EE310 – Communication Systems EE310 – Exclusive Course Details

EE310 Course Introduction

EE310 Course Introduction for EE310 – Communication Systems (EE310) Due Date: 12/03/2017, Saturday, 10 am. Class

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EE310 Course Description

1. The course covers the following topics in detail: Analog and Digital Communication Systems; Linear and Nonlinear Systems Analysis. 2. This course will provide a basic knowledge of communication systems including basic theory, modeling, analysis, and design of analog and digital communications systems including microwave systems. 3. This course will provide hands-on exercises on the MATLAB programming language to enhance and reinforce the course material.

Prerequisite: Enrolled in NMBU’s B.S./M.S., M.S.

Universities Offering the EE310 Course

at MIT, Princeton, Stanford, and UC Berkeley

MIT EE310 Course: Communication Systems (EE310) MIT EE310 – Communication Systems (EE310) is offered online by the Department of Electrical Engineering and Computer Science at Massachusetts Institute of Technology. The course uses a quantum simulation framework to study communication technologies including wireless communications, cognitive radio, optical communications and more. The description of the class can be found here. Exam Schedule: This class meets once per week on Thursdays from 9:45

EE310 Course Outline

Credits: 3.0 Prerequisite: ECE 202 (Honors), EE 200 and EE 202, or equivalent. A continuation of the ECE 201 course for those students who have completed at least one year of college level mathematics and physics courses. Concepts such as power transfer, power distribution, and estimation theory will be used in the analysis and design of communication systems.
EE310 Course Outline for EE310 – Communication Systems (EE310) Credits: 3.0 Pr

EE310 Course Objectives

Be able to explain the basic concepts of communication system design with a focus on the modern digital communication systems. Be able to analyze various communication systems and select an appropriate system for a given application. Be able to use a variety of methods, tools and techniques for developing systems. Be able to make trade-offs between cost, performance and complexity when selecting technology or methodology in communication system design. Course Content Communication Systems Design 1: Introduction What is communication? The science and engineering of transferring information from one point to

EE310 Course Pre-requisites

Objectives of EE310 – Communication Systems (EE310) • To prepare students to perform Engineering Design and Development activities in communication systems. • To impart knowledge of engineering principles and methods which are used in designing communications system. • To provide hands on experience with the hardware and software related to communication systems. • To acquire sufficient knowledge about the various devices used in telecommunications networks. • To create student’s confidence level for working on integrated circuits, microprocessors, digital signal processing techniques, applications of DSP, embedded

EE310 Course Duration & Credits

(11-15/1/2019) Click here for the course duration and credits of this course. Graduation Outcome From This Course: This course leads to M Tech in Electrical Engineering from Jadavpur University, Kolkata.

What is the salary range of this course?

The average salary package offered to a fresher with this course is INR 3.5 lakhs per annum.

What are the career opportunities for those who have completed this course?

This programme offers students with excellent skills in

EE310 Course Learning Outcomes

Tutorial 1:

Learning outcomes: 1. To understand how to construct the communication system as a block diagram

2. To understand the principle of operation of different modules of an analog communication system

3. To understand the basic principles of data transmission

4. To understand how to transmit and receive signals through different channels.

5. To be familiar with the basic signal processing techniques.

6. To learn how to use communication protocols like; Baudot, DCD, DCT, FSK

EE310 Course Assessment & Grading Criteria

Lecture slides and other resources are the property of Pratt Institute. Please use them for personal, non-commercial use only. You may not distribute them to others.

This course is part of the Information Systems Management Certificate program at Pratt Institute. You can view all of our courses at http://prattcc.pratt.edu/courses.

Submitted by: Reinhard Grunau, Ph.D., P.E., Lecturer, Pratt Institute, New York, NY

Description:

This paper is about the importance of

EE310 Course Fact Sheet

– Spring 2017 Course Description: A study of the principles and applications of digital communications systems, with emphasis on communication over noisy channels. Topics include code division multiple access (CDMA) and orthogonal frequency-division multiplexing (OFDM) radio transmission systems. Prerequisites: Mathematics, Physics, or Engineering Science Certificate (or equivalent).

