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International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 05 Issue: 11 | Nov 2018 www.irjet.net p-ISSN: 2395-0072
© 2018, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 1861
Information Logging and Investigation of Control Framework Utilizing
Diverse Correspondence Convention
Akanksha Awasthi1, Dr. Hari Om Sharan2
M. Tech Student1, Professor2
1,2Dept. Of Computer Science Engineering, Rama University Uttar Pradesh, Kanpur
------------------------------------------------------------------------***-------------------------------------------------------------------------
Abstract - The work is to implement a kind of System that
can Log the System parameters which can help in
monitoring the System performance more accurately and
also a System that has the capacity of interfacing general
interface (external, pc) and communication protocols UART,
CAN, ETHERNET, MVB. The fault data packet logging should
be automatic as well as configurable. System have the
ability to accept a greater number of input channels, with
better resolution and accuracy.
Key Words: INFORMATION LOGGING, INVESTIGATION,
CONTROL FRAMEWORK, LabVIEW, DATA ANALYSIS
1. INTRODUCTION
To measure data independently and storing it periodically
to do analysis of logged data for making good decisions to
improve system performance with less human efforts. To
have log of all sudden changes in reading of different
applied sensors from some rural places or places where
the conditions are adverse for human being to live and
system has to be monitored continuously. To have a log of
all electrical parameters like voltage, current, temperature
of electromechanical system such as Locomotive and store
these real-time values in flash device.
With advances in processor and wireless communication
technologies, sensor networks area unit used everywhere
inside the future life. Home automation networks area unit
one among the nice environments that detector networks
and shopper physical science technologies are
incorporated. within the home automation networks,
several sensors distributed within the house collect
various physical information like temperature, humidity,
motion, and light to produce information to the HVAC
(Heating, Ventilating, and Air Conditioning) system. At the
simplest level, information acquisition are often
accomplished manually using paper and pencil, recording
readings from a multimeter or the other instrument. For a
few applications this type of data acquisition is also
adequate. However, information recording applications
that require sizable quantity of knowledge readings where
very frequent recordings area unit necessary should
embrace instruments or microcontrollers to amass and
record information precisely (Rigby and Dalby, 1995).
Laboratory Virtual Instrument Engineering work table
(LabView™) may be a powerful and versatile
instrumentation and analysis package application tool that
was developed in 1986 by the National Instruments
(National Instruments, 2012). LabView™ has become a
crucial tool in today’s emerging technologies and wide
adopted throughout academia, industry, and government
laboratories because the standard for information
acquisition, instrument management and analysis
software.
2. SYSTEM CONFIGURATION
Design of data acquisition system is demonstrated for
measurement of parameters like temperature, light,
humidity etc. by exploit information exploitation totally
different {completely different} sensors at different
locations and communicating with the user using
ATmega16 AVR microcontroller. System description is
divided into two parts, consisting of hardware and
software description.
2.2 SOFTWARE IMPLEMENTATION
LabVIEW is being employed to style program codes to
browse, monitor and show method parameters for real
time information acquisition system. LabVIEW provides a
perfect scope to accomplish computer based research. The
wired together icons to perform simple-to-understand
tasks which make operation given below possible.
 Building an array
 Parsing a string
 Digitalizing an analog voltage
A LabVIEW program includes two windows, called the
Front Panel and the Block Diagram.
2.2.1 THE FRONT PANEL
Once a program is developed, the front panel acts as the
face of a laboratory instrument. Front panel includes
controls and indicators, which are the interactive input and
output terminals of the VI, respectively. Controls are knobs,
push buttons, dials, and other input mechanisms.
Indicators are graphs, LEDs, and other output displays.
Hence the front panel is the program‟s user-interface,
which facilitates the interaction of:
1. Providing inputs to the program,
2. Monitoring outputs from the program as it runs.
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 05 Issue: 11 | Nov 2018 www.irjet.net p-ISSN: 2395-0072
© 2018, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 1862
2.2.2 THE BLOCK DIAGRAM
The actual LabVIEW programming code is exposed within
the block diagram. It contains Lab View‟s well-stocked
libraries of icons that we've got selected throughout the
program development. Each icon stands for a block of
underlying executable code that will a specific helpful
perform. The programming is finished by wiring these
icons properly, so that data flows amongst graphical
pictures to attain a desired function. LabVIEW permits
North American country to hold out state of the art
research including:
 Instrument Control
 Data Acquisition
 Data Analysis
 Data Presentation and Data Storage
3. VIRTUAL INSTRUMENTS (VI)
LabVIEW programs are called Virtual Instruments (VI)
because their appearance and operation imitate physical
instruments, such as oscilloscopes and multi meters. Every
VI uses functions that manipulate input from the program
or other sources and show that data or a lot of it to
alternative files or other computers.
