Dynamic Joint Scheduling of Anycast Transmission and Modulation in Hybrid Unicast-Multicast SWIPT-Based IoT Sensor Networks

07/17/2023
by   Do-Yup Kim, et al.
0

The separate receiver architecture with a time- or power-splitting mode, widely used for simultaneous wireless information and power transfer (SWIPT), has a major drawback: Energy-intensive local oscillators and mixers need to be installed in the information decoding (ID) component to downconvert radio frequency (RF) signals to baseband signals, resulting in high energy consumption. As a solution to this challenge, an integrated receiver (IR) architecture has been proposed, and, in turn, various SWIPT modulation schemes compatible with the IR architecture have been developed. However, to the best of our knowledge, no research has been conducted on modulation scheduling in SWIPT-based IoT sensor networks while taking into account the IR architecture. Accordingly, in this paper, we address this research gap by studying the problem of joint scheduling for unicast/multicast, IoT sensor, and modulation (UMSM) in a time-slotted SWIPT-based IoT sensor network system. To this end, we leverage mathematical modeling and optimization techniques, such as the Lagrangian duality and stochastic optimization theory, to develop an UMSM scheduling algorithm that maximizes the weighted sum of average unicast service throughput and harvested energy of IoT sensors, while ensuring the minimum average throughput of both multicast and unicast, as well as the minimum average harvested energy of IoT sensors. Finally, we demonstrate through extensive simulations that our UMSM scheduling algorithm achieves superior energy harvesting (EH) and throughput performance while ensuring the satisfaction of specified constraints well.

READ FULL TEXT

page 1

page 20

page 21

page 22

page 24

page 25

research
12/03/2019

SWIPT with Practical Modulation and RF Energy Harvesting Sensitivity

In this paper, we investigate the performance of simultaneous wireless i...
research
04/16/2021

Wireless Information and Power Transfer for IoT: Pulse Position Modulation, Integrated Receiver, and Experimental Validation

Simultaneous wireless information and power transfer (SWIPT) has emerged...
research
01/08/2018

Optimal Time Scheduling for Wireless-Powered Backscatter Communication Networks

This letter introduces a novel wireless-powered backscatter communicatio...
research
03/06/2018

Accumulate Then Transmit: Multi-user Scheduling in Full-Duplex Wireless-Powered IoT Systems

This paper develops and evaluates an accumulate-then-transmit framework ...
research
08/24/2019

Design of Wireless Sensors for IoT with Energy Storage and Communication Channel Heterogeneity

Autonomous Wireless Sensors (AWSs) are at the core of every Wireless Sen...
research
08/22/2019

Experimental Analysis of Harvested Energy and Throughput Trade-off in a Realistic SWIPT System

We build a realistic Simultaneous Wireless Information and Power Transfe...
research
02/15/2019

Fog-Assisted Multi-User SWIPT Networks: Local Computing or Offloading

This paper investigates a fog computing-assisted multi-user simultaneous...

Please sign up or login with your details

Forgot password? Click here to reset