DocumentCode
524553
Title
The effect of headset and earphone on reducing electromagnetic radiation from mobile phone toward human head
Author
Mat, Dayang Azra Awang ; Kho, Franky ; Joseph, Annie ; Kipli, Kuryati ; Sahrani, Shafrida ; Lias, Kasumawati ; Marzuki, Ade Syaheda Wani
Author_Institution
Dept. of Electron. Eng., Univ. Malaysia Sarawak, Kota Samarahan, Malaysia
fYear
2010
fDate
15-18 June 2010
Firstpage
1
Lastpage
6
Abstract
Studies show that exposure to the electromagnetic wave for a certain period of time will leads to health problem such as headaches, or even worse, brain cancer. Scientist have known that this radiation might cause human biological damage through heating effects since human body is made up of approximately 65-70% water, electrolytes and ions. Radio frequency radiation emitted from mobile phone will interact with human body and interfere with human body´s natural healing resulted displacement of electrolytes and ions within the body. This paper discussed on the analysis conducted to study the effect of electromagnetic radiation (thermal radiation) of mobile phones with different frequencies via experimental works. The experiment was conducted in a laboratory using a volunteer (human). The period of operation is 45 minutes as the talking time on the phone. Thermal imaging technique is used to monitor and capture the temperature distribution during the experimental analysis for every 5 minutes interval. Images will be collected and analyzed using graphical plot. Devices such as Bluetooth headset and earphone are also used to study either this equipment are effective to reduce the effect of thermal radiation toward human head or not. The result shows that mobile phone serving GSM 900 MHz has the highest temperature increment compare to mobile phone serving GSM 1800 MHz. It is also shown that GSM 900 MHz has greater thermal radiation effect or heating effect. By using Bluetooth headset and earphone device when talking via mobile phone, the result shows lower radiation since direct radiations from the mobile phone antenna was reduced.
Keywords
Bluetooth; biological effects of radiation; cellular radio; electromagnetic waves; mobile handsets; Bluetooth; GSM; earphone effect; electromagnetic radiation; frequency 1800 MHz; frequency 900 MHz; headset effect; human biological damage; human head; mobile phone antenna; radio frequency radiation; thermal imaging technique; Bluetooth; Electromagnetic radiation; Electromagnetic scattering; GSM; Head; Headphones; Humans; Image analysis; Lead; Mobile handsets; Bluetooth headset; earphone; electromagnetic radiation; mobile phone;
fLanguage
English
Publisher
ieee
Conference_Titel
Information and Telecommunication Technologies (APSITT), 2010 8th Asia-Pacific Symposium on
Conference_Location
Kuching
Print_ISBN
978-1-4244-6413-5
Electronic_ISBN
978-4-88552-244-4
Type
conf
Filename
5532035
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