Radar Systems
Learn Radar Systems the exam way—clear concepts, worked examples, and 70 focused lessons in electronics engineering.
This course includes
- — on-demand video
- Access on mobile & desktop
- Full lifetime access
- Certificate of completion
Course content
8 sections · 70 lectures
- Lec 01: Introduction to radar systems Preview
- Lec 02: Range measurement
- Lec 03: Radar waveforms
- Lec 04: Radar applications
- Lec 05: Radar equations
- Lec 06: Radar block diagram Preview
- Lec 07: Prediction of range preformance
- Lec 08: Receiver noise
- Lec 09: Radar range equation in terms of noise figure
- Lec 10: Integration of radar pulses
- Lec 11: Radar cross section of the target
- Lec 12: Pulse repetition frequency
- Lec 13: Transmitter power
- Lec 14: System losses Part - 1
- Lec 15: System losses Part - 2
- Lec 16: Problems on radar equation Part - 1
- Lec 17: Problems on radar equation Part - 2
- Lec 18: Doppler effect Preview
- Lec 19: CW radar block diagram
- Lec 20: Isolation between tx and rx
- Lec 21: CW radar with non-zero IF receiver
- Lec 22: Receiver bandwidth requirements
- Lec 23: IF doppler filter bank
- Lec 24: Range and doppler measurement
- Lec 25: FM-CW radar Preview
- Lec 26: FM altimeter
- Lec 27: Measurement errors
- Lec 28: Unwanted signals in FM-CW
- Lec 29: Multiple fruequency CW radar
- Lec 30: Problems on CW radar
- Lec 31: Principle of MTI & Pulse doppler radar Preview
- Lec 32: Butterfly effect
- Lec 33: MTI Radar with Power amplifier transmitter
- Lec 34: MTI Radar with Power oscillator transmitter
- Lec 35: Delay line cancellers
- Lec 36: Filter characteristics of delay line cancellers
- Lec 37: Blind speed
- Lec 38: Double delay line canceler
- Lec 39: Multiple or staggared Pulse repetition frequencies
- Lec 40: Range gated doppler filters
- Lec 41: Non coherent MTI radar
- Lec 42: Difference between MTI and PDR
- Lec 43: Limitations to MTI radar
- Lec 44: Introduction to tracking radar Preview
- Lec 45: Sequential lobing
- Lec 46: Conical scan method
- Lec 47: Block diagram of conical scan tracking radar
- Lec 48: Mono pulse tacking radar with one coordinates
- Lec 49: Monopuse tracking radar with two coordinates
- Lec 50: Phase comparison monopulse tracking radar
- Lec 51: Tracking in range
- Lec 52: Acquisition and scanning patterns
- Lec 53: Matched filter receiver Preview
- Lec 54: Matched filter impuse response
- Lec 55: Derivation of the matched filter frequency reponse
- Lec 56: Relation between the matched filter characteristics and correlation function
- Lec 57: Matched filter with non-white noise
- Lec 58: Efficiency of nonmatched filter
- Lec 59: Correlation receiver
- Lec 60: Noise figure
- Lec 61: Noise temperature
- Lec 62: Noise figure of networks in cascade
- Lec 63: Radar displays Preview
- Lec 64: Duplexers branch type
- Lec 65: Balanced type duplexer
- Lec 66: Circulator as duplexer
- Lec 67: Introduction to phsed array antennas- radiation pattern
- Lec 68: Beam steering, serial Vs Parallel feeds
- Lec 69: Change of beam width with steering angle
- Lec 70: Applications, Advantages & Limitations of Phased array antennas
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Description
Radar Systems is an exam-focused electronics engineering programme designed for ECE / EEE learners building circuit and digital fundamentals for exams (all levels). Lessons are paced for semester revision and competitive practice, with clear explanations you can replay anytime.
You will build device and system intuition for Radar Systems, linking theory to typical university numericals and design questions. Syllabus highlights include Basics of Radar systems, Pulse Radar system, CW Radar, FM-CW Radar, MTI and Pulse Doppler Radar (PDR), and Tracking radar. Across 70 lessons, you will move from foundations to problem-solving patterns that show up in university papers and placement tests.
Taught by DAKALA SREENIVASULU, this course keeps theory short and practice heavy—so you can revise faster, spot examiner cues, and build confidence before mocks and finals.
Instructor
Course director · Semester exams
Faculty lead for Education4U exam-focused programmes across aptitude, reasoning, computer science, electrical and electronics.
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