EE310 Course Delivery Modes

Introduction – Spring 2017 This course is part of the Master of Engineering (MEng) program and fulfills the Communication Systems (CS) major requirements. The course is taught in a classroom environment with students from all parts of the world, and lectures cover both traditional theory and modern applications, such as speech and audio processing, acoustics, computer vision, microphone arrays, speech coding and decoding, and image processing. Students will also be required to complete a capstone project. It is strongly

EE310 Course Faculty Qualifications

As per the College’s policy, each course has at least one faculty member with the following qualifications: 1. Research interests in Communication Systems. 2. Specialization or interest in teaching a particular area of EE310 as per the standards of the Department of Electrical Engineering and Computer Science. 3. Holds a PhD degree in Electrical Engineering and Computer Science from MIT or other recognized universities. Course Objectives The objective of this course is to introduce students to communication theory and design, networking concepts (LAN

EE310 Course Syllabus

Fall 2015

EE310 Syllabus for Communication Systems (EE310) Fall 2015 – Course Objectives:

• To introduce the basic concepts and tools used in analyzing communication systems.

• To enable students to understand the relationship between theory and practice.

• To introduce students to the key concepts of modern communications technologies.

Note: This syllabus is subject to change without notice. Please check this page regularly for updates. Any changes will be posted here. Students are responsible for knowing the latest

Suggested EE310 Course Resources/Books

Team Projects, Homework and Exams for Communication Systems, EE310

* Welcome to the Mathematics & Computer Science (MCS) Departmental Website. The Department of Mathematics and Computer Science is located on the second floor of Heritage Hall. The MCS program has been here since 1986 with undergraduate students starting as freshmen.

We welcome you to the site! Please explore our website and learn more about our department, our faculty and graduate students, our research programs, recent accomplishments and future goals.

The MCS

EE310 Course Practicum Journal

1. 1. (a) Determine the maximum limit for the following: • Single sided exponential random variable with mean µ=30 and standard deviation σ=0.5 • Two sided exponential random variable with mean µ=30 and standard deviation σ=0.5 Note: you will be using an Excel spreadsheet to assist in calculating your answers.

(b) Find the probability density function of the two-sided exponential random variable given in part (a).

(c) Given an x-value, find the

Suggested EE310 Course Resources (Websites, Books, Journal Articles, etc.)

Instructor’s Suggested EE310 Course Resources (Websites, Books, Journal Articles, etc.) for EE310 – Communication Systems (EE310)

Suggested Introductory EE310 Course Resources (Websites, Books, Journal Articles, etc.) for EE310 – Communication Systems (EE310) Instructor’s Suggested Introductory EE310 Course Resources (Websites, Books, Journal Articles, etc.) for EE310 – Communication Systems (EE310)

Optional Readings and Topics

Optimal Power Transfer in

EE310 Course Project Proposal

Class Meeting: 9:50-11:00 am Thursdays, W408B (TBA) If you have any questions about this project, please contact Dr. Flanagan at flanagan@cs.pdx.edu

Due Date:

Project Description:

The purpose of this project is to develop a highly-efficient graph-based search algorithm for two-dimensional spatial collections of cells. Specifically, this project aims to solve the problems of cell tele-operation and group traversal on graphs using several popular graph algorithms such as

EE310 Course Practicum

Last updated: May 28, 2013 Language of Instruction: English

Course Description: The EE310 course is designed to prepare students for the Practicum (see below) as well as for graduate school. It is offered during the Fall semester every year. Students must be admitted to the Department of Electrical Engineering and Computer Science.

Prerequisites: EE310 Course – Introduction to Communication Systems, or EE310 Course – Introduction to Communication Systems (EE310), or approved alternate syllabus.

