MARATTO

article · Scientific Reports

SD-MAC protocol for wireless sensor network energy consumption

2026Open accessSuez University

Abstract

Energy efficiency remains a critical challenge in Wireless Sensor Networks (WSNs), especially under dynamic traffic conditions. Traditional MAC protocols such as S-MAC and T-MAC suffer from fixed sleep cycles and early sleep problems, limiting their adaptability and efficiency. This paper introduces a novel protocol, Sleep Duty-cycle MAC (SD-MAC), which dynamically adjusts active listening periods based on real-time network traffic, thereby reducing idle listening and improving energy utilization. Unlike conventional approaches, SD-MAC incorporates a traffic-aware scheduling mechanism with dynamically tunable duty cycles, allowing sensor nodes to enter low-power sleep states without compromising data transmission reliability. The protocol is evaluated through extensive simulations using NS-2 under diverse traffic scenarios, with statistically validated performance metrics. Results demonstrate that SD-MAC achieves up to 10% more energy savings and higher throughput than T-MAC and outperforms several recent MAC protocols in terms of energy consumption, medium access delay, and packet delivery rate. These findings confirm the effectiveness of SD-MAC in enabling scalable and energy-efficient WSNs, particularly in low and medium-traffic environments.

Research topics

  • Energy Efficient Wireless Sensor Networks
  • Wireless Networks and Protocols
  • Mobile Ad Hoc Networks

Sustainable Development Goals

Read the original research

This page summarises published work. The authoritative version sits with the publisher.

DOI: 10.1038/s41598-026-37716-3

Is something wrong with this record? Report it or request removal.

Discussion

Discuss this research

Have you built on this work, tried to replicate it, or seen it applied in practice? Share what you know. Verified researchers and MARATTO™ domain experts can open a discussion, and any member can reply. Contributions are reviewed before they appear.

No discussion yet. Open the first thread.