scholarly journals Perancangan PERANCANGAN IoT (INTERNET OF THINGS) PADA SISTEM IRIGASI TANAMAN CABAI

2020 ◽  
Vol 4 (2) ◽  
pp. 61-68
Author(s):  
Adimas Ketut Nalendra ◽  
M Mujiono

Water is an important aspect in aspects of life. In agriculture it is a major component of photosynthesis and transportation of nutrients from the soil to plants. Usually farmers provide water twice a day on a regular basis, but at certain times require excess water to maintain soil moisture. In chili plants, humidity needs around 60% to 80% so that plants can grow to the maximum. Internet of things (IoT) technology can help farmers to support the water needs that are in the soil. With IoT technology it can also help in the irrigation process by releasing or managing pumps automatically. The IoT device used to make this system is equipped with NodeMCU, a humidity sensor and a mobile based application as an IoT device control software. The Internet of Things (IoT) system can help the irrigation system in chilli plants to ensure the safety of the soil is raised 60% to 80%.

2019 ◽  
Vol 8 (2) ◽  
pp. 75-80
Author(s):  
Fadjri Ramadhan ◽  
Irfan Ardiansah ◽  
Roni Kastaman

Banana is one of the commodities that have nutritional value and high economic value. In order to produce a nice fruit and a high economic value, these plants must grow well. The Factors that can cause the plant to grow well, one of them is water. Water is used by plants, to grow root, stem, leaves and also maturation the fruit. When the plant doesn’t have water, growth will be stunted even death. In addition to deficiencies, excess water on the plant can also cause spoilage. Therefore, needed a tool which can watering plants, especially banana plant. The tool can be made using Arduino. Arduino is brand platform microcontroller that can control various sensors from soil moisture sensor, humidity sensor even it can apply the concept of the Internet of Things. The purpose of this research is to create a prototype automatic watering tool uses concept of the Internet of Things (IoT) to find out the condition of banana plant in real-time. The results obtained, the automatic watering tool successfully built and functional according the design, starting from the arduino that can control the soil moisture sensor to read current soil moisture, insert the data into the database, and the pump doesn’t on, because the moisture didn’t under 41% or in dry condition during the research. These data also sent to the user with a method of push notification.Keywords: Arduino, Banana, Internet of Things, Pushbullet, Push notification


Smart Flowerpot was a plant pot that helped growers reduced care time and watering for the plants, because the plant pot offered by the researcher had a soil humidity sensor that measured the soil moisture and sent the soil moisture to the processor using NodeMCU ESP8266. If the humidity level of the soil was lowered to the specified value, NodeMCU sent a signal to the relay module, to allow the water pump to water the plants and there was an ultrasonic sensor module to measure the water level that was put in for watering the plants. If the water supply had almost run out, the NodeMCU would send a notification message to the Line Notify of the owner of the smart flowerpot to refill the water and, in addition, the smart flowerpot was equipped with an RGB LED Module to show the soil moisture status. If the LED was green, it meant high humidity, yellow was moderate humidity, red was low, and users could also use the mobile application to manage and display sensor values in order to let them know the status of the smart flowerpots. The researcher designed the Architecture of Smart Flowerpot by using the Internet of Things and brought it to five Information Technology and Computer Science experts to assess the suitability. Overall evaluation, the average 4.55 SD 0.63, was suitable at the highest level.


Author(s):  
Jennifer S. Raj ◽  
Vijitha Ananthi J

Green house is generally a building of small or large structures. The structure of the green house is made of walls and the translucent roof, with the capability of maintaining the planned climatic condition. It ensures the growth of plants that requires a specified level of soil moisture, sunlight, humidity and temperature. The green house systems available are human monitored systems that entail the continuous human visit causing distress to the worker and also decrease in the yield if the temperature and the humidity are not properly and regularly maintained. This paves way for the concept of the green house automation. The green house automation formed by the incorporation of the Internet of things and the embedded system addresses the problem faced in the green house and provides with the automated controlling and monitoring of the green house environment replacing the undeviating administration of the farmers. This paper also proposes the automation using internet of things in green house environment by using the Netduino 3 and employing the sensors for the sensing the moisture, temperature, sunlight and humidity, to enhance the production rate and minimize the discomfort caused to the farmers.


