scholarly journals A Real-Time Robust Fuzzy-based Level Control using Programmable Logic Controller

2015 ◽  
Vol 21 (1) ◽  
Author(s):  
Zafer Aydogmus
2021 ◽  
Vol 33 (4) ◽  
pp. 042029
Author(s):  
Sabine Nieke ◽  
Peter Rauscher ◽  
Jan Hauptmann ◽  
Thomas Schwarz ◽  
Marcel Mende

Author(s):  
Rijalul Fahmi Mustapa ◽  
◽  
Rozi Rifin ◽  
Mohd Ezwan Mahadan ◽  
Aznilinda Zainuddin

Abstract— Programmable Logic Controller (PLC) is an essential component in industrial automation where it acts as the backbone of the system. In line with Industrial Revolution (IR) 4.0, most industrial and manufacturing sectors move towards automation systems. Preparing university students about automation and PLC fundamental knowledge and skill is crucial before graduation, where the preoccupied knowledge will enhance graduate employability. Fulfilling this task, universities have to prepare the necessary equipment in the laboratory for teaching and learning purposes. The problem arises when certain universities with budget constraints cannot purchase the equipment for the PLC embedded system as huge costs have to be borne by universities. Thus, an alternative approach has to be taken where the main objective of this paper is to develop an interactive water level control system simulator as a substitution of the expensive automation PLC embedded system for teaching and learning purposes. OMRON software, namely CX-Programmer and CX-Designer used to design and develop an interactive water level control system simulator. In addition, the interactive water level control will be embedded with a PLC component that replicates the actual automation system laboratory equipment. Moreover, universities with a limited budget can utilize the tool for teaching and learning purposes of the PLC and automation system, which is the main contribution of this paper. Keywords—Water Level Control System, Programmable Logic Controller, Simulator, CX-Programmer, CX-Designer.


2014 ◽  
Vol 721 ◽  
pp. 261-264
Author(s):  
Lei Xiao ◽  
Li Li ◽  
Xiao Long Wu

This paper will describe that the fuzzy control is used to realize irrigate real-time control. And some reasonable fuzzy rules are found by computer simulation in MATLAB. Then the real-time irrigate will be applied by fuzzy control rules with Programmable Logic Controller (PLC) circuit. At last, writer made a conclusion that debugging greenhouse seedlings is well to meet the requirements of greenhouse.


In present scenario electricity theft is the major hurdle in front of government. This paper comprises of functions and architecture of the smart metering and monitoring network system which works on real time data communication and have its own network. Our main motive is to design and develop such a wireless metering system which will prevent power theft and provide us a reliable and accurate metering monitoring system by using modern technology. The design comprises of wireless power metering and monitoring network which will work on principle of real time data communication(which is not available in existing wireless GSM metering system) and will use its own reliable network with the help of Programmable Logic Controller. Programmable Logic Controller, smart meters, wireless communication modules and profinet cable are the key components of the system. To provide a better and easy human interface with the smart meter we are using simplify S CADA and programming which is very user affable.


2021 ◽  
Vol 6 (3) ◽  
pp. 72
Author(s):  
Rizal Braman Setya ◽  
Muhammad Rifa'i ◽  
Edi Sulistio Budi

Perkembangan teknologi saat ini sangat pesatdalam berbagai bidang terlebih di dunia industrialisasi.Teknologi dalam bidang konversi energi saat ini telahberkembang sangat pesat dalam memunculkan berbagai ideide kreatif untuk dimanfaatkan dalam bidang industri. Salahsatunya boiler, boiler adalah bejana yang digunakan untukmenghasilkan uap air (steam) yang akan digunakan sebagaipemanas atau tenaga penggerak seperti turbin. Salah satuperangkat kontrol modern yang dapat diterapkan dalamberlangsungnya proses produksi di industri saat ini adalahPLC (Programmable Logic Controller) sebagai kontroler danHMI (Human Machine Interface) sebagai alat untukmemonitoring kinerja sistem secara real time. Denganberkembangnya sistem kontrol pada suatu industri, makamodul miniplant boiler yang merupakan salah satu peralatanyang ada di indistri ini dapat digunakan sebagai mediapembelajaran di laboraturium sebelum masuk ke duniaindustri yang sesungguhnya. Pengontrolan suhu pada miniboiler merupakan suatu hal yang sangat penting karena suhumerupakan parameter yang mudah berubah sehingga perludilakukan pengontrolan agar suhu dapat tetap stabil pada nilaitertentu terhadap berbagai gangguan sehingga tidak terjadikegagalan sistem akibat suhu yang terlalu tinggi. Untukmendapatkan respon sistem yang stabil, diterapkan metodekontrol PID pada sistem. Pada skripsi ini digunakan miniplantboiler dengan ukuran diameter tabung 15 cm dengan panjang30 cm dan kapasitas 5 L. Suhu yang dikontrol pada tabungadalah 100 °C dengan hasil nilai parameter PID menggunakanmetode Ziegler Nichols Sistem Orde 1 diperoleh nilai Kp =20.03, Ti =120 dan Td = 4,2. Dan dari grafik respon sistemdiperoleh karakteristik %error steady state = 0,1 %, time rise(Tr) = 2130 s, time delay (Td) = 900, dan settling time (Ts) =2370 s. Dari nilai parameter kontrol PID tersebut,menunjukkan respon sistem yang baik dan mampu menjagasuhu sesuai dengan setpoint yang diberikan pada HMI untukkondisi sistem tanpa diberikan gangguan atau diberikangangguan


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