# Malcolm Lewis Heron

> Australian electrical engineer

**Wikidata**: [Q29455532](https://www.wikidata.org/wiki/Q29455532)  
**Wikipedia**: [English](https://en.wikipedia.org/wiki/Malcolm_Lewis_Heron)  
**Source**: https://4ort.xyz/entity/malcolm-lewis-heron

## Summary
Malcolm Lewis Heron is an Australian electrical engineer and computer scientist known for his work in satellite signal refraction. He earned his Doctor of Philosophy from the University of Auckland in 1971, with a doctoral thesis on the refraction of satellite signals. Heron has been affiliated with James Cook University and is recognized as an IEEE Fellow.

## Biography
- Born: Not specified
- Nationality: Australian
- Education: Doctor of Philosophy, University of Auckland (1971)
- Known for: Research on satellite signal refraction
- Employer(s): James Cook University
- Field(s): Electrical engineering, computer science

## Contributions
Malcolm Lewis Heron's doctoral research focused on the refraction of satellite signals, a foundational study in the field of satellite communications. His work at the University of Auckland in the early 1970s contributed to understanding how satellite signals are affected by atmospheric conditions, which is critical for accurate satellite-based navigation and communication systems. As an IEEE Fellow, Heron has been recognized for his contributions to electrical engineering and computer science. His affiliation with James Cook University further underscores his role in advancing research and education in these technical fields.

## FAQs
### Q: What is Malcolm Lewis Heron's most notable academic achievement?
A: Malcolm Lewis Heron earned his Doctor of Philosophy from the University of Auckland in 1971, with a doctoral thesis on the refraction of satellite signals.

### Q: Where has Malcolm Lewis Heron worked?
A: Malcolm Lewis Heron has been affiliated with James Cook University.

### Q: What professional recognition has Malcolm Lewis Heron received?
A: Malcolm Lewis Heron is an IEEE Fellow, a distinction awarded for significant contributions to electrical engineering and computer science.

## Why They Matter
Malcolm Lewis Heron's research on satellite signal refraction has had a lasting impact on the fields of electrical engineering and satellite communications. His doctoral work provided important insights into how atmospheric conditions affect satellite signals, which is essential for the development of reliable satellite-based systems. As an IEEE Fellow and academic, Heron has influenced both research and education, helping to advance the understanding and application of satellite technology.

## Notable For
- Doctoral thesis on the refraction of satellite signals (University of Auckland, 1971)
- IEEE Fellow
- Research in electrical engineering and computer science
- Affiliation with James Cook University
- Contributions to satellite communications research

## Body
### Education and Early Career
Malcolm Lewis Heron completed his Doctor of Philosophy at the University of Auckland in 1971. His doctoral thesis, titled "The Refraction of Satellite Signals," addressed the impact of atmospheric conditions on satellite communications, a topic of growing importance as satellite technology advanced in the 1970s.

### Professional Recognition
Heron's contributions to electrical engineering and computer science were recognized with his election as an IEEE Fellow. This honor is awarded to individuals who have made significant contributions to the field, underscoring Heron's impact on satellite communications and related technologies.

### Academic and Research Contributions
Heron has been affiliated with James Cook University, where he has contributed to both research and education in electrical engineering and computer science. His work has helped advance the understanding of satellite signal behavior, which is critical for the development of accurate and reliable satellite-based systems.

### Legacy and Influence
Through his research, teaching, and professional recognition, Malcolm Lewis Heron has played a role in shaping the fields of satellite communications and electrical engineering. His foundational work on signal refraction continues to be relevant as satellite technology remains central to global communications and navigation systems.

## References

1. The Refraction of Satellite Signals
2. [Source](http://hdl.handle.net/2292/2263)
3. Virtual International Authority File
4. CiNii Research