Fundamentals of Satellite Communication Systems
September 15-16, 2022 | Online :: Central Time



“The technical focus was spot-on for people who are interested in learning more about the most critical aspects of SATCOM.” Director of RF Systems, Roccor

Geosynchronous Earth Orbit (GEO) satellites and the fast-growing Medium Earth Orbit (MEO) and Low Earth Orbit (LEO) satellites constellations are competing in the high-volume terrestrial communications market. Typically, satellite communication systems are more competitive in rural areas, underserved communities, and broadcast television, but the development of High Through Put (HTP) satellite technologies are having the effect of leveling the playing field compared with cable and terrestrial wireless systems.

This course provides an overview of the current satellite technology. It explains the advantages and disadvantages of satellites in the three orbital categories (GEO, MEO and LEO), the reasons why satellites have expanded operation into higher frequencies, the practical limitations of higher frequency operation and discusses some of the cutting-edge methods deployed by the satellite industry to maximize data through-put and signal availability. In addition, the course shows how the limited resource of wireless frequency spectrum is reused to multiply the satellite’s output. These techniques are applicable to ground-based systems as well as airborne and naval applications. Some current and near-future satellite systems that optimize coverage and data rates will be discussed. Register now for this virtual training class to expand your understanding of the fundamentals of satellite communication systems. Attendees will come away with a clearer understanding of the framework for the technologies driving advances in services and information sharing in the 21st century.

Learning Objectives

  • Review the fundamentals of satellite communications
  • Discuss the signal path between Earth and the satellite
  • Identify issues concerning the satellite digital data link
  • Discuss the effects of signal distortions & noise
  • Assess High Throughput Satellites (HTS) compete with terrestrial WiFi
  • Compare satellite configurations in LEO, MEO, GEO, and elliptical orbits
  • Analyze the specifications of major satellite communication subsystems



LRA has been accredited as an Authorized Provider by the International Association for Continuing Education and Training (IACET).  In obtaining this accreditation, LRA has demonstrated that it  complies with the ANSI/IACET Standard which is recognized internationally as a standard of good practice. As a result of their Authorized Provider status, LRA is authorized to offer IACET CEUs for its programs that qualify under the ANSI/IACET Standard.

LRA is authorized by IACET to offer 1.0 CEUs for this event.

Requirements for Successful Completion of Program

Participants must log in each day, be in attendance for the entirety of the course

Instructional Methods

Power Point presentations and open discussion will be used

Who Should Attend?

Engineers, Engineering Managers and Corporate Managers involved in or interested in learning about satellite communications and related communication systems.


Thursday, September 15, 2022 : Central Time

8:45 – 9:00 a.m. :: Log In

9:00 a.m. – 4:00 p.m. :: Course Timing

12:00 – 12:30 p.m. :: Break for Lunch

Part 1: Fundamentals of Satellite Communications

  1. Satellite Basics and Relevance in a WiFi World
  2. Orbital Characteristics and Applications
  3. Van Allen Radiation Belts
  4. Satellite Orbital Locations
  5. Satellite Orbits and Orbital Mechanics
  6. Antenna Beams and Terrestrial Footprints

Part 2: Satellite Communication Link

  1. Communications Link Objectives
  2. Antenna Fundamentals
  3. Signal Transmission – EIRP
  4. Path Loss and Atmospheric Effects
  5. Thermal Noise
  6. Signal Reception – G/T
  7. Satellite Transmission Path Issues
  8. Satellite Link Example
  9. Satellite Tracking
  10. Uplink Power Controller (UPC)

Part 3: Signal Modulation Techniques and Trade-offs

  1. Vector Modulation
  2. Constant Amplitude Modulation
  3. Quadrature Amplitude Modulation (QAM)
  4. Amplitude Phase Shift Keying (APSK)

Part 4: Signal Distortions & Errors

  1. Vector Modulation errors
  2. Group Delay Distortion
  3. Amplitude Distortion
  4. Signal Linearity
  5. Effects of Oscillator Stability (Phase Noise)
  6. Combined Signal Distortions
  7. Adjacent Channel Interference
  8. Time Domain Effects – Eye Diagrams


