scholarly journals SISTEM MONITORING SCADA TANGKI GULA TETES BERBASIS WIRELESS MENGGUNAKAN PROTOKOL MODBUS TCP/IP

2019 ◽  
Vol 18 (2) ◽  
Author(s):  
Sukamto Sukamto ◽  
Yohan Intan

ABSTRACTThe molasses monitoring system at sugar factory still uses conventional monitoring by measuring directly on the tank. It is very ineffective because when conducting sale and purchase of molaseses must measure to the tank so that the effectiveness of the sale and purchase transactions is very less.The purpose of this research to increase sale and purchase eficiency of molasses at sugar factories in the madiun area. One such device is a wireless system that can transmit data from the tank so there is no need to measure the tank in the field. Many devices are used such as access point, receiver, analog input based LAN communication, PT100 temperature sensor, level sensor, etc.Analog input-based LAN communication is one device that connects between sensors and computers through a LAN network which is then transmitted by access point through wireless signals so that it can be accessed by the receiver remotely without installing cable as far as 300 meters. Data from receiver can be accessed by computer by using visual studio program as SCADA monitoring interface by using TCP / IP modbus protocol. The result of this research can simplify the process of data retrieval from sugar tank in the field.Keywords: SCADA,Modbus TCP/IP,Monitoring System, WirelessABSTRAKSaat ini sistem monitoring gula tetes di pabrik gula masih menggunakan monitoring konvensional dengan mengukur langsung pada tangki tetes. Hal ini sangat tidak efektif karena saat melakukan transaksi jual beli gula tetes harus mengukur terlebih dahulu ke tangki penampungan sehingga efektifitas dari transaksi jual beli sangat kurang.Tujuan penelitian ini adalah peningkatan sistem pada transaksi jual beli gula tetes pada pabrik gula yang ada di area Madiun. Salah satu perangkat tersebut adalah sistem wireless yang dapat mengirimkan data dari tangki sehingga tidak perlu mengukur tangki di lapangan. Hal tersebut saat ini menjadi salah satu fokus penelitian yang terus dikembangkan. Banyak perangkat yang digunakan seperti acces point, receiver, analog input berbasis komunikasi LAN, sensor suhu PT100, sensor level, dll.Analog input berbasis komunikasi LAN merupakan salah satu perangkat yang menghubungkan antara sensor dan komputer melalui jaringan LAN yang kemudian di pancarkan oleh acces point melalui sinyal wireless sehingga dapat diakses oleh receiver dari jarak jauh tanpa memasang kabel sejauh 300 meter. Data dari receiver dapat diakses oleh komputer dengan menggunakan program visual studio sebagai interface SCADA monitoring dengan menggunakan protokol modbus TCP/IP. Hasil dari penelitian ini dapat mempermudah proses pengambilan data dari tangki gula tetes di lapangan.Kata Kunci: SCADA,Modbus TCP/IP, Sistem Monitoring, Wireless, Komunikasi

Safety of miners is a major challenge nowadays. So we are using IOT based wireless system for monitoring the coal mines and health of the workers. We use two modules which are directly connected to the CLOUD SERVER. In first module we use several SENSORS to monitor and control the various parameters in the coal mines such as temperature and humidity conditions, light detection, leakage of toxic gases and flame detection. Likewise, in next module we use heartbeat sensor and temperature sensor for monitoring the health of the miners. The data which are collected from these modules are stored in the cloud. The alarm warns during unfavorable condition in the coal mine.


Author(s):  
Muhammad Syahmi Kamarulzaman ◽  
◽  
Siti Amely Jumaat ◽  
Muhammad Nafis Ismail ◽  
Ahmad Fateh Mohd Nor ◽  
...  

This project aims to develop a solar powered hydroponic monitoring system. Hydroponic system is a plantation system that uses water as the medium instead of soil. The solar energy acts as the main source and a supply for the Arduino Uno, a microcontroller to control all the sensors, collecting the data and display the data to users. The sensors used were DS18B20 temperature sensor, propylene float water level sensor and pH sensor. These sensors will monitor those elements and helping the users in hydroponics system. An Arduino Ide software was used to develop a coding for the monitoring system. The value of temperature, water level and pH has been measured and collected to be analyzed. For conclusion, this project is successful in that the data collected satisfied the objective and from the result, it shows the effectiveness of solar powered hydroponic monitoring system.