General Requirements

Related EE310 Courses

EE310

Course Details >> NCE 551: Digital Signal Processing (NCE 551) This course is a survey of the basic mathematical, analytical, and experimental techniques in the computation and processing of signals. Topics covered include discrete Fourier transforms, modeling, inverse problems, signal detection theory, and linear filtering. The goal of the course is to provide students with an appreciation of many facets of signal processing including representation; amplification; sampling; sampling rates; frame structure; probability distributions; error detection

Midterm Exam

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Answer key and grading rubric are available on Blackboard, with answers to questions.

Due date: 1/15. Late assignments will not be accepted.

This exam is the final exam for EE310, Communication Systems. This exam covers all material from lectures and homework assignments up to midterm. The class will have 12 questions. Each question has four possible answers (A-F), each correct answer requires one letter of explanation (A-E), and one wrong answer requires a brief

Midterm Exam Questions Generated from Top 100 Pages on Bing

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Final Exam

(Revised)

Simulation lab to be conducted in the classroom on 3 March. Please come with your laptop, and use a real device.

The lecture will consist of an introduction on wireless communication systems. A brief description of W-band will be given. The lecture will cover modulation techniques and system performance. The lab session will cover implementation of a binary code using discrete cosine transform (DCT) algorithm.

NOTE: Students who need permission to attend this lab should have at least 15 credits in EE

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Notes: Best way to study for the EE310 Final (which is a timed exam).

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What Should Students Expect to Be Tested from EE310 Final Exam

Final Exam

Sample Questions (Reading the exam description)

Instructions: You must complete all the questions on this exam. For each question, you are given 1 hour to answer.

– Write your name and initials next to each question.

– Answer each question by picking one of the four options in the space provided. There is no right or wrong answer. If you get a correct answer, please raise your hand.

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Final Exam Questions Generated from Top 100 Pages on Google

@ Ph.D. Education

Ph.D. Education | PhD in Communication Systems | EE310 – Communication Systems (EE310)

Home Page > Questions and Answers > EE310 – Communication Systems (EE310) > EE310 – Communication Systems (EE310) 1 Question
1 Question(s)
Question(1):

Please use the Google search box on the left side to find all questions for EE310 and all answers for EE310 with their corresponding links.

Important Links:

– Chapter 7: Transmission

Week by Week Course Overview

EE310 Week 1 Description

– Course Hero. Asynchronous communication involves sending a message to a person or group of people at a fixed time and date and/or in the same language. 0 Task 1,2,3 answers for all Questions U0121 TxDOT User Guide for Intelligent Transportation Systems. The receiver is an equipment that decodes data from the transmitter and processes the decoded information into messages. It can be said that synchronous is very easy to understand; however it can be quite difficult to learn Synchronous text

EE310 Week 1 Outline

EE310 Week 1 Outline for Communications Systems Use the “Outline” tool located in the Discussion Area to review these topics. Then, create an outline for your final paper. Answer each of the following questions. Part One • What is a Communication System? o a set of devices that can transmit and receive information o sets of devices working together to complete a task or solve a problem • What are the components of a communication system? o transmitter o receiver o encoder/decoder • What is the purpose of

EE310 Week 1 Objectives

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BMS230 Week4 Final Exam Answers For more course tutorials visit www.u

EE310 Week 1 Pre-requisites

Tutorials

Videos Course Overview Introduction to Communication Systems – Introducing the concepts behind communication systems using both theoretical and practical examples. Theory for Communication Systems (Communications Engineering) – The first part of this course will focus on basic concepts in communications engineering and how they apply to real-world networks. Basics of Signals and Systems – A second part of this course will cover various types of signals, including their time, frequency, amplitude, phase, etc., and how these signal features can be used to characterize the

EE310 Week 1 Duration

Week 1 Discussion 1: Communication Systems (Ning) Day 1 Discuss the advantages and disadvantages of this course by answering the following questions: a. How would you rate your ability to communicate using spoken language? b. How would you rate your ability to communicate using written language? c. What impact do different types of communication have on how we function as human beings? d. When do you feel you are most able to make use of written communication and when do you feel most able to

