Automated Tracking Systems for the Assessment of Farmed Poultry

Author:

Neethirajan SureshORCID

Abstract

The world’s growing population is highly dependent on animal agriculture. Animal products provide nutrient-packed meals that help to sustain individuals of all ages in communities across the globe. As the human demand for animal proteins grows, the agricultural industry must continue to advance its efficiency and quality of production. One of the most commonly farmed livestock is poultry and their significance is felt on a global scale. Current poultry farming practices result in the premature death and rejection of billions of chickens on an annual basis before they are processed for meat. This loss of life is concerning regarding animal welfare, agricultural efficiency, and economic impacts. The best way to prevent these losses is through the individualistic and/or group level assessment of animals on a continuous basis. On large-scale farms, such attention to detail was generally considered to be inaccurate and inefficient, but with the integration of artificial intelligence (AI)-assisted technology individualised, and per-herd assessments of livestock became possible and accurate. Various studies have shown that cameras linked with specialised systems of AI can properly analyse flocks for health concerns, thus improving the survival rate and product quality of farmed poultry. Building on recent advancements, this review explores the aspects of AI in the detection, counting, and tracking of poultry in commercial and research-based applications.

Publisher

MDPI AG

Subject

General Veterinary,Animal Science and Zoology

Reference54 articles.

1. Our World in Data https://ourworldindata.org/meat-production#number-of-animals-slaughtere

2. Survey on dead on arrival of broiler chickens under commercial transport conditions;Bulent;Large Anim. Rev.,2019

3. Automatic Monitoring of Chicken Movement and Drinking Time Using Convolutional Neural Networks

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