Automatic apiary care system

Author(s):  
Andriy Khrystyuk ◽  
Kirpichnikov Anton

An automatic control system for remote control and monitoring of bee life parameters in hives is developed. Based on the research of the main parameters of the life of bees in the hive, we have developed a scheme for managing and monitoring the weight of the hive, temperature and humidity, noise level, prevention of theft.

2019 ◽  
Vol 38 (3) ◽  
pp. 282
Author(s):  
Sri Waluyo ◽  
Ribut Eko Wahyono ◽  
Budianto Lanya ◽  
Mareli Telaumbanua

Oyster mushroom can grow properly at temperatures of 16–30 °C and relative humidity of 80–95%. Environment conditioning by spraying of water in mushroom house manually in the morning and evening as the temperature and humidity controling is less effective and highly bothersome. Using of technology can controlling temperature and humidity in a mushroom house automatically.  This research aims to design an automatic control system to control temperature and humidity in oyster mushroom house. Research is located at an altitude of 125 meters above sea level. Automatic control system with a setting point temperature of 25 – 30 °C and humidity of 80 – 95% was tested at mushroom house with dimensions of 4 × 2 × 2 m with a capacity of 600 baglog mushrooms.  The results show that the performance of daily temperature and humidity without control is respectively 24.10 to 35.19 °C and 64.28 to 99.90%. While the temperature and humidity with the control system are 25.10 to 30.09 °C and 80.84 to 99.90%, respectively.


2010 ◽  
Vol 44-47 ◽  
pp. 3-7
Author(s):  
Wen Shang Xu ◽  
An Xin Li ◽  
Cai Xia Liu

In this paper, making application of configuration software KingView6.52 and PLC in tailing cementation-filling automatic control system for an example, introduces the software configuration and hardware configuration of the system, details of the design of the control system and develops friendly monitoring interfaces using KingView6.52.The upper computer communicates with PLC by PROFIBUS and realizes remote control.


Author(s):  
Ramadiani Ramadiani ◽  
Eko Wiji Setio Budianto ◽  
Dharma Widada ◽  
Masayu Widiastuti ◽  
Muhammad Labib Jundillah

Stress in chickens due to rising cage temperatures is a problem that is often faced by breeders, especially broiler breeders. Research with the title "temperature and humidity control system for broiler chicken coops", has formulated the research problem as follows; how to make an automatic control system to maintain the temperature and humidity of the ras broiler chicken coop to keep it stable using Arduino Uno ATMega328. In this tool it has been set, if the temperature is ≥ 30º C then the water pump will turn on, and the water pump will turn off when the temperature is ≤ 29º C. Based on the results in this study, the temperature and humidity control system succeeded in helping farmers keep the temperature of the ras broiler chicken coop remained stable, so that farmers' production can be increased. In addition, this system also helps efficiency in terms of time and labor, because this system works automatically.


Author(s):  
Inshik Kang ◽  
Hyunok Song ◽  
Hoekyung Jung

<p>Recently, researches are being conducted to build a smart environment using various sensors and devices and to provide customized services to users through IoT (Internet of Things). The existing IoT system operates the device only by using the threshold value. So, there are problems that device operates when a service that does not consider a user characteristic is provided or when user not necessary. In this paper, to solve these problems, the system collects the remote control commands and compares it with the value of device operation threshold and sets the changed threshold value. In addition, devices not registered in the server constitute the environment by linking with existing task. Therefore, it is possible to provide a customized service to the users.</p>


2003 ◽  
Vol 3 ◽  
pp. 297-307
Author(s):  
V.V. Denisov

An approach to the study of the stability of non-linear multiply connected systems of automatic control by means of a fast Fourier transform and the resonance phenomenon is considered.


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