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Problem 4.2 (Process systems analysis and control)
 
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Submitted by: Leih Anne M. Villacarlos
Process and System Analysis Control - Problem 5.10
 
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Sorry for the watermark my video editor expired :(
Views: 969 mheriiclaii
Response of First Order Systems Problem 4.12
 
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Answer to Problem 4.12 of Process Systems Analysis and Control by Coughanowr and LeBlanc
Intro to Control - 6.1 State-Space Model Basics
 
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Explanation of state-space modeling of systems for controls.
Views: 246219 katkimshow
Control Systems Lectures - Transfer Functions
 
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I'm writing a book on the fundamentals of control theory! Get the book-in-progress with any contribution for my work on Patreon - https://www.patreon.com/briandouglas This lecture describes transfer functions and how they are used to simplify modeling of dynamic systems. I will be loading a new video each week and welcome suggestions for new topics. Please leave a comment or question below and I will do my best to address it. Thanks for watching! Don't forget to subscribe! Follow me on Twitter @BrianBDouglas!
Views: 359490 Brian Douglas
Non Interacting system
 
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This video provides the derivation of Non interacting system transfer function.
Interacting System
 
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This video provides the derivation of Interacting system transfer function
Mod-01 Lec-01 Lecture-01-Introduction to Process Control
 
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Process Control and Instrumentation by Prof.A.K.Jana,prof.D.Sarkar Department of Chemical Engineering,IIT Kharagpur. For more details on NPTEL visit http://nptel.iitm.ac.in
Views: 198277 nptelhrd
What is PROCESS CONTROL? What does PROCESS CONTROL mean? PROCESS CONTROL meaning & explanation
 
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What is PROCESS CONTROL? What does PROCESS CONTROL mean? PROCESS CONTROL meaning - PROCESS CONTROL definition - PROCESS CONTROL explanation. Source: Wikipedia.org article, adapted under https://creativecommons.org/licenses/by-sa/3.0/ license. Process control is an engineering discipline that deals with architectures, mechanisms and algorithms for maintaining the output of a specific process within a desired range. For instance, the temperature of a chemical reactor may be controlled to maintain a consistent product output. Process control is extensively used in industry and enables mass production of consistent products from continuously operated processes such as oil refining, paper manufacturing, chemicals, power plants and many others. Process control enables automation, by which a small staff of operating personnel can operate a complex process from a central control room. Process control may either use feedback or it may be open loop. Control may also be continuous (automobile cruise control) or cause a sequence of discrete events, such as a timer on a lawn sprinkler (on/off) or controls on an elevator (logical sequence). A thermostat on a heater is an example of control that is on or off. A temperature sensor turns the heat source on if the temperature falls below the set point and turns the heat source off when the set point is reached. There is no measurement of the difference between the set point and the measured temperature (e.g. no error measurement) and no adjustment to the rate at which heat is added other than all or none. A familiar example of feedback control is cruise control on an automobile. Here speed is the measured variable. The operator (driver) adjusts the desired speed set point (e.g. 100 km/hr) and the controller monitors the speed sensor and compares the measured speed to the set point. Any deviations, such as changes in grade, drag, wind speed or even using a different grade of fuel (for example an ethanol blend) are corrected by the controller making a compensating adjustment to the fuel valve open position, which is the manipulated variable. The controller makes adjustments having information only about the error (magnitude, rate of change or cumulative error) although settings known as tuning are used to achieve stable control. The operation of such controllers is the subject of control theory. A commonly used control device called a programmable logic controller, or a PLC, is used to read a set of digital and analog inputs, apply a set of logic statements, and generate a set of analog and digital outputs. For example, if an adjustable valve were used to hold level in a tank the logical statements would compare the equivalent pressure at depth setpoint to the pressure reading of a sensor below the normal low liquid level and determine whether more or less valve opening was necessary to keep the level constant. A PLC output would then calculate an incremental amount of change in the valve position. Larger more complex systems can be controlled by a Distributed Control System (DCS) or SCADA system.
Views: 8698 The Audiopedia
A&B Process Systems Campus Tour
 
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Take a virtual tour of the A&B Process Systems Campus, located in Stratford, WI
Views: 4306 A&B Process Systems
ChE 171 Sample Problem
 
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Solution of the Problem 5.5 taken from the book "Process Systems Analysis and Control" Third Edition by Donald R. Coughanowr and Steven E. LeBlanc
Views: 595 Michael John Pilota
Frequency response analysis in control system engineering by engineering funda
 
