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AUTOMATION OF BATCHING PLANT USING PLC AND SCADA
Meghana.M 1
Asma Anjum 2
Jayashree Venugopal 3
P.Pramila 4
1,2-
Students-Venjay Institute 0f Automation
Jayanagar , Bangalore-560-011,India
3-
proprietor,Venjay Institute 0f Automation
Jayanagar , Bangalore-560-011,India
4-
Prof and HOD ,Department of Electrical And Electronics Engineering,
Bangalore Institute of Technology, Bangalore – 560 004,India
1
meghangowda6@gmail.com, 2
asmaanjm11@hotmail.com
3
krj50@hotmail.com, 4
pramila_madhuri@rediffmail.com
Abstract—
This paper presents the need for effective automation using
PLC and SCADA in the process control in any competitive
industry. To overcome the demand for high productivity, greater
efficiency and to reduce the human intervention in industries,
automation is all of the prefer solution.
A flexible system that can be controlled by the user at the site
is preferred. Systems whose logic can be modified but still, used
without disturbing its connection to external world is achieved by
plc with automation
Thus this paper takes an attempt to explain the automated
and process industries in general, with an example of batching
plant system methodology in particular, with PLC and SCADA .
1. INTRODUCTION
In current manufacturing companies, the purpose of automation is
increasing productivity, increasing quality, reducing cost and
achieving flexibility in manufacturing process to compete in today’s
market.
In many plants continuous monitoring and inspection at frequent
intervals is required, there are possibilities of errors at measuring and
various stages involved with human intervention and also lack of
some features in microcontroller.
In order to automate a plant and minimize human intervention, the
need of automation is developed with PLC and SCADA which is
used for monitoring and controlling in process industries such as
chemical industries, steel and aluminum producing, cement
industries, bottling industries etc.
PLC is programmable logic control is used for internal storage of
instruction for implementing functions logic, sequencing ,timing,
counting and arithmetic, to control through digital and analog
inputsoutputs modules.
A PLC has inputs and outputs section to connect the PLC to the
machine with its sensors, solenoid, switches, electrical motors etc.
A PLC first checks each inputsoutputs to determine its status (OFF
or ON) the PLC executes the program one instruction at a time and
performs the required action. Finally the PLC updates the status of
the outputs and continuously keeps repeating the process.
SCADA (supervisory control and data acquisition) is a computer
system for gathering and analyzing real time data. It provides an
interconnection between PLC and the process which is taking place.
SCADA helps to provide to record and storing of large amount of
data from process.
The implementation of automation in batching plant using PLC’s and
SCADA systems in the process of manufacturing is considered ,with
an attempt to explain its methodology, which provides knowledge of
the batch by batch process which is undergoing during the
manufacturing of concrete blocks in an actual practically working
automated batching plant.
ISBN-13: 978-1537584836
www.iaetsd.in
Proceedings of ICAER-2016
©IAETSD 201684
2. METHODOLOGY
A batching plant, in which the process of manufacturing concrete
blocks by combining various ingredients which are accurately
weighed, mixing them in sequence and then delivers the mixed
concrete to compacting machine were concrete blocks are produced
batch by batch.
Batching plant has three sub systems
 Aggregate weighing systems
 Cement weighing
 Water computing
Aggregate weighing system, this section of plant has 4 bins
consisting of crushed dust, sand, and gravel. Each bin is provided
with motorized gate which is controlled by the PLC. The motorized
gates open and close one after other allows only prescribed weight of
the material to fall on the travelling bin which is measured using a
load cell by the PLC. The four load cells are used which supports the
bucket elevator as shown in fig-1.
Fig. 1: Block diagram of concrete batching plant
The load given by the load cell is added inside the load cell
controller. The load cell controller gives an analog output, using
which the PLC will generate counts. After the completion of
weighing, the bucket elevator is turned On by the PLC until the load
on the bucket elevator reaches zero (indicates that material in the
bucket elevator is fallen into mixer).
Cement weighing system, consist of cement container tank from
which the cement is supplied through screw conveyer using screw
motor and using a hopper with load cell controlled by PLC which
allows the fixed amount of material to enter into the mixer.