EE310 Week 1 Learning Outcomes

Week 1 Assignment Worksheet – Due Date: Day 7 [Individual] Read the following scenario and identify the limitations of the communication system in question: You have been hired as a new chief engineer at DCSG. The CEO and his executive team have decided to create a new communications system for your division, which will be used by all divisions throughout DCSG. One area in which the CEO has requested your input is whether or not you think that one of the proposed technologies (Ethernet) would

EE310 Week 1 Assessment & Grading

Exam Week 1 Discussion Questions For Assignment EE310 Communication Systems (EE310) Exam Week 1 Assessment & Grading Assignment Due Date: Day 7 [Individual] Week 2 Assignments (Due Week 5): Discussion Questions For Assignment EE310 Communication Systems (EE310) Exam Week 2 Assessment & Grading Assignment Due Date: Day 7 [Individual] Syllabus – Readings CS101P Introduction to Programming in Python CS102P Introduction to Computing with Python CS202P

EE310 Week 1 Suggested Resources/Books

Week 1 Suggested Resources/Books for EE310 Week 1: Study Guides and Recommended Reading Exercises This resource is a study guide to help prepare you for the Midterm examination. The study guide includes: short answer, short essay, and multiple choice questions covering material found in this chapter and last Chapter Exam – Your one-stop source for everything you need to pass your CPE exam! Prepare for your state licensing exam with complete CPE exams and practice resources to improve your test scores! Learn from

EE310 Week 1 Assignment (20 Questions)

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EE310 Week 1 Assignment Question (20 Questions)

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EE310 Week 1 Discussion 1 (20 Questions)

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EE310 Week 1 DQ 1 (20 Questions)

For more course tutorials visit www.tutorialrank.com Tutorial Purchased: 2 Times, Rating: B+ Module 1: Introduction to Communication Systems (1) (EE310) Overview of EE310 Week 1 DQ 1 (20 Questions) for EE310 – Communication Systems (EE310) In this module, you will learn about the fundamentals of communication systems and network theory. You will study how modern digital transmission technologies work, as well as the underlying principles for building a simple digital

EE310 Week 1 Discussion 2 (20 Questions)

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EE310 Week 1 DQ 2 (20 Questions)

Week 1 Discussion Question 2. The radiation from the constant source is displayed on a graph of the form y = √ r 2 + k 2 where the intensity, I, is shown on the right-hand axis and r is the distance between the source and receiver, at least one mile apart. ) In both cases, we are assuming that E n is small compared to E c . However, in this system, it seems like it would be feasible to increase this value without compromising

EE310 Week 1 Quiz (20 Questions)

from 1st June 2017. EE310 Week 1 Quiz for the Communication Systems course. This quiz consists of 20 questions. You can use a pencil and paper or an electronic device to answer these questions. There is no time limit, however the quiz will close after 2 hours.

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EE310 Week 1 MCQ’s (20 Multiple Choice Questions)

Discussion Questions Final Exam Q&A

EE311 Week 1 Lec 0: The History of Communications Technology

EE311 Week 2 I/II Encependence Criterions (4 Lectures) for EE311 – Communication Systems (EE311)

EE311 Week 2 Lec 3: Computer and Communication Networks (5 Lectures) for EE311 – Communication Systems (EE311)

EE310 Week 2 Description

Week 2 Discussion Question – (7 points) A closed-loop system is defined as a system whose transfer function is time-invariant and whose response at any given point in the system remains constant, regardless of the process input. Describe the block diagram of a closed-loop system that exhibits closed-loop stability. In your discussion, explain why a certain loop’s stabilizing feedback is unstable, and then explain how to overcome this instability.

