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Related Experiment Video

Updated: Jan 20, 2026

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An Adaptive Wake-Up-Interval to Enhance Receiver-Based Ps-Mac Protocol for Wireless Sensor Networks.

Mohammed Sani Adam1, Lip Yee Por2, Mohammad Rashid Hussain3

  • 1Faculty of Computer Science & Information Technology, University of Malaya, Kuala Lumpur 50603, Malaysia. majorsani@gmail.com.

Sensors (Basel, Switzerland)
|September 1, 2019
PubMed
Summary

This study introduces a new protocol to prevent receiver nodes in wireless sensor networks from waking up too often. The proposed mechanism optimizes receiver wake-up intervals, reducing energy use and improving network performance.

Keywords:
medium access control protocolreceiver-initiated MAC protocoltraffic adaptationwake-up radiowireless sensor networks

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Area of Science:

  • Computer Science
  • Electrical Engineering
  • Networking

Background:

  • Receiver-based Preamble Sampling Medium Access Control (PS-MAC) protocols are crucial for variable traffic in wireless sensor networks (WSNs).
  • Existing PS-MAC protocols often suffer from incorrect traffic convergence, leading to inefficient receiver node wake-up cycles.
  • This inefficiency results in receivers waking up more frequently than necessary, increasing energy consumption.

Purpose of the Study:

  • To propose a novel protocol that addresses the incorrect traffic convergence problem in WSNs.
  • To reduce the receiver node's wake-up frequency without compromising network performance.
  • To enhance overall energy efficiency and data transmission reliability in WSNs.

Main Methods:

  • A new mechanism comprising four components: Initial control frame message, traffic estimation function, control frame message, and adaptive function.
  • The traffic estimation function utilizes Traffic Status Register (TSR), Idle Listening Times (ILT), and Number of Wake-ups without receiving Beacon Message (NWwbm).
  • The adaptive function enables the receiver to calculate optimal next wake-up intervals (WUI) for transmitter nodes.

Main Results:

  • The proposed mechanism effectively prevents incorrect traffic convergence, ensuring receivers do not wake up more than transmitters.
  • Simulations demonstrate significant reductions in energy consumption compared to benchmark protocols.
  • The mechanism also shows improvements in network throughput and packet delivery ratio, with minimal latency.

Conclusions:

  • The novel protocol successfully resolves the receiver over-wake-up issue in PS-MAC for WSNs.
  • The proposed approach offers a more energy-efficient and reliable communication solution for wireless sensor networks.
  • This research contributes to the advancement of efficient medium access control in resource-constrained WSN environments.