Friday, September 16, 2022 : Central Time

8:45 – 9:00 a.m. :: Log In

9:00 a.m. – 12:00 p.m. :: Course Timing

Part 5: High Throughput Satellites (HTS) and Operation in Ka Band

  1. High Throughput Satellites (HTS)
  2. Frequency Reuse through Polarization
  3. Spatial Reuse
  4. Adverse Weather: Atmospheric Issues
  5. Mitigation Adverse Weather Techniques
  6. Forward Error Correcting Codes
  7. Adaptive Modulation (AM), Bit Rates & Site Diversity

Part 6: Comparing Satellite Configurations

  1. Low Earth Orbit (LEO)
  2. Medium Earth Orbit (MEO)
  3. Geostationary (GEO) Satellites
  4. Future Frequency Spectrum (Q, V and W Bands)


Howard Hausman, President & CEO, RF Microwave Consulting Services

Howard Hausman received his BSEE and MSEE degrees from Polytechnic University / Tandon School of Engineering, New York University and is President/CEO of RF Microwave Consulting Services. Mr. Hausman is also an Adjunct Professor at Hofstra University, School of Engineering. Formerly Mr. Hausman was President/CEO of MITEQ, Inc., a microwave engineering company with approximately 700 employees. The company designed products for ground-based satellite communications, space borne microwave, Radar, Reconnaissance, and commercial aircraft WiFi systems, as well as various microwave products for defense electronics. Following the acquisition of MITEQ, Mr. Hausman consulted to the merged L3-narda-MITEQ division for approximately two years. Howard also started and sold after 15 years a successful microwave systems and components company.

During his career, Howard Hausman served as Chief Technology Officer and Vice President of Engineering, before being appointed President/CEO of MITEQ, Inc. Howard Hausman is also a recipient of the New York University / Polytech Distinguished Alumni Award, the IEEE LI Section Alex Gruenwald Award “For outstanding contributions to enhance the knowledge of the IEEE LI Section members in Satellite Communications and Microwave Theory” and an Award from NASA for work on the Mars Landing Systems. Mr. Hausman is currently the Chairman of the IEEE LI Section Communications Society (COMSOC) and was selected to review papers for the IEEE MIT Undergraduate Research Technology Conference.

Online Delivery

We will be using Microsoft Teams to facilitate your participation in the upcoming event. You do not need to have an existing Teams account in order to participate in the broadcast – the course will play in your browser and you will have the option of using a microphone to speak with the room and ask questions, or type any questions in via the chat window and our on-site representative will relay your question to the instructor.

  • You will receive a meeting invitation will include a link to join the meeting.
  • Separate meeting invitations will be sent for the morning and afternoon sessions of the course.
  • If you are using a microphone, please ensure that it is muted until such time as you need to ask a question.
  • The remote meeting connection will be open approximately 30 minutes before the start of the course. We encourage you to connect as early as possible in case you experience any unforeseen problems.


Please Note: This event is being conducted entirely online. All attendees will connect and attend from their computer, one connection per purchase. For details please see our FAQ

Students qualify for a reduced rate

Event Standard RateAttendees
Fundamentals of Satellite Communication Systems - (single connection)US $ 995.00
Pack of 5 connectionsUS $ 3,980.00
Pack of 10 ConnectionsUS $ 6,965.00
Pack of 20 ConnectionsUS $ 11,940.00
For volume discounts call +1.888-305-0392 for quote
* all other discounts do not apply to license packs

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Cancellation Policy

Your registration may be transferred to a member of your organization up to 24 hours in advance of the event. Cancellations must be received on or before August 12, 2022 in order to be refunded and will be subject to a US $195.00 processing fee per registrant. No refunds will be made after this date. Cancellations received after this date will create a credit of the tuition (less processing fee) good toward any other LRA Institute event. This credit will be good for six months from the cancellation date. In the event of non-attendance, all registration fees will be forfeited. In case of conference cancellation, LRAs liability is limited to refund of the event registration fee only. For more information regarding administrative policies, such as complaints and refunds, please contact our offices at 303-770-8800