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EE310 Week 2 Outline

Week 2 Outline for EE310 – Communication Systems (EE310) 1. Introduction to communications systems: signals and noise 2. Two approaches to analyze communication systems a) Simple approach: low pass filter, phase shift keying b) More complex approach: TOA demodulator Analyzing the simple approach can lead to the following results: (1) The channel impulse response is known and it is possible to calculate an average bit error probability of a signal with a given characteristic feature (e

EE310 Week 2 Objectives

What are the advantages and disadvantages of using the WiFi? When can WiFi be used? How does a WiFi network work? What are the basic steps in designing a wireless network? What is the difference between encryption and authentication? What is meant by data-link layer and media access control (MAC)? How does a mobile station send or receive data to/from the base station via a wireless network?

This three-hour course introduces students to the fundamental principles and concepts of computer hardware, operating systems, application software, and

EE310 Week 2 Pre-requisites

Week 2 Pre-requisites for EE310 – Communication Systems (EE310) Week 2 Pre-requisites for EE310 – Communication Systems (EE310) Week 3: Digital Filters, Carrier Detection and Tracking Digital Filter Basics, Carrier Detection/Tracking in Frequency Domain, Digital Filtering, PLLs in Frequency Domain for Simple Bandwidth Control, Low Pass Filter Design. EE330 Week 2 Pre-requisites for EE330 – Signal Processing Engineering (EE330) Week 2 Pre-requisites for

EE310 Week 2 Duration

Week 2 Discussion (2) – Communication Systems (EE310) Week 2 Discussion (3) – The Microelectronic Engineer’s Role in the Field of Control Engineering (CE310)

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Categories: CE310 > Microelectronic Engineering Assignment

EE310 Week 2 Learning Outcomes

Week 2: Signals, Systems and Noise (EET351) Week 3: Digital Communications (EET360) Week 4: Data Communication & Computer Networks (EE340) Week 5: Analog Communication & Wireless Networks (EE400) Week 6: RF Communication Systems (EE480)

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EE310 Week 2 Assessment & Grading

– Week 2 Learning Team Assignment: Communication Systems Task Description

You will find this task due on Wednesday, August 10. The topics covered in this week’s lectures are defined in the Unit 2 Outline (see link below) and summarized in Table 3.1 of the Unit 2 Outline; you will use these definitions to answer the questions in this assignment.

Table 3.1

Topic Definition GSPC

System architecture In its most general sense, a system can be thought

EE310 Week 2 Suggested Resources/Books

Core Topics: 1. Chapter 1: Introduction to Communication Systems 2. Chapter 2: Basic Symbols and Concepts of Communication Systems

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EE310 Week 2 Assignment (20 Questions)

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EE310 Week 2 Assignment Question (20 Questions)

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EE310 Week 2 Discussion 1 (20 Questions)

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EE310 Week 2 DQ 1 (20 Questions)

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EE310 Week 2 Discussion 2 (20 Questions)

at Strayer University, Washington DC. The tutorial is organized as an online discussion forum. That is, students will post questions and comments to a thread and then the instructor and other students can reply with additional information or interact by responding to the student’s questions.

For this week’s Discussion, you will select one of the following topics and post a response to each question below. You may respond to more than one question (up to 4), but each must be responded to in its own thread:

EE310 Week 2 DQ 2 (20 Questions)

at Strayer University, Spring 2013. Learn more about EE310 communication systems from Strayer University today!

Your post should be 200 to 300 words long (approximately 1 page double spaced, including title and reference page). Be sure to add your name, course, and semester to each post. In addition, this post should include at least two credible references for the information provided.

The post must:

• Answer all parts of the assignment question

• Include an introduction that clearly identifies

EE310 Week 2 Quiz (20 Questions)

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EE310 Week 2 MCQ’s (20 Multiple Choice Questions)

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Description

This package contains the following: 1. In this question we have to find out the error in a signal using amplitude ratio test which is given below.

2. In this question we have to find out the power of the signal, considering noise, in dB using FIR filter.

3. In this question we have to find out the minimum