Title :
A compact 35-watt high-efficiency wireless power transmission system under seawater environment
Author :
Yoshida, Sigeru ; Tanomura, M. ; Shizuno, K. ; Kobayashi, Nao ; Fukuda, Hiroshi ; Hama, Y.
Author_Institution :
Smart Energy Res. Labs., NEC Corp., Tsukuba, Japan
Abstract :
We demonstrate a compact and high-efficiency wireless power transmission system suitable for charging marine sensors, AUV´s and electronic devices in the sea. The system, consisted of a rectifier and an antenna, achieved state-of-the-art system efficiency of 40% and high output DC power of 35 W at the distance of 5 cm via sea-water. To determine the operation frequency and power of the system, we investigated attenuation distance and electric field strength. We utilized operation frequency of 1 MHz with an input power of less than 1 KW. The rectifier configuration was designed for undersea operation and achieved a compact size of 50 cm3 and a high efficiency of 80%. The magnetic resonant antenna with a compact size of 25 cm × 25 cm × 5 cm achieved an efficiency of 50% at the distance of 5 cm via sea-water. The proposed system can contribute to realize various kinds of undersea observations.
Keywords :
antennas; electromagnetic coupling; marine communication; radiofrequency power transmission; rectifiers; AUV; attenuation distance; distance 5 cm; efficiency 40 percent; efficiency 50 percent; efficiency 80 percent; electric field strength; electronic devices; high-efficiency wireless power transmission system; magnetic resonant antenna; marine sensors; power 25 W; rectifier; seawater environment; undersea operation; Antenna measurements; Antennas; Attenuation; RLC circuits; Radio frequency; Rectifiers; Sea measurements; Antennas; Electro magnetic coupling; Marine Technology; Power transmission; Rectifiers;
Conference_Titel :
Microwave Conference (EuMC), 2013 European
Conference_Location :
Nuremberg