Water computing, addition of water is an important process in
concrete technology which contributes to the strength of the concrete
products. Water should neither be less nor more, hence it is a
complex algorithm followed by keeping a track with cement and sand
ratio.
Automation in any industry mainly deals with protection, control and
monitoring and supervision. Hence automation is always provided
with auto and manual mode for the safety purpose.
Automation of miniature batching plant with the PLC and SCADA
systems was taken up and the working of the plant process with batch
by batch was achieved by setting up its control and power wiring as
shown in the fig -2
Fig. 2: Control and power setup.
3. RESULTS
Automation of the concrete batching plant, SCADA
provides all the information on its screen of all the process
which is taking place in the plant. As shown in fig-3 the
SCADA screen provides full setup with all the three
process of Aggregate weighing systems, Cement weighing,
Water computing and also the mixer of the batching plant.
Thus automation with PLC and SCADA in a process
manufacturing industries provides flexibility to the
systems.
ISBN-13: 978-1537584836
www.iaetsd.in
Proceedings of ICAER-2016
©IAETSD 201685
Fig. 3: SCADA screen.
4. CONCLUSION
By using automation based on PLC and SCADA we can increase
productivity and replacing human intervention which reduces
operation time and increases consistency output. Hence with the
example which is presented in this paper, the automation with PLC
and SCADA of a miniature portable concrete batching plant is
explained with a working block diagram and SCADA screen of the
plant.
Acknowledgement
The authors wish to thank the managing director of VENJAY
AUTOMATION, Mr. R. Venugopal for providing the facilities.
The encouragement gratefully acknowledged.
REFERENCES
[1] Prof. Burali Y. N., “PLC Based Industrial Crane Automation
& Monitoring”, ISSN: 2278-4721, Vol. 1, Issue 3 (Sept 2012), PP
01-04.
[2] M. Kanmani, J.Nivedha, G.Sundar. “Belt Conveyor Monitoring
and Fault DetectingUsing PLC and SCADA”, may 2014.
[3] Joanna Marie M. Baroro, Melchizedek I. Alipio, Michael
Lawrence T. Huang, Teodoro M. Ricamara, Angelo A. Beltran Jr
“Automation of Packaging and Material Handling Using
Programmable Logic Controller”,(ISSN: 2277 – 1581),Volume
No. 3, Issue No. 6, pp: 767 – 770. 1 June 2014.
[4] Chief Editor: ‘Dr.K.R.Harane’, Editor: ‘Prof D.O.Patil’, ‘Prof
R.M.Sahu’. , “plc based power plant coal level sensing system
using ultrasonic sensor”, International Journal of Innovative
Technology & Adaptive Management (IJITAM) ISSN: 2347-3622,
Volume-1, Issue-6, March, 2014.
[5] Hemant Ahuja, Arika Singh, Saubhagya Tandon, Shreya
Srivastava, Sandeep Pal., “ Automatic Filling Management System
for Industries”, February 2014.
[6] Shashank Lingappa M.1, Vijayavithal Bongale2, Sreerajendra3,
“PLC Controlled Low Cost Automatic Packing Machine”,, 2014.
[7] Sunil R. Kewate1, S.V. Karmare2, Nehal Sayankar3 and
Siddharth Gavhale4. “Automatic Speed Control System by the
Color Sensor for Automobiles –An Control System by the Color
Sensor for Automobiles –An Innovative Model Based
Approach”., ISSN 2250-3234 Volume 4, Number 2 (2014), pp. 223-
230.
Mrs. Jayashre Venugopal received her master’s degree from
Visvesvaraya Technological University, Bangalore, Karnataka,
India and worked as Assistant professor in Electrical and
Electronics Engineering. Department, ACSCE, Bangalore.
Meghana. M and Asma Anjum has completed their bachelors of
engineering in Electrical and Electronics Engineering from
RGIT, Bangalore.
Dr.P..Pramila received her master’s degree from
U.V.C.E,Bangalore, Karnataka, India and her Ph.d from
Vinayaka Mission currently working as professor and Head of
Electrical and Electronics Engineering, Department, BIT,
Bangalore.
