Title :
Code Division-Based Sensing of Illumination Contributions in Solid-State Lighting Systems
Author :
Linnartz, Jean-Paul M G ; Feri, Lorenzo ; Yang, Hongming ; Colak, Sel B. ; Schenk, Tim C W
Author_Institution :
Philips Res. Eindhoven, Eindhoven, Netherlands
Abstract :
Light-emitting diodes (LEDs) have emerged as a prime candidate for the light source of the future. To enable easy user interaction with a future lighting system consisting of many LEDs, this paper proposes a method to accurately measure and estimate the local light contributions of a large set of LEDs. This is enabled through tagging the light of each LED with an unique identifier. To this end, we propose a new family of modulation and multiple access schemes in this paper, named code-time division multiple access-pulse position modulation (CTDMA-PPM) and CTDMA-pulse width modulation (CTDMA-PWM). These schemes satisfy illumination constraints, are compatible with the commonly used PWM dimming of LEDs, and meet the multi-signal separation requirements for simultaneous measurement of illumination strengths. Based on these modulation methods, the paper develops algorithms to estimate illumination. Finally, performance analyses show that even for a very large number of LEDs, the sensing performance of the proposed system satisfies the requirements up to an adequate range.
Keywords :
code division multiple access; light emitting diodes; pulse position modulation; pulse width modulation; code division-based sensing; code-time division multiple access; illumination; light-emitting diodes; multisignal separation requirement; pulse position modulation; pulse width modulation; solid-state lighting system; Code division multiple access; light-emitting diodes; lighting control; pulse position modulation; pulse width modulation;
Journal_Title :
Signal Processing, IEEE Transactions on
DOI :
10.1109/TSP.2009.2025075