4. HARDWARE IMPLEMENTATION
In the style of real time knowledge acquisition system,
we used several sensors like LDR, temperature sensor, and
humidity sensors that will observe the different
parameters.
4.1 MICROCONTROLLER
Microcontrollers are small and cost effective but self-
contained computer chips used for embedded applications
in industrial and consumer electronics products. In this
system, we have a tendency to ar exploitation ATmega16
microcontroller. The controllers are receiving the data
from different sensors, placed at specific locations and
causation the info to LabVIEW that communicating with
the user. Outputs of the sensors can be provided to
processer directly however during this case, distance is the
constraint, means sensors cannot be placed at far distance
from the processor. It is vital to stay a track of the working
of almost all the automated and semi-automated devices,
be it a washer, an autonomous robot or anything else. This
is achieved by displaying their standing on a small display
module. LCD (Liquid Crystal Display) screen is such a show
module and a 16x2 LCD module is extremely commonly
used. These modules are replacing seven segments and
alternative multi phase LEDs for these functions. The
reasons being: LCDs are economical, easily programmable,
have no limitation of displaying special & even custom
characters (unlike in seven segments), and so on. LCD can
be easily interfaced with a microcontroller to show a
message or status of a device.
4.2 SENSORS
Data Loggers area unit connected to a pc to be launched
and may have their settings modified via software system
specifically designed for this purpose. Once the desired
information has been collected identical code also will be
accustomed transfer data from the logger and show that
information on your display screen. Once this has been
done an electronic copy of the information will be saved or
written out as a tough copy for your records.
 Digital: It is type of sensor are either on or off. Or
sample a switch of pressure pad.
 Analog: Sensors will measure a spread of values. The
dimensions of the voltage the device produces are set
by the dimensions of the Amount that the sensing
element is measured.
 Computer (display unit): Displaying and analyzing the
information by the assistance of software system and
show data that has been recorded on the monitor or on
a printer in an exceedingly variety of various formats
such as:
 Graphs
 Tables
5. ARCHITECTURE OF DATA LOGGER
Figure 1. Architecture of Data Logger
In show data logger architecture which consists arm 32bit
microcontroller which control all operation.in these 10
digital I/Os channels, 10 analog channels at transmitter
side of controller consists Pc interface, external interface.
External communication Interface used to collect the data
from the system is CAN, MVB and Ethernet. The same data
can be collected by the end user through RS-232, RS-485
external interface and also through USB interface which
can be directly saved in the Laptop. The end user can
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 05 Issue: 11 | Nov 2018 www.irjet.net p-ISSN: 2395-0072
© 2018, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 1863
analyze the data to determine results and make decisions
based on the logger data.
The major application protocols used are
Communication Protocols CAN, MVB, ETHERNET – for
extracting or collecting the data from the external system
UART, USB – to communicate to end user.
Flash Programming – for storing the data in external
Flash memory.
6. WORKING OF UART
The technique of UART that is about to transmit from
transmitter side and facts receives from receiver aspect
from an information bus. The information bus is employed
to ship records to the UART with the help of another
device sort of a central processor, memory, or
microcontroller. Data is transferred from the records bus
to the transmission aspect UART in parallel type. When
the transmission UART receives the parallel records from
the information bus, it provides a begin bit, a parity bit,
and a stop bit, making the statistics packet. Next, the
records packet is send serially, bit by bit on the Tx pin. The
receiving UART reads the records packet step by step at its
Rx pin. The receiving UART then converts the statistics
into parallel form and removes the begin bit, parity bit,
and forestall bits. Finally, the receiving aspect UART
transfers the facts packet in parallel to the facts bus at the
receiving stop.
7. CONCLUSION
This paper represents importance of home parameters
monitoring system for home security. Installing home
security systems aren't standing symbols any longer
however rather they need become a great necessity in
today‟s environment.
Employing embedded technology, based on AVR ATmega
16L microcontroller, the Wireless Sensor Node designed
and implemented for development of home monitoring
applications. Use of sensible detector module causes to
reinforce the accuracy and reliability as well. On
inspection of the results, it's found that the wetness
knowledge given by the detector node is accurate.