Author(s):  
H. B. Chi ◽  
M. F. N. Tajuddin ◽  
N. H. Ghazali ◽  
A. Azmi ◽  
M. U. Maaz

<span>This paper presents a low-cost PV current-voltage or <em>I-V</em> curve tracer that has the Internet of Things (IoT) capability. Single ended primary inductance converter (SEPIC) is used to develop the <em>I-V</em> tracer, which is able to cope with rapidly changing irradiation conditions. The <em>I-V</em> tracer control software also has the ability to automatically adapt to the varying irradiation conditions. The performance of the <em>I-V</em> curve tracer is evaluated and verified using simulation and experimental tests.</span>


Author(s):  
Dani Sasmoko ◽  
Dzyo Bachtiar

Internet of Things (IoT) connects a global infrastructure in communities so they can take benefit of advanced services, by connecting objects (things) both physical and virtual with the Internet so that objects can communicate each other. The object of this study is a baby box to control the baby’s condition. When the baby cries too long it may cause Baby Distressed Tantrum which is the feeling of being depressed in the baby because they feel ignored. If this happens for a long time will endanger the baby's health as it is related to respiratory function and cardiac performance. The function of the baby box is to observe a baby when left without supervision. It will enable users to know if the baby is sleeping, awake or crying. Leaving a crying baby too long may have a negative effect. By applying the Internet of Things (IoT) in the design of an intelligent a baby box will help the parents and babysitter in controlling the baby if they have other activities to do. The baby box monitoring system has a dht11 temperature and humidity sensor, and a noise sensor to detect the baby crying. An esp8266 module on Wemos d1 will send data to an android smartphone and notify the user by sound or vibration.


2014 ◽  
Vol 543-547 ◽  
pp. 1099-1102 ◽  
Author(s):  
Zhi Qiang Yao ◽  
Heng Jun Zhu ◽  
Wen He Du

Aiming at the lagging for the monitoring of warehouse and lacking the intelligence, an automated warehouse monitoring system is designed using the internet of things, which may be used to monitor the temperature, humidity, and case of fire in the warehouse simultaneously. The temperature and humidity sensor SHT10 is implemented as the detector of the temperature and humidity, the flame sensor R2868 and the ionic smoke transducer HIS-07 are implemented as the detector of smoke and flame to find the fire. These data are sent to the computer in the manager center through Zigbee technology and the computer will process and analyze them. When the fire occurs, this system can extinguish the fire and call the manager or 119 automatically. The experiments have been performed, and it is shown that the performance of system is reliable, which has the practical value.


The fourth industrial revolution represents smarter systems, faster and more optimized system of artificial intelligence, which involves control systems and sensors networks. In this paper, the concept of the Internet of Things (IoT) was applied preliminarily to create the connection between machine and the user, using a sensor, a processor such as Raspberry Pi, and IoT platform application such as Blynk in the smartphone. The simple IR 4.0 prototype system and IoT apps were developed in order to create a connection between sensors and user through the internet consisting of a temperature and humidity sensor, which is DHT11 and a Raspberry Pi 3 Model B. The smartphone application would be developed through the Blynk application for this simple prototype system. The graphical user interface GUI was built within the Blynk app and link it to the sensor which is already connected to the Raspberry Pi. The analysis that was done upon the system is by varying the stimuli to the sensors, which is a hairdryer with three levels of heat and observe the relative change of the reading of temperature and percentage of humidity on the apps. Therefore, the preliminary result shows an increase in temperature as the heat level increases. On the other hand, the percentage of humidity becomes lower as the temperature goes higher. Based on the results and the analysis, it had shown that the IR 4.0 prototype system of IoT monitoring can connect between the sensor and the smartphone application with real-time monitoring through the internet.


