- 8.1: What is the Nyquist rate? What are its characteristics?
- 8.2: Describe the discrete equivalent design process.
- 8.3: Describe how to arrive at a D(z) if the sample rate is 30 BW.
- 8.4: For a system with a 1 rad/sec bandwidth, describe the consequences ...
- 8.5: Give two advantages for selecting a digital processor rather than a...
- 8.6: Give two disadvantages for selecting a digital processor rather tha...
- 8.7: Describe how to arrive at a D(z) if the sample rate is 5 BW.
- 8.8.1: The z-transform of a discrete-time filter h(k) at a 1 Hertz sample ...
- 8.8.2: Use the z-transform to solve the difference equation y(k) 3 y(k 1) ...
- 8.8.3: The one-sided z-transform is defined as (a) Show that the one-sided...
- 8.8.4: Prove the seven properties of the s-plane-to-z-plane mapping listed...
- 8.8.5: A unity feedback system has an open-loop transfer function given by...
- 8.8.6: The following transfer function is a lead network designed to add a...
- 8.8.7: The following transfer function is a lag network designed to introd...
- 8.8.8: For the system shown in Fig. 8.20, find values for K, TD, and TI so...
- 8.8.9: Consider the system configuration shown in Fig. 8.21, where (a) Fin...
- 8.8.11: It is possible to suspend a mass of magnetic material by means of a...
- 8.8.12: Repeat 5.27 in Chapter 5 by constructing discrete root loci and per...
- 8.8.13: Design a digital controller for the antenna servo system shown in F...
- 8.8.14: The system is to be controlled with a digital controller having a s...
- 8.8.15: The transfer function for pure derivative control is where the pole...

# Solutions for Chapter 8: Digital Control

## Full solutions for Feedback Control of Dynamic Systems | 6th Edition

ISBN: 9780136019695

Solutions for Chapter 8: Digital Control

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