2019 ◽  
Vol 1 (2) ◽  
Author(s):  
Fina Supegina

Hydroponics is one of planting method that use water as a medium of plants growth, in this technique, mineral solution added into the water solvent, allowing the nutrient uptake process by the plants.  Farming by hydroponic method must pay attention to the following parameters namely, temperature, humidity, the level of water needs and nutrients and also the level of sunlight need for photosynthesis process.  This research used hydroponic technique in hydroponic growth room, and  there is a LED growth light as an alternate of sunlight, due to this room is closed without sunlight.  There are outputs displayed in monitoring system namely, temperature sensor, humidity sensor, ultrasound sensor to detect height of the plant and water level sensor to measured height of the water as a medium of the plant.  Results of measured sensor in hydroponic growth room explained as the following:  fan cooler worked when temperature , and humidity  .  Water pump worked when water level is less than 50% accordance set point.  Control on LED Growth Light and LED Bulb when LDR sensor reached set point > 500 in bright condition, and < 500 in dark condition respectively. The average of Time update/received data in thing speak web is 2.4 second. Keywords: Smart Control, Hydroponic, IoT, Monitoring


2021 ◽  
Author(s):  
Karam Yateem ◽  
Mohammad Dabbous ◽  
Mohammad Kadem ◽  
Mohammed Khanferi

Abstract The main objective of the paper is to outline initiatives associated with leveraging creativity and innovation to sustain operational excellence. It will cover processes, applications and best practices toward continually leveraging creative and innovation such as the development of innovation team toward creating a collaborative environment in the generation, identification and development of ideas and new technological advancement deployment. The processes described will cover (1) the continuous monitoring and management update of innovation submissions, implementation and self-development course completion, (2) recognition for value addition resultant from technological deployment, (3) Technical Review Committee (TRC) centralization and streamlining of evaluating technologies and best practices, (4) the assignment of challenging targets and (5) the initiation of special innovation campaigns for pressing and challenging matters has resulted in various major accomplishments. The establishment of the 4th Industrial Revolution (IR 4.0) team to address production engineering and well services challenges and collaborate for articulate, smart, more efficient and effective resolutions, process improvements and decision making. The results were remarkable with an incremental increase into intent to submit a patent file consideration, patenting, technology deployment and production of technical manuscripts addressing the unique achievements as well as the submission of awards applications. Technical collaboration toward triggering resolutions to ongoing operational challenges has resulted in various internal in-house built strides of best practices and other collaborative initiatives with other services providers such as: Intelligent Field Equipment Industrial Professionals Training: Special training for intelligent field equipment associated with smart well completion (SWC) exercising and optimization, data retrieval from multiphase flow meters (MPFMs) as well as a permanent downhole monitoring system (PDHMS) and conducting basic preventative maintenance (PM) requirements. Multiphase Flow Metering (MPFM) Advanced Monitoring System: An in-house developed MPFM system advanced monitoring to enable production/Intelligent Field engineers to monitor and diagnose MPFMs healthiness in all fields. It includes a validation mechanism to monitor and verify the different MPFM diagnostic data, alarming mechanism, flow rates and data visualization tools to verify the health of the installed base of equipment toward higher testing efficiency, reduction of manpower exposure to the field, and cost avoidance through minimizing operational logistical arrangements and minimization of unnecessary field visits by service providers. The ultimate intent is to heavily depend upon all employees to successfully propose solutions, and subject matter experts to coach employees in the successful implementation of practical resolutions to improve operations, optimize cost, and enhance employees’ satisfaction and engagement.


2014 ◽  
Vol 541-542 ◽  
pp. 1276-1280
Author(s):  
Dong Jiang Li ◽  
Zhi Hong Li ◽  
Jun Hao Yu ◽  
Xiao Yan Lou

Nowadays, the short of water resource has been a problem. To make the use of water resource more effectively, especially the underground water, we designed the IC card paid water wells Remote Monitoring System. The system consists of 3 parts--water wells terminal control unit, the data transmission network and supervisory and trade center. The process includes hardware design and software design. The core point consists of the IC card reading and writing processes and RS485 multi-device communication using MODBUS protocol. After testing, the basic function is completed, and it will be in the future having broad prospects for development in many fields.


2018 ◽  
Vol 9 (3-4) ◽  
pp. 31
Author(s):  
Mohammed Abdelrhman ◽  
Ahmed Balkis ◽  
Ali-Abou Ahmed ElNour ◽  
Mohammed Tarique

This paper presents a reliable and low cost environmental monitoring system. The system uses an Unmanned Ariel Vehicle (UAV) equipped with a set of sensors, microcontroller, wireless system, and other accessories. The system consists of two systems namely air quality monitoring system and water quality monitoring system. The air quality monitoring system consists of a set of gas sensors and microcontroller. This system measures the concentration of greenhouse gases at different altitudes under different environmental conditions. On the other hand, the water quality monitoring system consists of a set of water quality sensors, microcontroller, and water sampling unit. This system collects water samples from off-shore and on-shore water sources and measures water quality parameters. The present system is capable of recording the measured data in an onboard SD card. It is also able to send data to a ground monitoring unit through a wireless system. To ensure reliability in measurement the sensors are calibrated before deployment. Finally, the system is upgradable and reconfigurable. The system has been tested to measure air and water quality at different local areas. Some these measured data are also presented in this paper.


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