Instrumentation And Control Systems By W Bolton Pdf 30
Instrumentation and Control Systems by W Bolton PDF 30
Instrumentation and Control Systems by W Bolton PDF 30
Instrumentation and control systems are essential for the operation and automation of various industrial processes, such as manufacturing, power generation, chemical engineering, and biotechnology. They involve the measurement, monitoring, and manipulation of physical variables, such as temperature, pressure, flow, level, force, and speed, using sensors, transducers, controllers, actuators, and communication devices.
instrumentation and control systems by w bolton pdf 30
One of the most popular and comprehensive textbooks on this subject is Instrumentation and Control Systems by William Bolton, a former lecturer at the University of Bolton in the UK. The book covers the basic principles of modern instrumentation and control systems, including examples of the latest devices, techniques, and applications. It is suitable for undergraduate students in engineering and technology, as well as professionals and technicians who want to update their knowledge and skills.
The book is divided into 13 chapters, each with a summary, review questions, problems, case studies, and references. The chapters are as follows:
Chapter 1: Measurement Systems: This chapter introduces the concepts of measurement systems, such as accuracy, precision, resolution, range, sensitivity, linearity, hysteresis, repeatability, calibration, error analysis, and standards.
Chapter 2: Instrumentation System Elements: This chapter describes the main elements of an instrumentation system, such as sensors, transducers, signal conditioning circuits, data acquisition systems (DAQ), display devices, recorders, and printers.
Chapter 3: Instrumentation Case Studies: This chapter presents some practical examples of instrumentation systems in various fields, such as temperature measurement in a furnace, flow measurement in a pipe network, level measurement in a tank farm, force measurement in a crane load cell, and speed measurement in a car.
Chapter 4: Control Systems: This chapter explains the basic principles of control systems, such as open-loop and closed-loop control, feedback and feedforward control, proportional-integral-derivative (PID) control, on-off control, bang-bang control, and fuzzy logic control.
Chapter 5: Process Controllers: This chapter discusses the types and characteristics of process controllers, such as pneumatic controllers, electronic controllers, digital controllers, smart controllers, distributed control systems (DCS), supervisory control and data acquisition (SCADA) systems, and programmable logic controllers (PLCs).
Chapter 6: Correction Elements: This chapter examines the types and functions of correction elements, such as valves, solenoids, relays, motors, servos, stepper motors, linear actuators, hydraulic cylinders, pneumatic cylinders, and piezoelectric actuators.
Chapter 7: PLC Systems: This chapter introduces the structure and operation of PLCs, such as input/output modules, central processing unit (CPU), memory, power supply, programming devices, ladder logic programming, timers, counters, arithmetic operations, comparison operations, logic operations, shift registers, sequencers, subroutines, interrupts, analog input/output modules, PID modules, communication modules, and PLC networks.
Chapter 8: System Models: This chapter presents the mathematical models of dynamic systems, such as first-order systems, second-order systems, higher-order systems, linear systems, nonlinear systems, time-invariant systems, time-varying systems, continuous-time systems, discrete-time systems, transfer functions, block diagrams,
- state-space models, - frequency-domain models, - Laplace transform, - z-transform, - and system identification.
Chapter 9: System Response: This chapter analyzes the response of dynamic systems, such as transient response, steady-state response, stability, root locus, frequency response, Bode plots, Nyquist plots, and Nichols charts.
Chapter 10: System Design: This chapter explores the design of control systems, such as performance specifications, controller design methods, compensator design methods, optimal control methods, adaptive control methods, robust control methods, and digital control methods.
Chapter 11: Control System Case Studies: This chapter illustrates some practical examples of control systems in various fields, such as temperature control in a water bath, speed control in a DC motor, position control in a robotic arm, pressure control in a pneumatic system, level control in a coupled tank system, and flight control in an aircraft.
Chapter 12: Instrumentation and Control Systems in Biomedical Engineering: This chapter introduces some applications of instrumentation and control systems in biomedical engineering, such as biosensors, biopotential electrodes, electrocardiography (ECG), electromyography (EMG), electroencephalography (EEG), blood pressure measurement, blood flow measurement, respiratory measurement, temperature measurement, pulse oximetry, ultrasound imaging, magnetic resonance imaging (MRI), computed tomography (CT), positron emission tomography (PET), nuclear medicine, radiation therapy, pacemakers, artificial organs, prosthetics, and biofeedback.
Chapter 13: Instrumentation and Control Systems in Renewable Energy: This chapter introduces some applications of instrumentation and control systems in renewable energy, such as solar energy, wind energy, hydro energy, tidal energy, wave energy, geothermal energy, biomass energy, hydrogen energy, fuel cells, and smart grids.
The book is available in PDF format for download from the following link. The file size is about 30 MB and the page count is 672. The book is also available in hardcover and paperback editions from various online and offline retailers.
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