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In this video, i have explained Frequency response analysis with following aspects: 1. Frequency response analysis 2. Basics of Frequency response analysis 3. Definition of Frequency response analysis 4. Parameter of Frequency response analysis 5. Derivation of Frequency response analysis For free materials of different engineering subjects use my android application named Engineering Funda with following link: https://play.google.com/store/apps/details?id=com.viaviapp.ENG_Funda Above Android application of Engineering Funda provides following services: 1. Free Materials (GATE exam, Class Notes, Interview questions) 2. Technical Forum 3. Technical discussion 4. Inquiry For more details and inquiry on above topic visit website of Engineering Funda with given link: http://www.engineeringfunda.co.in Engineering Funda channel is all about Engineering and Technology. Here this video is a part of Control Engineering . . . . . . . . . . . . . . . . #Control Engineering, #Control System, #Control System Engineering
Views: 1742 Engineering Funda
process capability and process capability index
 
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In this video, I explain the concepts of process capability and process capability index.
Views: 151712 Saravanan Kuppusamy
Statistical Process Control and Trending Analysis
 
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There are several methods to trend data to highlight both the preventative and corrective nature of the system. Plotting data over time is a good visual method to identify trends. Statistical Process Control (SPC) techniques such as control charts give an objective method to identify trends. A discussion of out of trend versus out of specification will be covered. For More Information Contact - Organization: NetZealous BDA GlobalCompliancePanel Website: http://www.globalcompliancepanel.com/ Email: [email protected] Help us caption & translate this video! http://amara.org/v/OXHK/
Process Hazards Analysis and Control Philosophy
 
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The following presentation reviews the principles of Process Hazard Analysis evaluation and Control Philosophy development. This training is part of our Process Safety Management Basics series and is a supplement to our Oil Field Basics training series.
Views: 2316 TJ Cross Engineers
Interaction Analysis and Multi-loop Control (contd.)
 
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Advanced Process Control by Prof.Sachin C.Patwardhan,Department of Chemical Engineering,IIT Bombay.For more details on NPTEL visit http://nptel.ac.in
Views: 1985 nptelhrd
time domain analysis of first order systems | Control systems |
 
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in this video lecture time domain analysis in control systems concept explained - impulse and step response of first order systems concept explained Please Like, share and subscribe: https://www.youtube.com/channel/UCKS34cSMNaXaySe2xgXH-3A for more related videos
Views: 2428 Education 4u
Time domain analysis or time response analysis in control system engineering by engineering funda
 
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In this video, i have explained Time domain analysis or time response analysis with following aspects: 1. Time response Analysis 2. Basics of Time response Analysis 3. Derivation of Time Response Analysis 4. Advantages of Time response Analysis For free materials of different engineering subjects use my android application named Engineering Funda with following link: https://play.google.com/store/apps/details?id=com.viaviapp.ENG_Funda Above Android application of Engineering Funda provides following services: 1. Free Materials (GATE exam, Class Notes, Interview questions) 2. Technical Forum 3. Technical discussion 4. Inquiry For more details and inquiry on above topic visit website of Engineering Funda with given link: http://www.engineeringfunda.co.in Engineering Funda channel is all about Engineering and Technology. Here this video is a part of Control Engineering . . . . . . . . . . . . . . . . #Control Engineering, #Control System, #Control System Engineering
Views: 1513 Engineering Funda
Impulse Response Problem
 
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A simple detailed solution for Problem 4.15 from 3rd edition PROCESS SYSTEMS ANALYSIS AND CONTROL by LeBlanc and Coughanowr
Views: 380 Gen Bandala
First Order Systems in Series-Interacting and Non Interacting system with Examples-PDC
 
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This video provides the detailed explanation of First Order Systems in Series i.e. Interacting and Non interacting system with Examples
Systems Analysis & Design - Ch 9 - UI Design Process
 
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This video explains the process used to design a user interface. The video corresponds to Chapter 9 of "Systems Analysis & Design", 6th Ed. by Dennis, Wixom, & Roth.
Views: 849 Jordan Barlow
Control System Lectures - Bode Plots, Introduction
 
