This letter reports an experimental demonstration of indoor wireless visible-light communication transmission at 1 Gb/s. The system consists of a four-channel multiple-input multiple-output link that uses white LED sources, each transmitting signals at 250 Mb/s using orthogonal frequency division multiplexing modulation. A nine-channel imaging diversity receiver is used to detect the signals, and an average bit error rate of 10-3 is achieved at the room illumination level of ∼ 1000 lux at 1-m range. © 1989-2012 IEEE
In this paper, we propose and experimentally demonstrate a switching multiple input and multiple out...
LED lightings are expected to serve in the next generation of lamps. Compared with the conventional ...
LED lightings are expected to serve in the next generation of lamps. Compared with the conventional ...
This letter reports an experimental demonstration of high-speed indoor optical wireless Optical mult...
This thesis presents an investigation into designs and developments of indoor visible light communi...
This letter reports the experimental demonstration of an indoor visible light non-imaging multiple i...
Nowadays, white light-emitting diodes (LEDs) are promising for future indoor lighting due to their a...
This letter reports the experimental demonstration of an indoor visible light nonimaging multiple-in...
We demonstrate gigabit-class indoor visible optical wireless transmission using commercial component...
We demonstrate gigabit-class indoor visible optical wireless transmission using commercial component...
We demonstrate gigabit-class indoor visible optical wireless transmission using commercial component...
We demonstrate gigabit-class indoor visible optical wireless transmission using commercial component...
We demonstrate gigabit-class indoor visible optical wireless transmission using commercial component...
Visible light communication (VLC) using multiple-input multiple-output (MIMO) has great potential fo...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
In this paper, we propose and experimentally demonstrate a switching multiple input and multiple out...
LED lightings are expected to serve in the next generation of lamps. Compared with the conventional ...
LED lightings are expected to serve in the next generation of lamps. Compared with the conventional ...
This letter reports an experimental demonstration of high-speed indoor optical wireless Optical mult...
This thesis presents an investigation into designs and developments of indoor visible light communi...
This letter reports the experimental demonstration of an indoor visible light non-imaging multiple i...
Nowadays, white light-emitting diodes (LEDs) are promising for future indoor lighting due to their a...
This letter reports the experimental demonstration of an indoor visible light nonimaging multiple-in...
We demonstrate gigabit-class indoor visible optical wireless transmission using commercial component...
We demonstrate gigabit-class indoor visible optical wireless transmission using commercial component...
We demonstrate gigabit-class indoor visible optical wireless transmission using commercial component...
We demonstrate gigabit-class indoor visible optical wireless transmission using commercial component...
We demonstrate gigabit-class indoor visible optical wireless transmission using commercial component...
Visible light communication (VLC) using multiple-input multiple-output (MIMO) has great potential fo...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
In this paper, we propose and experimentally demonstrate a switching multiple input and multiple out...
LED lightings are expected to serve in the next generation of lamps. Compared with the conventional ...
LED lightings are expected to serve in the next generation of lamps. Compared with the conventional ...