An RFID-Based Smart Nest Box: An Experimental Study of Laying Performance and Behavior of Individual Hens

This study designed a radio-frequency identification (RFID)-based Internet of Things (IoT) platform to create the core of a smart nest box. At the sensing level, we have deployed RFID-based sensors and egg detection sensors. A low-frequency RFID reader is installed in the bottom of the nest box and...

Full description

Bibliographic Details
Main Authors: Ying-Ren Chien, Yu-Xian Chen
Format: Article
Language:English
Published: MDPI AG 2018-03-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/18/3/859
id doaj-cfbea2f57a324a5198e666ff2d0dae4d
record_format Article
spelling doaj-cfbea2f57a324a5198e666ff2d0dae4d2020-11-25T00:38:30ZengMDPI AGSensors1424-82202018-03-0118385910.3390/s18030859s18030859An RFID-Based Smart Nest Box: An Experimental Study of Laying Performance and Behavior of Individual HensYing-Ren Chien0Yu-Xian Chen1Department of Electrical Engineering, National Ilan University, Yilan City 26047, TaiwanDepartment of Electrical Engineering, National Ilan University, Yilan City 26047, TaiwanThis study designed a radio-frequency identification (RFID)-based Internet of Things (IoT) platform to create the core of a smart nest box. At the sensing level, we have deployed RFID-based sensors and egg detection sensors. A low-frequency RFID reader is installed in the bottom of the nest box and a foot ring RFID tag is worn on the leg of individual hens. The RFID-based sensors detect when a hen enters or exits the nest box. The egg-detection sensors are implemented with a resistance strain gauge pressure sensor, which weights the egg in the egg-collection tube. Thus, the smart nest box makes it possible to analyze the laying performance and behavior of individual hens. An evaluative experiment was performed using an enriched cage, a smart nest box, web camera, and monitoring console. The hens were allowed 14 days to become accustomed to the experimental environment before monitoring began. The proposed IoT platform makes it possible to analyze the egg yield of individual hens in real time, thereby enabling the replacement of hens with egg yield below a pre-defined level in order to meet the overall target egg yield rate. The results of this experiment demonstrate the efficacy of the proposed RFID-based smart nest box in monitoring the egg yield and laying behavior of individual hens.http://www.mdpi.com/1424-8220/18/3/859ArduinoInternet of Things (IoT)smart agriculturesmart nest boxlaying behaviorRFID
collection DOAJ
language English
format Article
sources DOAJ
author Ying-Ren Chien
Yu-Xian Chen
spellingShingle Ying-Ren Chien
Yu-Xian Chen
An RFID-Based Smart Nest Box: An Experimental Study of Laying Performance and Behavior of Individual Hens
Sensors
Arduino
Internet of Things (IoT)
smart agriculture
smart nest box
laying behavior
RFID
author_facet Ying-Ren Chien
Yu-Xian Chen
author_sort Ying-Ren Chien
title An RFID-Based Smart Nest Box: An Experimental Study of Laying Performance and Behavior of Individual Hens
title_short An RFID-Based Smart Nest Box: An Experimental Study of Laying Performance and Behavior of Individual Hens
title_full An RFID-Based Smart Nest Box: An Experimental Study of Laying Performance and Behavior of Individual Hens
title_fullStr An RFID-Based Smart Nest Box: An Experimental Study of Laying Performance and Behavior of Individual Hens
title_full_unstemmed An RFID-Based Smart Nest Box: An Experimental Study of Laying Performance and Behavior of Individual Hens
title_sort rfid-based smart nest box: an experimental study of laying performance and behavior of individual hens
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2018-03-01
description This study designed a radio-frequency identification (RFID)-based Internet of Things (IoT) platform to create the core of a smart nest box. At the sensing level, we have deployed RFID-based sensors and egg detection sensors. A low-frequency RFID reader is installed in the bottom of the nest box and a foot ring RFID tag is worn on the leg of individual hens. The RFID-based sensors detect when a hen enters or exits the nest box. The egg-detection sensors are implemented with a resistance strain gauge pressure sensor, which weights the egg in the egg-collection tube. Thus, the smart nest box makes it possible to analyze the laying performance and behavior of individual hens. An evaluative experiment was performed using an enriched cage, a smart nest box, web camera, and monitoring console. The hens were allowed 14 days to become accustomed to the experimental environment before monitoring began. The proposed IoT platform makes it possible to analyze the egg yield of individual hens in real time, thereby enabling the replacement of hens with egg yield below a pre-defined level in order to meet the overall target egg yield rate. The results of this experiment demonstrate the efficacy of the proposed RFID-based smart nest box in monitoring the egg yield and laying behavior of individual hens.
topic Arduino
Internet of Things (IoT)
smart agriculture
smart nest box
laying behavior
RFID
url http://www.mdpi.com/1424-8220/18/3/859
work_keys_str_mv AT yingrenchien anrfidbasedsmartnestboxanexperimentalstudyoflayingperformanceandbehaviorofindividualhens
AT yuxianchen anrfidbasedsmartnestboxanexperimentalstudyoflayingperformanceandbehaviorofindividualhens
AT yingrenchien rfidbasedsmartnestboxanexperimentalstudyoflayingperformanceandbehaviorofindividualhens
AT yuxianchen rfidbasedsmartnestboxanexperimentalstudyoflayingperformanceandbehaviorofindividualhens
_version_ 1725297210421149696