Javascript must be enabled to continue!
A Conceptual Model of Diagnostic System for Monitoring Stingless Bee Colony Rehabilitation
View through CrossRef
The role of stingless bee colonies in ecosystems is crucial, especially their contribution to pollination. However, these bee colonies face multiple threats, such as disease and environmental changes, which could affect their health and numbers. Therefore, it is particularly important to monitor and maintain these colonies to support the stability of the ecosystem and the sustainable development of agriculture. To address this challenge, this paper proposes a new diagnostic system model designed to monitor and promote the rehabilitation of stingless bee colonies. Model of a diagnostic system for monitoring the stingless bee colony rehabilitation. The system uses a DHT11 sensor to monitor temperature and humidity, a load cell to track the hive’s weight, and a force sensor to detect pressure or possible intrusion. Preliminary results show that the system can effectively capture key environmental parameters, providing valuable insights into the rehabilitation process. The findings provide avenues for further research and development of more robust monitoring solutions. This study’s key contribution is combining advanced electronic information engineering techniques with ecological knowledge from previous literature. The proposed conceptual framework is an application of technical tools and a comprehensive approach to understanding and protecting these important ecosystem components. The findings highlight the importance of environmental factors for stingless bee rehabilitation and overall colony health. Environmental parameters such as temperature, humidity, and air quality are critical to the survival and development of bee colonies, directly affecting their reproduction, food supply, and disease transmission.
Universiti Putra Malaysia
Title: A Conceptual Model of Diagnostic System for Monitoring Stingless Bee Colony Rehabilitation
Description:
The role of stingless bee colonies in ecosystems is crucial, especially their contribution to pollination.
However, these bee colonies face multiple threats, such as disease and environmental changes, which could affect their health and numbers.
Therefore, it is particularly important to monitor and maintain these colonies to support the stability of the ecosystem and the sustainable development of agriculture.
To address this challenge, this paper proposes a new diagnostic system model designed to monitor and promote the rehabilitation of stingless bee colonies.
Model of a diagnostic system for monitoring the stingless bee colony rehabilitation.
The system uses a DHT11 sensor to monitor temperature and humidity, a load cell to track the hive’s weight, and a force sensor to detect pressure or possible intrusion.
Preliminary results show that the system can effectively capture key environmental parameters, providing valuable insights into the rehabilitation process.
The findings provide avenues for further research and development of more robust monitoring solutions.
This study’s key contribution is combining advanced electronic information engineering techniques with ecological knowledge from previous literature.
The proposed conceptual framework is an application of technical tools and a comprehensive approach to understanding and protecting these important ecosystem components.
The findings highlight the importance of environmental factors for stingless bee rehabilitation and overall colony health.
Environmental parameters such as temperature, humidity, and air quality are critical to the survival and development of bee colonies, directly affecting their reproduction, food supply, and disease transmission.
Related Results
STINGLESS BEE COLONY HEALTH SENSING THROUGH INTEGRATED WIRELESS SYSTEM
STINGLESS BEE COLONY HEALTH SENSING THROUGH INTEGRATED WIRELESS SYSTEM
Stingless bees are usually common in tropical and subtropical region of the world especially in the tropical dry and humid forest. As stingless bee honey gaining reputation for its...
Development of Artificial Stingless Bee Hive Monitoring using IoT System on Developing Colony
Development of Artificial Stingless Bee Hive Monitoring using IoT System on Developing Colony
The trend of stingless bees’ farm in Malaysia has increased recently as it has been proven that its honey gives various benefits to human beings. This trend requires beekeepers to ...
Stingless Bee-Collected Pollen (Bee Bread): Chemical and Microbiology Properties and Health Benefits
Stingless Bee-Collected Pollen (Bee Bread): Chemical and Microbiology Properties and Health Benefits
Stingless bee-collected pollen (bee bread) is a mixture of bee pollen, bee salivary enzymes, and regurgitated honey, fermented by indigenous microbes during storage in the cerumen ...
Quality of stingless bee honey based on volatile organic compounds and gas released
Quality of stingless bee honey based on volatile organic compounds and gas released
Abstract
The aim of this study is to investigate the volatile organic compound released by stingless bee honey stored at room temperature (≈24°C) for 10 days and how...
Therapeutic Potential of Stingless bee Pollen: A Review
Therapeutic Potential of Stingless bee Pollen: A Review
Stingless bee pollen is bee pollen from stingless bee, mixture of bee salivary enzymes, regurgitated honey, fermented by native microbes during storage in cerumen pot. Stingless be...
A Study of Embedded Fuzzy Logic to Determine Artificial Stingless Bee Hive
Condition and Honey Volume
A Study of Embedded Fuzzy Logic to Determine Artificial Stingless Bee Hive
Condition and Honey Volume
Stingless Bee is particularly nutrient-dense in his honey. Therefore, numerous
beekeepers for the Stingless Bee have begun this agricultural enterprise, particularly
...
Socialization of Stingless Bee Cultivation for Economic Empowerment of West Payakumbuh Community, Payakumbuh City, West Sumatra
Socialization of Stingless Bee Cultivation for Economic Empowerment of West Payakumbuh Community, Payakumbuh City, West Sumatra
This activity aims to strengthen the local economy in West Payakumbuh, Payakumbuh City, West Sumatra, by implementing community service related to stingless bee beekeeping socializ...
Probiotic lactic acid bacteria from stingless bee products: isolation, characterization, and enhanced viability using prebiotic-fortified microencapsulation
Probiotic lactic acid bacteria from stingless bee products: isolation, characterization, and enhanced viability using prebiotic-fortified microencapsulation
Abstract
Purpose
Stingless bee products, such as honey and bee bread, are rich sources of beneficial microbes and bioacti...

