DIGI-COMM.AP1

Digital Communications

Learn the fundamentals of (Digital) Communications Engineering and prepare for a career in telecommunications, networking, or signal processing.

  • 25 Interaktive Lektionen Und 221 topics mapped to the official exam objectives

Expert Selbstgesteuert · 1 Jahr Zugang

25Interaktive Lektionen
221Topics
17Videos
300Karteikarten
300Glossar der Begriffe

01 / Fähigkeiten, die Sie erwerben

What you will be able to do

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Enroll for this Digital Communications Fundamentals course to learn the fundamentals of modern-day communications engineering and emerging techniques. It equips you with the essential skills for navigating the ‘networking and communications’ side of today’s digital landscape. The comprehensive course is divided into 18 chapters covering key topics like Modulation, Demodulation, Multiplexing, Speed Spectrum Techniques, MIMO, Encryption, and Decryption. By the end of this course, you will have the skills and expertise required to manage digital communications systems and be well-prepared for a successful career in fields such as telecommunications, networking, wireless communications, and satellite communications.
  • Complete understanding of signal analysis - properties and characteristics of analog and digital signals
  • Using Fourier transforms and other techniques for interpreting the frequency of signals
  • Analyzing the behavior of signals passing through linear systems
  • Analog Modulation: amplitude, frequency, and phase modulation techniques
  • Knowledge of digital modulation schemes including QAM, PSK, and FSK
  • Demodulation: ability to recover the original signal from a modulated carrier
  • Correcting codes, like block codes and convolutional codes, to improve transmission
  • Error-detecting codes to identify issues in received data
  • Understanding of Channel capacity or theoretical limits of data transmission
  • Techniques for extracting timing information from received signals
  • Aligning the phase of the received signal with the transmitted signal
  • Time-division multiple access (TDMA) techniques for sharing a channel among multiple users
  • Frequency-division multiple access (FDMA) techniques for allocating different frequency bands to different users
  • Code-division multiple access (CDMA) techniques for spreading the signal across a wide bandwidth
  • Understanding of broad spectrum techniques for spreading the signal using a pseudo-random sequence
  • Reducing the amount of data required to represent information with Data compression
  • Converting analog signals into digital signals with Quantization
  • Understanding of channel modeling and mitigation techniques 
  • Orthogonal frequency-division multiplexing (OFDM) for parallel transmission over multiple subcarriers
  • Multiple-input multiple-output (MIMO) techniques for improving capacity and reliability
  • Understanding of cryptographic algorithms and techniques for securing data

Course Highlights

  • 25 Strukturierte Lektionen Umfassende Abdeckung der zentralen Kursziele
  • 1 Jahr voller Zugang Selbstgesteuertes Lernen, jederzeit auf allen Geräten zugänglich

02 / Lektionen & Labore

See exactly what you will learn and practice

Übersicht herunterladen (PDF)

Unterrichtsplan

25 Interaktive Lektionen · 221 topics
01 Introduction 2 topics
  • Organization of the Course
  • Additional Course Resources
02 Signals and Spectra 11 topics
  • Digital Communication Signal Processing
  • Classification of Signals
  • Spectral Density
  • Autocorrelation
  • Random Signals
  • Signal Transmission Through Linear Systems
  • Bandwidth of Digital Data
  • Conclusion
  • References
  • Problems
  • Questions
03 Formatting and Baseband Modulation 13 topics
  • Baseband Systems
  • Formatting Textual Data (Character Coding)
  • Messages, Characters, and Symbols
  • Formatting Analog Information
  • Sources of Corruption
  • Pulse Code Modulation
  • Uniform and Nonuniform Quantization
  • Baseband Transmission
  • Correlative Coding
  • Conclusion
  • References
  • Problems
  • Questions
04 Baseband Demodulation/Detection 8 topics
  • Signals and Noise
  • Detection of Binary Signals in Gaussian Noise
  • Intersymbol Interference
  • Equalization
  • Conclusion
  • References
  • Problems
  • Questions
05 Bandpass Modulation and Demodulation/Detection 13 topics
  • Why Modulate?
  • Digital Bandpass Modulation Techniques
  • Detection of Signals in Gaussian Noise
  • Coherent Detection
  • Noncoherent Detection
  • Complex Envelope
  • Error Performance for Binary Systems
  • M-ary Signaling and Performance
  • Symbol Error Performance for M-ary Systems (M > 2)
  • Conclusion
  • References
  • Problems
  • Questions

03 / FAQS

Fragen, bevor Sie beginnen

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Who should take this Digital Communications course?

This course is ideal for all those wanting to understand digital communication & networking principles and its practical applications. It is most suitable for:

  • Students pursuing electrical engineering, computer engineering, computer science, telecommunications, or related fields 
  • Electrical engineers, computer engineers, and telecommunications engineers wanting to deepen their knowledge
  • Researchers exploring digital communication, signal processing, information theory, and networking
What are the prerequisites for taking this course?

It is not an entry-level course and you must possess the following expertise:

  • Knowledge of Calculus for understanding concepts in digital communication 
  • Linear Algebra for understanding signal processing and system analysis
  • Probability theory and statistical concepts for analyzing random signals and noise
  • Circuit analysis concepts like Kirchhoff's laws and equivalent circuits
What is the main focus of this course? Theory or practical skills?
This course focuses on theoretical concepts such as signal processing, modulation, demodulation, channel coding, and synchronization. You can gain relevant practical skills by conducting laboratory experiments with digital communication equipment and techniques.
Is it necessary to have a telecommunications background to take this course?
No, having a background in telecommunication is not compulsory. However, having this background will provide a deeper understanding for the practical applications of digital communication systems.
Does the course provide access to instructors or mentors?
You’ll have access to the interactive course content that also includes AI-tutors (on demand).

Ready For A High-Demand Career?

Explore the endless possibilities in Digital Communications & secure your future.

  • 1 Jahr voller Zugang
  • Abschlusszertifikat
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