DocumentCode
2920817
Title
Human-body shadowing modeling for indoor quasi-static MIMO channels
Author
Saito, Kazuyuki ; Kitao, Koshiro ; Imai, Tetsuro ; Miura, Shun
Author_Institution
NTT DOCOMO Inc., Yokosuka, Japan
fYear
2012
fDate
22-26 Oct. 2012
Firstpage
608
Lastpage
611
Abstract
In recent years, MIMO communication systems such as IMT-Advanced and LTE have been put into practical use. Since MIMO transmission has an advantage in use in the indoor multipath-rich environment, the accurate indoor MIMO channel model is necessary for evaluating the systems. In indoor Quasi-static environment, it is known that the channel state changes dynamically due to the human-body shadowing effect even if the receiver and the transmitter are fixed. We have proposed the estimation method of human-body shadowing of each cluster for MIMO channel modeling. In our proposal, firstly the propagation parameter distributions of clusters are estimated from the data measured in static condition using SAGE and K-Power-Means algorithm. Next, the human-body shadowing of each cluster is estimated from the Beamformer resultant power variations of cluster that are calculated from the data measured in quasi-static condition. We carried out the 3.35GHz measurements in the cafeteria during lunch time. As a result, we showed that shadowing level was from 5dB to 15dB at busy time of cafeteria. In addition, we also showed that the mean decrease and variance of resultant power is almost in the proportional relation.
Keywords
Long Term Evolution; MIMO communication; indoor radio; microwave measurement; radio receivers; radio transmitters; wireless channels; IMT-advanced; K-power-means algorithm; LTE; MIMO communication systems; MIMO transmission; SAGE; frequency 3.35 GHz; human-body shadowing modeling; indoor multipath-rich environment; indoor quasistatic MIMO channels; propagation parameter distributions; radio receiver; radio transmitter; static condition; Antenna measurements; Clustering algorithms; Estimation; MIMO; Power measurement; Shadow mapping; Time measurement; Channel Model; Human-Body Shadowing; Indoor Propagation; MIMO; Shadowing;
fLanguage
English
Publisher
ieee
Conference_Titel
Antennas, Propagation & EM Theory (ISAPE), 2012 10th International Symposium on
Conference_Location
Xian
Print_ISBN
978-1-4673-1799-3
Type
conf
DOI
10.1109/ISAPE.2012.6408844
Filename
6408844
Link To Document