8. REFERENCES
[1] Rachana Rajpal, Jigneshkumar Patel, Praveena
Kumari, Vipul Panchal, P.K. Chattopadhyay, Harshad
Pujara, Y.C. Saxena “Embedded data acquisition
system with MDSPlus” Fusion Engineering and Design
87 (2012) 2166– 2169
[2] Anindita Bora, Kanak Chandra Sarma,‟ Design of a USB
based Multichannel, Low Cost Data Acquisition System
using PIC Microcontroller‟, International Journal of
Computer Applications (0975 – 8887) Volume 59–
No.6, December 2012.
[3] Nungleppam Monoranjan Singh, Kanak Chandra
Sarma, Nungleppam Gopil Singh, ‟Design and
Development of Low Cost Multi-Channel USB Data
Acquisition System for the Measurement of Physical
Parameters‟, International Journal of Computer
Applications (0975 – 888) Volume 48– No.18, June
2012.
[4] Naveenkumar R, Dr Prasad Krishna. ,‟Low Cost Data
Acquisition and Control using Arduino Prototyping
Platform and LabVIEW‟, International Journal of
Science and Research (IJSR), ISSN: 2319‐7064),
Volume 2 Issue 2, February 2013.
[5] H.S.Murali, M.Meenakshi, ‟Design and Development of
FPGA Based Data Acquisition System for Process
Automation‟, Communications in Control Science and
Engineering (CCSE) Volume 1 Issue 1, January 2013.
[6] K. Tanveer Alam, B. Rama Murthy, Mahammad D.V, U.
Sunitha and P. Thimmaiah,‟ Low Cost Ethernet Based
Data Acquisition System in Linux Platform‟,
International Journal of Engineering and Advanced
Technology (IJEAT), ISSN: 2249 – 8958, Volume-2,
Issue-4, April 2013.
[7] Jigneshkumar J. Patel, Nagaraj Reddy, Praveena
Kumari, Rachana Rajpal, Harshad Pujara, R. Jha and
Praveen Kalappurakkal,‟ Embedded Linux platform
for data acquisition systems‟, posted in ELSEVIER,
Fusion Engineering and Design 89 (2014) 684–688
[8] Suma G S,‟FPGA Based High Speed Data Acquisition
System With Ethernet Interface‟, International Journal
of Advances in Science Engineering and Technology,
ISSN: 2321-9009, Volume- 2, Issue-3, July-2014

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IRJET- Information Logging and Investigation of Control Framework Utilizing Diverse Correspondence Convention

  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 05 Issue: 11 | Nov 2018 www.irjet.net p-ISSN: 2395-0072 © 2018, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 1861 Information Logging and Investigation of Control Framework Utilizing Diverse Correspondence Convention Akanksha Awasthi1, Dr. Hari Om Sharan2 M. Tech Student1, Professor2 1,2Dept. Of Computer Science Engineering, Rama University Uttar Pradesh, Kanpur ------------------------------------------------------------------------***------------------------------------------------------------------------- Abstract - The work is to implement a kind of System that can Log the System parameters which can help in monitoring the System performance more accurately and also a System that has the capacity of interfacing general interface (external, pc) and communication protocols UART, CAN, ETHERNET, MVB. The fault data packet logging should be automatic as well as configurable. System have the ability to accept a greater number of input channels, with better resolution and accuracy. Key Words: INFORMATION LOGGING, INVESTIGATION, CONTROL FRAMEWORK, LabVIEW, DATA ANALYSIS 1. INTRODUCTION To measure data independently and storing it periodically to do analysis of logged data for making good decisions to improve system performance with less human efforts. To have log of all sudden changes in reading of different applied sensors from some rural places or places where the conditions are adverse for human being to live and system has to be monitored continuously. To have a log of all electrical parameters like voltage, current, temperature of electromechanical system such as Locomotive and store these real-time values in flash device. With advances in processor and wireless communication technologies, sensor networks area unit used everywhere inside the future life. Home automation networks area unit one among the nice environments that detector networks and shopper physical science technologies are incorporated. within the home automation networks, several sensors distributed within the house collect various physical information like temperature, humidity, motion, and light to produce information to the HVAC (Heating, Ventilating, and Air Conditioning) system. At the simplest level, information acquisition are often accomplished manually using paper and pencil, recording readings from a multimeter or the other instrument. For a few applications this type of data acquisition is also adequate. However, information recording applications that require sizable quantity of knowledge readings where very frequent recordings area unit necessary should embrace instruments or microcontrollers to amass and record information precisely (Rigby and Dalby, 1995). Laboratory Virtual Instrument Engineering work table (LabView™) may be a powerful and versatile instrumentation and analysis package application tool that was developed in 1986 by the National Instruments (National Instruments, 2012). LabView™ has become a crucial tool in today’s emerging technologies and wide adopted throughout academia, industry, and government laboratories because the standard for information acquisition, instrument management and analysis software. 