equi...
research
02/02/2021

Characterizing the Energy Trade-Offs of End-to-End Vehicular Communications using an Hyperfractal Urban Modelling

We characterize trade-offs between the end-to-end communication delay an...
research
05/30/2020

Wireless Power Transfer Under Kullback-Leibler Distribution Uncertainty: A Mathematical Framework

In this letter, we study the performance of a wireless power transfer sy...
research
11/01/2022

MDC Enhanced IoT Networks: Network Modeling and Performance Analysis

As a promising architecture, Mobile Data Collector (MDC) enhanced Intern...

Please sign up or login with your details

Forgot password? Click here to reset