AGC DSP AGC DSP Professor A G Constantinides 1 Transformation from lowpass to another filter.

Slides:



Advertisements
Similar presentations
Chapter 8. FIR Filter Design
Advertisements

Active Filters: concepts All input signals are composed of sinusoidal components of various frequencies, amplitudes and phases. If we are interested in.
FREQUENCY SELECTIVE CIRCUITS
Digital Signal Processing IIR Filter IIR Filter Design by Approximation of Derivatives Analogue filters having rational transfer function H(s) can be.
Nonrecursive Digital Filters
Signal and System IIR Filter Filbert H. Juwono
IIR FILTERS DESIGN BY POLE-ZERO PLACEMENT
CHAPTER 7 Digital Filter Design Wang Weilian School of Information Science and Technology Yunnan University.
ELEN 5346/4304 DSP and Filter Design Fall Lecture 8: LTI filter types Instructor: Dr. Gleb V. Tcheslavski Contact:
Microwave Devices E511 Lecture 13 Amr Al.Awamry. Agenda Filter Implementation.
Filtering Filtering is one of the most widely used complex signal processing operations The system implementing this operation is called a filter A filter.
Infinite Impulse Response (IIR) Filters
Hossein Sameti Department of Computer Engineering Sharif University of Technology.
Digital Signal Processing – Chapter 11 Introduction to the Design of Discrete Filters Prof. Yasser Mostafa Kadah
LINEAR-PHASE FIR FILTERS DESIGN
Design of planar filters
IIR Filter Design: Basic Approaches Most common approach to IIR filter design: (1)Convert specifications for the digital filter into equivalent specifications.
CHAPTER 4 Image Enhancement in Frequency Domain
Announcements Assignment 0 solutions posted Assignment 1 due on Thursday DC circuit Lab reports due to Sajan today and tomorrow This week’s lab – AC circuits.
EEE 194RF_ L121 ELEC 412 RF & Microwave Engineering Fall 2004 Lecture 12.
What is a filter Passive filters Some common filters Lecture 23. Filters I 1.
ACTIVE FILTER CIRCUITS. DISADVANTAGES OF PASSIVE FILTER CIRCUITS Passive filter circuits consisting of resistors, inductors, and capacitors are incapable.
Filters in the Frequency Domain.  Image Smoothing Using Frequency Domain Filters: ◦ Ideal Lowpass Filters ◦ Butterworth Lowpass Filters ◦ Gaussian Lowpass.
Circuits II EE221 Unit 5 Instructor: Kevin D. Donohue Passive Filters, low-Pass and Band-Pass filters.
AGC DSP AGC DSP Professor A G Constantinides 1 Digital Filter Specifications Only the magnitude approximation problem Four basic types of ideal filters.
EE313 Linear Systems and Signals Fall 2010 Initial conversion of content to PowerPoint by Dr. Wade C. Schwartzkopf Prof. Brian L. Evans Dept. of Electrical.
Introduction to Filters Section Application of Filter Application: Cellphone Center frequency: 900 MHz Bandwidth: 200 KHz Adjacent interference.
POWER SUPPLIES. The Power Supply A station’s power supply (sometimes known as a power supply unit or PSU) is a device or system that supplies electrical.
Chapter 7 IIR Filter Design
Filter Design Techniques
Copyright © 2001, S. K. Mitra Tunable IIR Digital Filters We have described earlier two 1st-order and two 2nd-order IIR digital transfer functions with.
Contents- 9 장 추가  Introduction  Preliminaries  Analog-to-Digital Filter Transformations  LowPass Filter Design Using Matlab  Frequency-Band Transformations.
Copyright ©2010, ©1999, ©1989 by Pearson Education, Inc. All rights reserved. Discrete-Time Signal Processing, Third Edition Alan V. Oppenheim Ronald W.
Filtering. What Is Filtering? n Filtering is spectral shaping. n A filter changes the spectrum of a signal by emphasizing or de-emphasizing certain frequency.
Professor A G Constantinides 1 Interpolation & Decimation Sampling period T, at the output Interpolation by m: Let the OUTPUT be [i.e. Samples exist at.
Dan Ellis 1 ELEN E4810: Digital Signal Processing Topic 8: Filter Design: IIR 1.Filter Design Specifications 2.Analog Filter Design 3.Digital.
1 Digital Signal Processing. 2 Digital Signal Processing Topic 8: Filter Design: IIR 1. Filter Design Specifications 2. Analog Filter Design 3. Digital.
2/17/2007DSP Course-IUST-Spring Semester 1 Digital Signal Processing Electrical Engineering Department Iran University of Science & Tech.
Ideal Filter Magnitude Responses
111/01/08 ENE 490 Applied Communication Systems Lecture 6 High-Pass, Bandpass, and Bandstop Filter Design.
Chapter 9-10 Digital Filter Design. Objective - Determination of a realizable transfer function G(z) approximating a given frequency response specification.
1 Conditions for Distortionless Transmission Transmission is said to be distortion less if the input and output have identical wave shapes within a multiplicative.
Elec and Comp Tech 62B Circuits and Systems
IIR Digital Filter Design
2/17/2007DSP Course-IUST-Spring Semester 1 Digital Signal Processing Electrical Engineering Department Iran University of Science & Tech.
1 Digital Signal Processing. 2 Digital Signal Processing Topic 6: Filters-Introduction 1. Simple Filters 2. Ideal Filters 3. Linear Phase and FIR filter.
Chapter 7. Filter Design Techniques
FILTER DESIGN TECHNIQUES. Filter: Any discrete-time system that modifies certain frequencies Frequency-selective filters pass only certain frequency components.
Z Transform The z-transform of a digital signal x[n] is defined as:
ELEC 202 Circuit Analysis II
Analog Lowpass Filter Prototype Design ELEC 423 Prof. Siripong Potisuk.
Finite Impulse Response Filtering EMU-E&E Engineering Erhan A. Ince Dec 2015.
ELECTRIC CIRCUITS EIGHTH EDITION JAMES W. NILSSON & SUSAN A. RIEDEL.
Design of RF and Microwave Filters
1 BIEN425 – Lecture 12 By the end of the lecture, you should be able to: –Design and implement IIR filters using zero-pole placement.
Second Order BandPass Filter 1. Outline  What is a filter?  Types of Filter  What is the Band-Pass filter?  Where is the band-pass filter used for?
Series & Parallel Resonance Passive Filter
Amity School of Engineering & Technology 1 Amity School of Engineering & Technology DIGITAL IMAGE PROCESSING & PATTERN RECOGNITION Credit Units: 4 Mukesh.
Digital Signal Processing
UNIT - 5 IIR FILTER DESIGN.
IIR Filters FIR vs. IIR IIR filter design procedure
Infinite Impulse Response (IIR) Filters
Filter Design Techniques
Chapter 8 Design of Infinite Impulse Response (IIR) Digital Filter
ME2300 DIGITAL SIGNAL PROCESSING [Slide 6] IIR Filter Design BY DREAMCATCHER
LINEAR-PHASE FIR FILTERS DESIGN
Usıng the impulse sampling method Prepared by: Dr. Erhan A. INCE
Microwave Engineering
Tania Stathaki 811b LTI Discrete-Time Systems in Transform Domain Simple Filters Comb Filters (Optional reading) Allpass Transfer.
IIR Digital Filter Design
Presentation transcript:

AGC DSP AGC DSP Professor A G Constantinides 1 Transformation from lowpass to another filter

AGC DSP AGC DSP Professor A G Constantinides 2 Spectral Transformations To transform a given lowpass transfer function to another transfer function that may be a lowpass, highpass, bandpass or bandstop filter (solutions given by Constantinides) has been used to denote the unit delay in the prototype lowpass filter and to denote the unit delay in the transformed filter to avoid confusion

AGC DSP AGC DSP Professor A G Constantinides 3 Spectral Transformations Unit circles in z- and -planes defined by, Transformation from z-domain to -domain given by Then

AGC DSP AGC DSP Professor A G Constantinides 4 Spectral Transformations From, thus, hence Therefore must be a stable allpass function

AGC DSP AGC DSP Professor A G Constantinides 5 Lowpass-to-Lowpass Spectral Transformation To transform a lowpass filter with a cutoff frequency to another lowpass filter with a cutoff frequency, the transformation is On the unit circle we have which yields

AGC DSP AGC DSP Professor A G Constantinides 6 Lowpass-to-Lowpass Spectral Transformation Solving we get Example - Consider the lowpass digital filter which has a passband from dc to with a 0.5 dB ripple Redesign the above filter to move the passband edge to

AGC DSP AGC DSP Professor A G Constantinides 7 Lowpass-to-Lowpass Spectral Transformation Here Hence, the desired lowpass transfer function is

AGC DSP AGC DSP Professor A G Constantinides 8 Lowpass-to-Lowpass Spectral Transformation The lowpass-to-lowpass transformation can also be used as highpass-to- highpass, bandpass-to-bandpass and bandstop-to-bandstop transformations

AGC DSP AGC DSP Professor A G Constantinides 9 Lowpass-to-Highpass Spectral Transformation Desired transformation The transformation parameter is given by where is the cutoff frequency of the lowpass filter and is the cutoff frequency of the desired highpass filter

AGC DSP AGC DSP Professor A G Constantinides 10 Lowpass-to-Highpass Spectral Transformation Example - Transform the lowpass filter with a passband edge at to a highpass filter with a passband edge at Here The desired transformation is

AGC DSP AGC DSP Professor A G Constantinides 11 Lowpass-to-Highpass Spectral Transformation The desired highpass filter is

AGC DSP AGC DSP Professor A G Constantinides 12 Lowpass-to-Highpass Spectral Transformation The lowpass-to-highpass transformation can also be used to transform a highpass filter with a cutoff at to a lowpass filter with a cutoff at and transform a bandpass filter with a center frequency at to a bandstop filter with a center frequency at

AGC DSP AGC DSP Professor A G Constantinides 13 Lowpass-to-Bandpass Spectral Transformation Desired transformation

AGC DSP AGC DSP Professor A G Constantinides 14 Lowpass-to-Bandpass Spectral Transformation The parameters and are given by where is the cutoff frequency of the lowpass filter, and and are the desired upper and lower cutoff frequencies of the bandpass filter

AGC DSP AGC DSP Professor A G Constantinides 15 Lowpass-to-Bandpass Spectral Transformation Special Case - The transformation can be simplified if Then the transformation reduces to where with denoting the desired center frequency of the bandpass filter

AGC DSP AGC DSP Professor A G Constantinides 16 Lowpass-to-Bandstop Spectral Transformation Desired transformation

AGC DSP AGC DSP Professor A G Constantinides 17 Lowpass-to-Bandstop Spectral Transformation The parameters and are given by where is the cutoff frequency of the lowpass filter, and and are the desired upper and lower cutoff frequencies of the bandstop filter