2. SYSTEM CONFIGURATION Design of data acquisition system is demonstrated for measurement of parameters like temperature, light, humidity etc. by exploit information exploitation totally different {completely different} sensors at different locations and communicating with the user using ATmega16 AVR microcontroller. System description is divided into two parts, consisting of hardware and software description. 2.2 SOFTWARE IMPLEMENTATION LabVIEW is being employed to style program codes to browse, monitor and show method parameters for real time information acquisition system. LabVIEW provides a perfect scope to accomplish computer based research. The wired together icons to perform simple-to-understand tasks which make operation given below possible.  Building an array  Parsing a string  Digitalizing an analog voltage A LabVIEW program includes two windows, called the Front Panel and the Block Diagram. 2.2.1 THE FRONT PANEL Once a program is developed, the front panel acts as the face of a laboratory instrument. Front panel includes controls and indicators, which are the interactive input and output terminals of the VI, respectively. Controls are knobs, push buttons, dials, and other input mechanisms. Indicators are graphs, LEDs, and other output displays. Hence the front panel is the program‟s user-interface, which facilitates the interaction of: 1. Providing inputs to the program, 2. Monitoring outputs from the program as it runs.
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 05 Issue: 11 | Nov 2018 www.irjet.net p-ISSN: 2395-0072 © 2018, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 1862 2.2.2 THE BLOCK DIAGRAM The actual LabVIEW programming code is exposed within the block diagram. It contains Lab View‟s well-stocked libraries of icons that we've got selected throughout the program development. Each icon stands for a block of underlying executable code that will a specific helpful perform. The programming is finished by wiring these icons properly, so that data flows amongst graphical pictures to attain a desired function. LabVIEW permits North American country to hold out state of the art research including:  Instrument Control  Data Acquisition  Data Analysis  Data Presentation and Data Storage 3. VIRTUAL INSTRUMENTS (VI) LabVIEW programs are called Virtual Instruments (VI) because their appearance and operation imitate physical instruments, such as oscilloscopes and multi meters. Every VI uses functions that manipulate input from the program or other sources and show that data or a lot of it to alternative files or other computers. 4. HARDWARE IMPLEMENTATION In the style of real time knowledge acquisition system, we used several sensors like LDR, temperature sensor, and humidity sensors that will observe the different parameters. 4.1 MICROCONTROLLER Microcontrollers are small and cost effective but self- contained computer chips used for embedded applications in industrial and consumer electronics products. In this system, we have a tendency to ar exploitation ATmega16 microcontroller. The controllers are receiving the data from different sensors, placed at specific locations and causation the info to LabVIEW that communicating with the user. Outputs of the sensors can be provided to processer directly however during this case, distance is the constraint, means sensors cannot be placed at far distance from the processor. It is vital to stay a track of the working of almost all the automated and semi-automated devices, be it a washer, an autonomous robot or anything else. This is achieved by displaying their standing on a small display module. LCD (Liquid Crystal Display) screen is such a show module and a 16x2 LCD module is extremely commonly used. These modules are replacing seven segments and alternative multi phase LEDs for these functions. The reasons being: LCDs are economical, easily programmable, have no limitation of displaying special & even custom characters (unlike in seven segments), and so on. LCD can be easily interfaced with a microcontroller to show a message or status of a device. 4.2 SENSORS Data Loggers area unit connected to a pc to be launched and may have their settings modified via software system specifically designed for this purpose. Once the desired information has been collected identical code also will be accustomed transfer data from the logger and show that information on your display screen. Once this has been done an electronic copy of the information will be saved or written out as a tough copy for your records.  Digital: It is type of sensor are either on or off. Or sample a switch of pressure pad.  