PubMed Health⌕ Search

PubMed · 15920838

Study on a non-contact life parameter detection system using millimeter wave.

Abstract

OBJECTIVE: To study the basic principle and design method of a non-contact life detection system using 36 GHz millimeter wave. METHOD: Continuous wave radar techniques and signal processing techniques including zero intermediate frequency, frequency domain accumulation and adaptive noise cancellation were used in the system. RESULT: When the radiated power was about a milliwatt (mW) and detection range was up to 3 meters, the experimental results showed that this system can well detect the heartbeat and respiration signals from human subjects through common clothes and quilts. CONCLUSION: The system is feasible and effective due to its high detection sensitivity, small antenna, simple structure, easy miniaturization and safety to the human subject. It can be used for long-term continuous monitoring, especially suitable for the astronauts.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Jian-qi Wang, Chong-xun Zheng, Xi-jing Jin, Guo-hua Lu, Hai-bin Wang, An-sheng Ni. 2004. Study on a non-contact life parameter detection system using millimeter wave.. https://pubmed.ncbi.nlm.nih.gov/15920838/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

"Higher, always higher": technology, the military and aviation medicine during the age of the two world wars.

The history of flight has been strongly influenced by the interplay between physiology and technology. The human body defined the relationship between man and machine--it had to be protected from the cold, bad weather, high altitude, speed and bullets. Technological innovations offered a way to improve on aeroplane safety, and enabled pilots to exceed the limits imposed by physiological constraints. In particular, reconnaissance and bombing missions during World War II, which demanded flight at high altitudes, stimulated intensive scientific research and technological development. This research led to the construction of artificial environments for pilots and ultimately gave rise to space medicine.

Aerospace Medicine↗