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I'm writing a book on the fundamentals of control theory! Get the book-in-progress with any contribution for my work on Patreon - https://www.patreon.com/briandouglas This lecture is an introduction to frequency response methods, and in particular describes the Bode plot. I go through how it is generated and why we use it to visualize the frequency response of a system across the entire frequency spectrum. Errata: 8:31 - I should not have combined both time domain and s-domain in a single equation. 9:31 - it should be 2 - j*1/omega, I correct it at 9:55 but don't let it confuse you! I will be loading a new video each week and welcome suggestions for new topics. Please leave a comment or question below and I will do my best to address it. Thanks for watching! Don't forget to subscribe! Follow me on Twitter @BrianBDouglas!
Views: 513988 Brian Douglas
Frequency Domain Specifications - Frequency Response Analysis - Control Systems
 
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Frequency Domain Specifications Video Lecture of Chapter Frequency Response Analysis in Control Systems for EXTC, Instrumentation, Electronics & Electrical Engineering Students. Watch Previous Videos of Chapter Frequency Response Analysis:- 1) Nyquist Plot - Problem 5 - Frequency Response Analysis - Control Systems - https://youtu.be/-RvxZa1a56w 2) Nyquist Plot - Problem 6 - Frequency Response Analysis - Control Systems - https://youtu.be/DqvRCWcIilU Watch Next Videos of Chapter Frequency Response Analysis:- 1) Bode Plot - Problem 1 - Frequency Response Analysis - Control Systems - https://www.youtube.com/watch?v=N9wxx6JPR_w 2) Bode Plot - Problem 2 - Frequency Response Analysis - Control Systems - https://www.youtube.com/watch?v=ezyYqKBig1I Access the complete Playlist of Control Systems:- https://goo.gl/GQrMXf Access the complete Playlist of Chapter Frequency Response Analysis:- http://gg.gg/Frequency-Response-Analysis Subscribe to Ekeeda Channel to access more videos http://gg.gg/Subscribe-Now #ControlSystems #OnlineEngineeringVideoLectures #EngineeringLectures #DegreeEngineeringLectures #ElectricalNetworks #EkeedaOnlineLectures #EkeedaVideoLectures #EkeedaVideoTutorial Thanks For Watching. You can follow and Like us on following social media. Website - http://ekeeda.com Parent Channel - https://www.youtube.com/c/ekeeda Facebook - https://www.facebook.com/ekeeda Twitter - https://twitter.com/Ekeeda_Video LinkedIn- https://www.linkedin.com/company-beta/13222723/ Instgram - https://www.instagram.com/ekeeda_/ Pinterest - https://in.pinterest.com/ekeedavideo You can reach us on [email protected] Happy Learning : )
Views: 540 Ekeeda
Example on frequency response analysis in control system engineering by engineering funda
 
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In this video, i have explained Example on frequency response analysis by following out lines. 1. Frequency Response Analysis 2. Example on frequency response analysis 3. Calculation of Resonant Frequency 4. Calculation of Bandwidth 5. Calculation of Resonant Peak For free materials of different engineering subjects use my android application named Engineering Funda with following link: https://play.google.com/store/apps/details?id=com.viaviapp.ENG_Funda Above Android application of Engineering Funda provides following services: 1. Free Materials (GATE exam, Class Notes, Interview questions) 2. Technical Forum 3. Technical discussion 4. Inquiry For more details and inquiry on above topic visit website of Engineering Funda with given link: http://www.engineeringfunda.co.in Engineering Funda channel is all about Engineering and Technology. Here this video is a part of Control Engineering. . . . . . . . . . . . . . . . . #Control Engineering, #Control System, #Control System Engineering
Views: 931 Engineering Funda
What's SPC (Statistical Process Control) and MSA (Measurement System Analysis)?
 
