PROCESS CONTROL & INSTRUMENTATION

Process control is the study and application of automatic control in the field of chemical engineering. The primary objective of process control is to maintain a process at the desired operating conditions, safely and efficiently, while satisfying environmental and product quality requirements. Proper application of process control can actually improve the safety and profitability of a process.

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Description

Process control is the study and application of automatic control in the field of chemical engineering. The primary objective of process control is to maintain a process at the desired operating conditions, safely and efficiently, while satisfying environmental and product quality requirements. Proper application of process control can actually improve the safety and profitability of a process.    Even though rapidly decreasing costs of digital devices and increasing computer speed have enabled high‐ performance measurement and control systems, it is not an easy task to achieve this because modern plants tend to be difficult to operate due to high complexity and highly integrated process units.

Curriculum for this subject
53 Lessons 11:20:13 Hours
INTRODUCTION
6 Lessons 00:50:27 Hours
  • Video 00:06:12
  • WHY PROCESS CONTROL 00:09:06
  • OBJECTIVE OF PROCESS CONTROL 00:09:59
  • FUNCTIONS OF PROCESS CONTROL SYSTEM-DISTURBANCE REJECTION 00:08:39
  • FUNCTIONS OF PROCESS CONTROL SYSTEM-STABLIZE THE PROCESS 00:07:10
  • OPTIMIZATION OF PROCESS, CLASSIFICATION OF VARIABLE WITH EXAMPLE 00:09:21
  • INTRODUCTION 00:04:43
  • TRANSDUCERS 00:10:29
  • SENSORS-PRESSURE MEASUREMENT 00:14:08
  • SENSORS-TEMPERATURE MEASUREMENT 00:26:58
  • SENSORS-FLOW,LEVEL,COMPOSITION VISCOSITY 00:10:02
  • INTRODUCTION OF MODELLING 00:08:01
  • WHITE BOX MODELLING, MATHEMATICAL BALANCE 00:09:10
  • LAPLACE TRANSFORM WITH EXAMPLES 00:45:43
  • INTRODUCTION 00:08:30
  • EXAMPLES OF FIRST ORDER LIQUID LEVEL SYSTEM 00:09:29
  • LINEARISATION 00:10:52
  • PURE CAPACITOR 00:06:07
  • MIXING PROCESS & THERMOMETER 00:14:24
  • TRANSIENT PROCESS-STEP CHANGE WITH EXAMPLES 00:25:55
  • TRANSIENT PROCESS-IMPULSE & RAMP 00:09:06
  • TRANSIENT PROCESS-SINUSOIDAL 00:14:58
  • TRANSIENT PROCESS- DEAD TIME & QUANTITATIVE NATURE OF ROOTS 00:11:02
  • INTRODUCTION OF SECOND ORDER SYSTEM AND EXAMPLES 00:23:49
  • MULTICAPACITY PROCESS-NON-INTERACTING 00:06:21
  • MULTICAPACITY PROCESS-INTERACTING 00:09:56
  • INHERENTLY SECOND ORDER 00:06:51
  • CLOSE LOOP TRANSFER FUNCTION & EXAMPLES 00:22:09
  • P, PI, PID 00:20:13
  • VALVE SIZING 00:09:36
  • CHARACTERISTICS 00:05:58
  • EXAMPLES 00:06:29
  • PROPORTIONAL ACTION 00:09:32
  • INTEGRAL ACTION 00:18:25
  • DERIVATIVE ACTION 00:05:13
  • EXAMPLES 00:13:57
  • STABILITY 00:08:30
  • EXAMPLES 00:06:41
  • FREQUENCY RESPONSE ANALYSIS 00:15:29
  • BODE PLOT 00:15:17
  • BODE PLOT-EXAMPLES 00:12:23
  • BODE STABILITY CRITERIA 00:08:19
  • GAIN MARGIN & PHASE MARGIN 00:04:39
  • GAIN MARGIN & PHASE MARGIN_EXAMPLES 00:07:38
  • CONTROLLER TUNING 00:08:46
  • CONTROLLER TUNING_EXAMPLES 00:08:30
  • INVERSE RESPONSE 00:13:48
  • Video 00:16:20
  • Video 00:09:30
  • Video 00:11:26
  • FIRST ORDER SYSTEM 00:42:29
  • CLOSED LOOP SYSTEM 00:24:05
  • STABILITY 00:17:50
₹3000 ₹5000
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Includes:
  • 15 Topics
  • 53 Lessons
  • 11:20:13 Hours On demand videos
  • One year access
  • Access on pc mobile and tv
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  • Wed, 11-Aug-2021
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  • Thu, 09-Nov-2023
₹3000 ₹5000
Buy now
Includes:
  • 15 Topics
  • 53 Lessons
  • 11:20:13 Hours On demand videos
  • One year access
  • Access on pc mobile and tv