Computer Laboratory of Ambient and Wearable Systems - University of Alabama Computer Laboratory of Ambient and Wearable Systems - University of Alabama
Computer Laboratory of Ambient and Wearable Systems - University of Alabama Computer Laboratory of Ambient and Wearable Systems - University of Alabama
  • Home
  • People
  • Research projects
  • Publications
  • Public downloads
  • Media coverage
  • News

Improving Food Image Recognition with Noisy Vision Transformer

Food image recognition is a challenging task in computer vision due to the high variability and complexity of food images. In this study, we investigate the potential of Noisy Vision Transformers (NoisyViT) for improving food classification performance. By introducing noise into the learning process, NoisyViT reduces task complexity and adjusts the entropy of the system, leading to enhanced model accuracy. We fine-tune NoisyViT on three benchmark datasets: Food2K (2,000 categories, ~1M images), Food-101 (101 categories, ~100K images), and CNFOOD-241 (241 categories, ~190K images). The performance of NoisyViT is evaluated against state-of-the-art food recognition models. Our results demonstrate that NoisyViT achieves Top-1 accuracies of 95%, 99.5%, and 96.6% on Food2K, Food-101, and CNFOOD-241, respectively, significantly outperforming existing approaches. This study underscores the potential of NoisyViT for dietary assessment, nutritional monitoring, and healthcare applications, paving the way for future advancements in vision-based food computing. Code for reproducing NoisyViT for food recognition is available at NoisyViT_Food.

The code is available as GitHub repository.

 

Multi-channel physiological simulator for testing of polygraph equipment

Electronic and Electromechanical Tester of Physiological Sensors

 

Read more …

Energy intake and energy balance monitoring in free living population.

Monitoring of Ingestive Behavior, Diet and Energy Intake

Read more …

Wearable biofeedback device for physical activity and energy expenditure estimation (SmartShoe)

Wearable Biofeedback from Footware (SmartShoe/SmartStep)

Read more …

Monitoring of Smoking by Personal Automatic Cigarette Tracker (PACT)

 

Personal Automatic Cigarette Tracker (PACT)

Read more …
  1. Self-powered wireless sensors and energy harvesting
  2. Wireless Intelligent Sensor and Actuator Network (WISAN)
  3. Sleep state scoring through non-invasive measurements.
  4. Automatic damage detection for Armored Vehicle Launched Bridge.

Page 1 of 3

  • 1
  • 2
  • 3
© 2026 Computer Laboratory of Ambient and Wearable Systems - University of Alabama
Computer Laboratory of Ambient and Wearable Systems - University of Alabama Computer Laboratory of Ambient and Wearable Systems - University of Alabama
  • Home
  • People
  • Research projects
  • Publications
  • Public downloads
  • Media coverage
  • News