INDIAN INSTITUTE OF TECHNOLOGY BHUBANESWAR Digital Signal Processing Lab Report 6 Submitted by Name Allam Levi Ratnakar B Suresh Roll Number 08EEB025 08EEB026 Problem: Design a model for the plant h (z) =0.2600+0.9300z¯¹+0.2600z¯² using direct modeling (Adaptive Algorithm LMS/RMS). The channel is associated with the following functions. where p(k) is the output of each of linear part of the channels Theory: The aim of this experiment is to create a model for a plant with given parameters
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PROPERTIES OF DISCRETE TIME FOURIER TRANSFORMS ABSTRACT In mathematics‚ the discrete Fourier transform (DFT) converts a finite list of equally-spaced samples of a function into the list of coefficients of a finite combination of complex sinusoids‚ ordered by their frequencies‚ that has those same sample values. It can be said to convert the sampled function from its original domain (often time or position along a line) to the frequency domain. INTRODUCTION The input samples are complex numbers
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geosciences studies‚ astronomy‚ and geographical information systems. One of the most important quality factors in satellite images comes from its contrast. Contrast enhancement is frequently referred to as one of the most important issues in image processing. Contrast is created by the difference in luminance reflected from two adjacent surfaces. In visual perception‚ contrast is determined by the difference in the color and brightness of an object with other objects. Our visual system is more sensitive
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just communications but other fields of Electronics such as VLSI and embedded systems and combined application of these fields result into flawless communication technologies which are existent today. The subjects like Digital Electronics‚ Signals and Systems‚ Digital Signal Processing and Microprocessor and Microcontroller applications helped me understand the basics of the communication technologies. These laid the foundation for my courses in Electronic Communication & Communication Systems at a
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Scheme Sessional End Semester CT TA TOT P Th P 10 10 20 80 30 20 50 100 Total 100 150 Credits 3 4 Technical 3 Writing Mathematics- III 3 3 4 5 6 7 EE- 305 EC- 301 EC -302 EC- 303 AU-301/ AU-401 Sensor and Instrumentation Electronic Devices Digital Design Signals and Systems Human Values and Professional Ethics 3 3 3 3 2 1 1 1 1 1 2 2 2 2 0 20 20 20 20 10 10 30 10 30 10 30 10 30 10 20 15 15 15 15 - 100 100 100 100 80 30 30 30 30 - 175 175 175 175 100 5 5 5 5 Comp
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online book “Architecture and Programming of PSoC Microcontrollers” Introduction 1.1 System Overview 1.2 CPU 1.3 Frequency generator 1.4 Microcontroller power consumption 1.5 Reset 1.6 Digital inputs and outputs 1.7 Analog inputs and outputs 1.8 Accessing programmable digital blocks 1.9 Global input lines 1.10 Digital programmable blocks 1.11 Analog programmable blocks 1.12 Referent voltage generators 1.13 Switch mode pump 1.14 MAC 1.15 Decimator 1.16 I2C controller 1.17 Interrupt controller 1.18 Address
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Bipolar DAC(digital-to-analog converter) In electronics‚ a digital-to-analog converter (DAC or D-to-A) is a device that converts a digital (usually binary) code to an analog signal (current‚ voltage‚ or electric charge). An analog-to-digital converter (ADC) performs the reverse operation. Signals are easily stored and transmitted in digital form‚ but a DAC is needed for the signal to be recognized by human senses or other non-digital systems. A common use of digital-to-analog converters is generation
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natural ability in technology and my liking for the Electronic field .While studying for my degree‚ I took keen interest in Electronic device and Circuit‚ Electrical Technology‚ Network analysis‚ Signal & Systems‚ Pulse and digital Circuits‚ Control system‚‚ Digital signal processing‚ Microprocessors & Interfacing‚ Microwave Engineering‚. I have given seminar on difference topic related to Electronic such as “Electrooculography guidance of a Wheelchair using Eye movement Codification”. It illustrates
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ECE 204 AND 254– UEL 1 Laboratory Manual Draft copy for adoption: LABORATORY MANUAL OF ECE 204 AND 254 UNIFIED ELECTRONICS LAB 1 Prepared at Lovely Professional University With Participation & Valuable contributions from Er.Gurpreet Saini Er. Kawanpreet Kaur Er. Asha Rana Reviewed by. Rajeev Kr Patial Sr lect.‚ off. HOL‚ ECE (B. Id. 12301) OFF HOD ECE (Dean Labs ) DEPARTMENT OF ECE‚ LPU‚ PHAGWARA (PUNJAB)‚ INDIA. 1 ECE 204 AND 254– UEL 1 Laboratory Manual ECE204 and ECE254: UNIFIED ELECTRONICS
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Design ADC & DAC Within the system there are combinations of analogue and digital variables within the system. The purpose of the ADC is to convert analogue signals into digital ones within the system before it can be manipulated by the FPGA. The ADC takes the analogue information provided by the PGA and converts it into digital to be multiplied with the blood flow simulation signal by the FPGA. In order for the ADC input and output to communicate between the PGA and FPGA effectively important
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