ISBN-13: 978-1537584836
www.iaetsd.in
Proceedings of ICAER-2016
©IAETSD 201686

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iaetsd Automation of batching plant using plc and scada

  • 1. AUTOMATION OF BATCHING PLANT USING PLC AND SCADA Meghana.M 1 Asma Anjum 2 Jayashree Venugopal 3 P.Pramila 4 1,2- Students-Venjay Institute 0f Automation Jayanagar , Bangalore-560-011,India 3- proprietor,Venjay Institute 0f Automation Jayanagar , Bangalore-560-011,India 4- Prof and HOD ,Department of Electrical And Electronics Engineering, Bangalore Institute of Technology, Bangalore – 560 004,India 1 meghangowda6@gmail.com, 2 asmaanjm11@hotmail.com 3 krj50@hotmail.com, 4 pramila_madhuri@rediffmail.com Abstract— This paper presents the need for effective automation using PLC and SCADA in the process control in any competitive industry. To overcome the demand for high productivity, greater efficiency and to reduce the human intervention in industries, automation is all of the prefer solution. A flexible system that can be controlled by the user at the site is preferred. Systems whose logic can be modified but still, used without disturbing its connection to external world is achieved by plc with automation Thus this paper takes an attempt to explain the automated and process industries in general, with an example of batching plant system methodology in particular, with PLC and SCADA . 1. INTRODUCTION In current manufacturing companies, the purpose of automation is increasing productivity, increasing quality, reducing cost and achieving flexibility in manufacturing process to compete in today’s market. In many plants continuous monitoring and inspection at frequent intervals is required, there are possibilities of errors at measuring and various stages involved with human intervention and also lack of some features in microcontroller. In order to automate a plant and minimize human intervention, the need of automation is developed with PLC and SCADA which is used for monitoring and controlling in process industries such as chemical industries, steel and aluminum producing, cement industries, bottling industries etc. PLC is programmable logic control is used for internal storage of instruction for implementing functions logic, sequencing ,timing, counting and arithmetic, to control through digital and analog inputsoutputs modules. A PLC has inputs and outputs section to connect the PLC to the machine with its sensors, solenoid, switches, electrical motors etc. A PLC first checks each inputsoutputs to determine its status (OFF or ON) the PLC executes the program one instruction at a time and performs the required action. Finally the PLC updates the status of the outputs and continuously keeps repeating the process. SCADA (supervisory control and data acquisition) is a computer system for gathering and analyzing real time data. It provides an interconnection between PLC and the process which is taking place. SCADA helps to provide to record and storing of large amount of data from process. The implementation of automation in batching plant using PLC’s and SCADA systems in the process of manufacturing is considered ,with an attempt to explain its methodology, which provides knowledge of the batch by batch process which is undergoing during the manufacturing of concrete blocks in an actual practically working automated batching plant. ISBN-13: 978-1537584836 www.iaetsd.in Proceedings of ICAER-2016 ©IAETSD 201684
  • 2. 2. METHODOLOGY A batching plant, in which the process of manufacturing concrete blocks by combining various ingredients which are accurately weighed, mixing them in sequence and then delivers the mixed concrete to compacting machine were concrete blocks are produced batch by batch. Batching plant has three sub systems  Aggregate weighing systems  Cement weighing  Water computing Aggregate weighing system, this section of plant has 4 bins consisting of crushed dust, sand, and gravel. Each bin is provided with motorized gate which is controlled by the PLC. The motorized gates open and close one after other allows only prescribed weight of the material to fall on the travelling bin which is measured using a load cell by the PLC. The four load cells are used which supports the bucket elevator as shown in fig-1. Fig. 1: Block diagram of concrete batching plant The load given by the load cell is added inside the load cell controller. The load cell