Title :
Large Ad Hoc Shielded Room with Removable Mode Stirrer for Mobile Phone Antenna Tests
Author :
Gruden, Mathias ; Hallbjorner, P. ; Rydberg, A.
Author_Institution :
Microwave & Terahertz Technol. Group, Uppsala Univ., Uppsala, Sweden
Abstract :
Reverberation chambers (RC) are widely used for measuring antenna performance and parameters for MIMO systems. RCs for mobile phone antenna tests are often specially designed for this purpose. The lowest frequency of operation of an RC is decided by its size. With a trend of lower frequency bands being allocated for mobile phones, the minimum size of RCs for mobile phone antenna tests increases, and is approaching the size of a normal room. At the same time, many large shielded rooms are already in use for various electrical measurements. In this paper, a standard shielded room designed for EMC testing is used as an RC for mobile phone antenna tests. To complete the RC, a large mode stirrer is built. The fact that the room is also used for other tests requires a detachable, foldable, and lightweight stirrer design. Therefore, metal meshes are evaluated for the design of the mode stirrer. The performance of the used room is verified by standard tests for RCs, and it is verified that it is possible to measure antennas from about 400 MHz up to 4 GHz with good accuracy. The size of the room also enables measurements including humans carrying mobile phones or body area networks.
Keywords :
MIMO communication; UHF antennas; antenna testing; electromagnetic compatibility; electromagnetic shielding; microwave antenna arrays; mobile ad hoc networks; mobile handsets; radiotelemetry; reverberation chambers; EMC testing; MIMO system; RC; antenna performance measurement; body area network; electrical measurement; large ad hoc shielded room; metal mesh evaluation; mobile phone antenna testing; removable mode stirrer; reverberation chamber; Antenna measurements; Frequency measurement; Metals; Mobile antennas; Mobile handsets; Q factor; Antenna measurements; electromagnetic propagation; electromagnetic shielding; microwave communication; microwave radio propagation;
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
DOI :
10.1109/TEMC.2012.2204758