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Today's theme is SPC and MSA. SPC stands for Statistical Process Control. MSA stands for Measurement System Analysis. Both of those are usually used in the manufacturing industry, but one of my goals is to evolve these concepts to be used by people in the service industry or by regular business people. A typical tool that is used in SPC is one of the 7 QC Tools, the Control Chart. Also, A tool that is mainly used in MSA is the Gage R&R. Before SPC was developed, all completed products used to be inspected to see if any piece had defects. If so, the piece was excluded. However, it took time and cost a lot. Also, their defect rates were very high. On the other hand, with SPC, even during manufacturing, you record and monitor CTQ (Critical To Quality) data, which has a strong effect on the completed products' quality, and you can find and solve process issues before making defective products. It aims to not allow defects to be produced. Now how can we apply these concepts to our service operation improvement? I know it’s not easy. You'll find that out in this video too. (Process Improvement Methodology for Service Operations, PMP, Project Management, Lean Six Sigma Japan, Six Sigma Excel: Episode 36) <<Read this video's transcript in my blog.>> http://econoshift.com/en/spc-and-msa-2/ << Related Videos >> Dr. Edwards Deming - The Father of Quality Management in Japan 【Kaizen Hero Biographies】 https://youtu.be/hjv-j9dj3HU PDCA Cycle - How to Utilize Data Analyses in Service Operations https://youtu.be/rFBzsHepJSk DMAIC: Measure Phase - How to set your Project's KPI (CTQ). 【Benchmark】 https://youtu.be/AVAVFwIvn6c << About this Channel >> "Learn world-class Kaizen and improve your work and yourself." This channel is for people who love their jobs, and want to improve their work and themselves. << SUBSCRIBE: (Click the link below.) >> http://www.youtube.com/subscription_center?add_user=UC40p9DIj6R1noH4-mx88oyg << Video Upload Schedule >> A new video is uploaded bi-weekly at 7:30 am EST, Sundays. Please subscribe and share the journey together. << Let's Connect! >> Mike Negami's Blog Site: http://econoshift.com/en/ Free Excel Template Downloads: http://econoshift.com/ja/free-downloads/ Facebook Page: https://www.facebook.com/Econoshift/
Views: 6267 econoshift.com
Physical Examples of First Order Systems
 
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Solution to the Problem 5.4 of Process Systems Analysis and Control by Donald R. Coughanowr and Steven E. LeBlanc This video is a class requirement for ChE 171 - Chemical Process Dynamics and Control
Views: 2216 iammaric
Control Systems Analysis
 
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Control Systems Analysis Final Project, Fall 2014 Andrew O'Donnell Ryan Halgren Michael Denson
Views: 4099 Michael D
Root Locus Technique - Problem 1 - Root Locus Analysis - Control Systems
 
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Problem 1 on Root Locus Technique Video Lecture of Chapter Root Locus Analysis in Control Systems for EXTC, Instrumentation, Electronics & Electrical Engineering Students. Watch Previous Videos of Chapter Root Locus Analysis:- 1) Rules to Plot Root Locus - Root Locus Analysis - Control Systems - https://www.youtube.com/watch?v=72y_uQ8A0e8 2) Addition of Open Loop Poles and Zeros - Root Locus Analysis - Control Systems - https://www.youtube.com/watch?v=e51Zj8aQW08 Watch Next Videos of Chapter Root Locus Analysis:- 1) Root Locus Technique - Problem 2 - Root Locus Analysis - Control Systems - https://www.youtube.com/watch?v=G2srfsmlP6o 2) Root Locus Technique - Problem 3 - Root Locus Analysis - Control Systems - https://youtu.be/Iu1OlIS1Pvc Access the complete Playlist of Control Systems:- https://goo.gl/GQrMXf Access the complete Playlist of Chapter Root Locus Analysis:- http://gg.gg/Root-Locus-Analysis Subscribe to Ekeeda Channel to access more videos http://gg.gg/Subscribe-Now #ControlSystems #OnlineEngineeringVideoLectures #EngineeringLectures #DegreeEngineeringLectures #ElectricalNetworks #EkeedaOnlineLectures #EkeedaVideoLectures #EkeedaVideoTutorial Thanks For Watching. You can follow and Like us on following social media. Website - http://ekeeda.com Parent Channel - https://www.youtube.com/c/ekeeda Facebook - https://www.facebook.com/ekeeda Twitter - https://twitter.com/Ekeeda_Video LinkedIn- https://www.linkedin.com/company-beta/13222723/ Instgram - https://www.instagram.com/ekeeda_/ Pinterest - https://in.pinterest.com/ekeedavideo You can reach us on [email protected] Happy Learning : )
Views: 464 Ekeeda
Frequency Domain Analysis | Part-1 | Control System |
 
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-~-~~-~~~-~~-~- Please watch: "Phase Margin and Gain Margin | Control System | Gate | IES | BARC| ISRO" https://www.youtube.com/watch?v=QPMwbgB4fro -~-~~-~~~-~~-~-
Views: 17993 Flyhigh Tutorials
behaviour of first order system pure capacitive system
 
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Concepts in Chemical Engineering - RAJ MUSALE
Views: 319 Raj Musale
Problem 4.3 Impulse Function Problem
 
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This is a requirement in our Process Control Class. The problem is from Process Systems and Analysis 3rd edition. Hope makatabang :)
Views: 83 Barbie Ann Jurolan

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