controller gives an analog output, using which the PLC will generate counts. After the completion of weighing, the bucket elevator is turned On by the PLC until the load on the bucket elevator reaches zero (indicates that material in the bucket elevator is fallen into mixer). Cement weighing system, consist of cement container tank from which the cement is supplied through screw conveyer using screw motor and using a hopper with load cell controlled by PLC which allows the fixed amount of material to enter into the mixer. Water computing, addition of water is an important process in concrete technology which contributes to the strength of the concrete products. Water should neither be less nor more, hence it is a complex algorithm followed by keeping a track with cement and sand ratio. Automation in any industry mainly deals with protection, control and monitoring and supervision. Hence automation is always provided with auto and manual mode for the safety purpose. Automation of miniature batching plant with the PLC and SCADA systems was taken up and the working of the plant process with batch by batch was achieved by setting up its control and power wiring as shown in the fig -2 Fig. 2: Control and power setup. 3. RESULTS Automation of the concrete batching plant, SCADA provides all the information on its screen of all the process which is taking place in the plant. As shown in fig-3 the SCADA screen provides full setup with all the three process of Aggregate weighing systems, Cement weighing, Water computing and also the mixer of the batching plant. Thus automation with PLC and SCADA in a process manufacturing industries provides flexibility to the systems. ISBN-13: 978-1537584836 www.iaetsd.in Proceedings of ICAER-2016 ©IAETSD 201685
  • 3. Fig. 3: SCADA screen. 4. CONCLUSION By using automation based on PLC and SCADA we can increase productivity and replacing human intervention which reduces operation time and increases consistency output. Hence with the example which is presented in this paper, the automation with PLC and SCADA of a miniature portable concrete batching plant is explained with a working block diagram and SCADA screen of the plant. Acknowledgement The authors wish to thank the managing director of VENJAY AUTOMATION, Mr. R. Venugopal for providing the facilities. The encouragement gratefully acknowledged. REFERENCES [1] Prof. Burali Y. N., “PLC Based Industrial Crane Automation & Monitoring”, ISSN: 2278-4721, Vol. 1, Issue 3 (Sept 2012), PP 01-04. [2] M. Kanmani, J.Nivedha, G.Sundar. “Belt Conveyor Monitoring and Fault DetectingUsing PLC and SCADA”, may 2014. [3] Joanna Marie M. Baroro, Melchizedek I. Alipio, Michael Lawrence T. Huang, Teodoro M. Ricamara, Angelo A. Beltran Jr “Automation of Packaging and Material Handling Using Programmable Logic Controller”,(ISSN: 2277 – 1581),Volume No. 3, Issue No. 6, pp: 767 – 770. 1 June 2014. [4] Chief Editor: ‘Dr.K.R.Harane’, Editor: ‘Prof D.O.Patil’, ‘Prof R.M.Sahu’. , “plc based power plant coal level sensing system using ultrasonic sensor”, International Journal of Innovative Technology & Adaptive Management (IJITAM) ISSN: 2347-3622, Volume-1, Issue-6, March, 2014. [5] Hemant Ahuja, Arika Singh, Saubhagya Tandon, Shreya Srivastava, Sandeep Pal., “ Automatic Filling Management System for Industries”, February 2014. [6] Shashank Lingappa M.1, Vijayavithal Bongale2, Sreerajendra3, “PLC Controlled Low Cost Automatic Packing Machine”,, 2014. [7] Sunil R. Kewate1, S.V. Karmare2, Nehal Sayankar3 and Siddharth Gavhale4. “Automatic Speed Control System by the Color Sensor for Automobiles –An Control System by the Color Sensor for Automobiles –An Innovative Model Based Approach”., ISSN 2250-3234 Volume 4, Number 2 (2014), pp. 223- 230. Mrs. Jayashre Venugopal received her master’s degree from Visvesvaraya Technological University, Bangalore, Karnataka, India and worked as Assistant professor in Electrical and Electronics Engineering. Department, ACSCE, Bangalore. Meghana. M and Asma Anjum has completed their bachelors of engineering in Electrical and Electronics Engineering from RGIT, Bangalore. Dr.P..Pramila received her master’s degree from U.V.C.E,Bangalore, Karnataka, India and her Ph.d from Vinayaka Mission currently working as professor and Head of Electrical and Electronics Engineering, Department, BIT, Bangalore. ISBN-13: 978-1537584836 www.iaetsd.in Proceedings of ICAER-2016 ©IAETSD 201686