Faculty of Electrical Engineering, Bialystok University of Technology, 45A Wiejska Street, 15-351 Bialystok, Poland.
Sensors (Basel). 2023 Mar 20;23(6):3285. doi: 10.3390/s23063285.
This paper describes an original adaptive multispectral LED light source that utilizes miniature spectrometer to control its flux in real time. Current measurement of the flux spectrum is necessary in high-stability LED sources. In such cases, it is important the spectrometer work effectively with the system that controls the source and the whole system. Therefore, as important as flux stabilization is the integration of the integrating sphere-based design with the electronic module and power subsystem. Since the problem is interdisciplinary, the paper mainly focuses on presenting the solution of the flux measurement circuit. In particular, the proprietary way of operating the MEMS optical sensor as a real-time spectrometer was proposed. Then, the implementation of the sensor handling circuit, which determines the spectral measurements accuracy and thus the output flux quality, is described. Also presented is the custom method of coupling the analog part of the flux measurement path with the analog-to-digital conversion system and the control system based on the FPGA. The description of the conceptual solutions was supported by the results of simulation and laboratory tests at selected points of the measurement path. The presented concept allows to build adaptive LED light sources in the spectral range from 340 nm to 780 nm with adjustable spectrum and flux value, with electrical power up to 100 W, with adjustable flux value in the range of 100 dB, operating in constant current or pulsed mode.
本文描述了一种原创的自适应多光谱 LED 光源,该光源利用微型光谱仪实时控制其通量。在高稳定性 LED 光源中,需要对通量光谱进行电流测量。在这种情况下,光谱仪与控制光源和整个系统的系统有效协作非常重要。因此,与通量稳定一样重要的是将基于积分球的设计与电子模块和电源子系统集成。由于该问题涉及多个学科,因此本文主要侧重于介绍通量测量电路的解决方案。特别是,提出了将 MEMS 光学传感器作为实时光谱仪进行操作的专有方法。然后,描述了确定光谱测量精度并因此确定输出通量质量的传感器处理电路的实现。还介绍了一种定制的方法,用于将通量测量路径的模拟部分与基于 FPGA 的模拟到数字转换系统和控制系统进行耦合。在测量路径的选定点处,通过模拟和实验室测试的结果对概念性解决方案的描述提供了支持。所提出的概念允许构建可调光谱和通量值的自适应 LED 光源,其光谱范围为 340nm 至 780nm,电功率高达 100W,在 100dB 范围内可调通量值,可在恒流或脉冲模式下运行。