Analog: Sensors will measure a spread of values. The dimensions of the voltage the device produces are set by the dimensions of the Amount that the sensing element is measured.  Computer (display unit): Displaying and analyzing the information by the assistance of software system and show data that has been recorded on the monitor or on a printer in an exceedingly variety of various formats such as:  Graphs  Tables 5. ARCHITECTURE OF DATA LOGGER Figure 1. Architecture of Data Logger In show data logger architecture which consists arm 32bit microcontroller which control all operation.in these 10 digital I/Os channels, 10 analog channels at transmitter side of controller consists Pc interface, external interface. External communication Interface used to collect the data from the system is CAN, MVB and Ethernet. The same data can be collected by the end user through RS-232, RS-485 external interface and also through USB interface which can be directly saved in the Laptop. The end user can
  • 3. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 05 Issue: 11 | Nov 2018 www.irjet.net p-ISSN: 2395-0072 © 2018, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 1863 analyze the data to determine results and make decisions based on the logger data. The major application protocols used are Communication Protocols CAN, MVB, ETHERNET – for extracting or collecting the data from the external system UART, USB – to communicate to end user. Flash Programming – for storing the data in external Flash memory. 6. WORKING OF UART The technique of UART that is about to transmit from transmitter side and facts receives from receiver aspect from an information bus. The information bus is employed to ship records to the UART with the help of another device sort of a central processor, memory, or microcontroller. Data is transferred from the records bus to the transmission aspect UART in parallel type. When the transmission UART receives the parallel records from the information bus, it provides a begin bit, a parity bit, and a stop bit, making the statistics packet. Next, the records packet is send serially, bit by bit on the Tx pin. The receiving UART reads the records packet step by step at its Rx pin. The receiving UART then converts the statistics into parallel form and removes the begin bit, parity bit, and forestall bits. Finally, the receiving aspect UART transfers the facts packet in parallel to the facts bus at the receiving stop. 7. CONCLUSION This paper represents importance of home parameters monitoring system for home security. Installing home security systems aren't standing symbols any longer however rather they need become a great necessity in today‟s environment. Employing embedded technology, based on AVR ATmega 16L microcontroller, the Wireless Sensor Node designed and implemented for development of home monitoring applications. Use of sensible detector module causes to reinforce the accuracy and reliability as well. On inspection of the results, it's found that the wetness knowledge given by the detector node is accurate. 8. REFERENCES [1] Rachana Rajpal, Jigneshkumar Patel, Praveena Kumari, Vipul Panchal, P.K. Chattopadhyay, Harshad Pujara, Y.C. Saxena “Embedded data acquisition system with MDSPlus” Fusion Engineering and Design 87 (2012) 2166– 2169 [2] Anindita Bora, Kanak Chandra Sarma,‟ Design of a USB based Multichannel, Low Cost Data Acquisition System using PIC Microcontroller‟, International Journal of Computer Applications (0975 – 8887) Volume 59– No.6, December 2012. [3] Nungleppam Monoranjan Singh, Kanak Chandra Sarma, Nungleppam Gopil Singh, ‟Design and Development of Low Cost Multi-Channel USB Data Acquisition System for the Measurement of Physical Parameters‟, International Journal of Computer Applications (0975 – 888) Volume 48– No.18, June 2012. [4] Naveenkumar R, Dr Prasad Krishna. ,‟Low Cost Data Acquisition and Control using Arduino Prototyping Platform and LabVIEW‟, International Journal of Science and Research (IJSR), ISSN: 2319‐7064), Volume 2 Issue 2, February 2013. [5] H.S.Murali, M.Meenakshi, ‟Design and Development of FPGA Based Data Acquisition System for Process Automation‟, Communications in Control Science and Engineering (CCSE) Volume 1 Issue 1, January 2013. [6] K. Tanveer Alam, B. Rama Murthy, Mahammad D.V, U. Sunitha and P. Thimmaiah,‟ Low Cost Ethernet Based Data Acquisition System in Linux Platform‟, International Journal of Engineering and Advanced Technology (IJEAT), ISSN: 2249 – 8958, Volume-2, Issue-4, April 2013. [7] Jigneshkumar J. Patel, Nagaraj Reddy, Praveena Kumari, Rachana Rajpal, Harshad Pujara, R. Jha and Praveen Kalappurakkal,‟ Embedded Linux platform for data acquisition systems‟, posted in ELSEVIER, Fusion Engineering and Design 89 (2014) 684–688 [8] Suma G S,‟FPGA Based High Speed Data Acquisition System With Ethernet Interface‟, International Journal of Advances in Science Engineering and Technology, ISSN: 2321-9009, Volume- 2, Issue-3, July-2014