Author(s):  
V. P. Kovalchuk ◽  
T. V. Matіash ◽  
V. V. Knysh ◽  
O. P. Voitovich ◽  
A. V. Kruchenyuk

The article analyzes available information on the application of the Internet of Things (IoT) for agriculture. It is pointed out that for large areas remote from cities and power supply sources for fields and farms, the construction of traditional communication channels is expensive enough, and classical mobile technologies for solving business problems are only partially suitable. Therefore, the article analyzes the practical approaches to using the Internet of Things (IoT) to monitor irrigated lands. The possibility of connecting soil moisture, temperature, pressure, direction and speed wind sensors based on LoRaWAN protocol to Internet gateways (base stations) without payment for cellular communication, additional power supply, deployment of complex Wi-Fi networks in the field was studied. Practical results on the characteristics of the sensors in the field, setting up a guaranteed LoRaWAN base station (gateway) connection, technical characteristics and causes of possible equipment malfunction were obtained. That is, the purpose of the study was to develop a budget solution for practical research and use of the Internet of Things (IoT) using the LoRaWAN protocol to monitor weather and soil moisture on irrigated lands. Among the main results of the study are the following. Equipment features and the specifics of sensors allocation and their terrain settings based on LoRaWAN protocol were studied, in particular: technical characteristics (operating frequencies, material, length, connection types and antenna placement height, radio signal transmission range and quality); use of different power sources (different types of batteries and solar panels surfaces); features of field operation (possible interference with radio signal propagation, dependence on the effect of pests, temperature fluctuations); encryption when exchanging data. A budget solution for monitoring meteorological indicators, soil moisture on irrigated lands was developed. A wireless monitoring network based on the LoRaWAN protocol was deployed in the irrigated fields of the SE ES of Askaniye of Kakhovsky District State in the Kherson region, consisting of 1 base station and 5 terminal units up to 2 km away. It was found that LoRa technology enables to control the channel expansion coefficient by determining the data transmitted over a period of time. It is determined that for the successful operation of wireless systems, an important issue is the proper radio planning and designing solutions for specific customer tasks. When deploying wireless networks, basic requirements for the reliability of the base stations and terminal units were identified and investigated. The developed budget solution for practical research and application of the Internet of Things (IoT) using the LoRaWAN protocol was compared with the Pessl Instruments GmbH and Davis Instruments Co brand developments to monitor weather, soil moisture on irrigated lands were. Among the most important findings are the development of a budget solution for monitoring meteorological indicators, soil moisture on irrigated lands consisting of 1 base station (gateway) of and 5 terminal units (monitoring stations). The coverage area of the base station with a base antenna for LoRaWAN was 0.6 km, with augmented and refined antenna - 2 km. Sensor data is advisable to transmit in 30-40 bytes per a send, with an expansion factor of SF = 12 without loss of quality. The best signal quality was ensured in the line of sight from the base station to the monitoring station.


Author(s):  
Lamiya Yousuf AlSarmi ◽  
Puttaswamy M. R.

  The world strives to exploit the fourth revolution in technology, including the great developments such as the Internet of Things (IoT) to improve life. IoT technology is used in many areas of life from industry health and environment to personal life. Agriculture is, therefore, one of the key sectors of life that have benefited from modern technology such as the use of drones for crop assessment, irrigation, monitoring and mapping, big data in crop analysis for companies and countries. The Internet of Things was not far off as it was introduced to monitor plant irrigation. Increased awareness of the environment and the exploitation of small and semi-enclosed areas in agriculture and turning them into green areas. The IoT technology converts this process into intelligent and dynamic based on wireless sensing with the help of the device programmed by the Arduino. This data is collected in Power BI what to help in the future development of the device and analysis of the data. The device senses soil moisture and temperature and connects it to its cloud platform for optimal management of future planting. The device senses soil moisture and temperature and connects it to its cloud power BI platform for optimal management of future planting. This technology helps reduce agricultural costs and labor. Therefore, this paper proposes an intelligent system with the help of the Internet of Things in the management of smart farming in apartment building with the help of Arduino.


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