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Universal lighting control of unknown connected light emitting diode arrays via a T–S fuzzy model-based approach

机译:通过基于TS模糊模型的方法对未知连接的发光二极管阵列进行通用照明控制

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摘要

This study presents a universal lighting driver for unknown connected light emitting diode (LED) arrays by using a single-ended primary inductor converter (SEPIC) DC/DC converter and a T-S fuzzy model-based current controller. Driving and lighting an LED array with unknown series and parallel connection is a significant research for universal adaptable applications. To this end, the input voltage of the LED array is up/down adjusted by the SEPIC DC/DC converter, whereas exact LED lighting current control is realised by the proposed T-S fuzzy parallel distributed integral compensation control method. For easier implementation, a linear-simplified fuzzy observer is introduced under output feedback. Asymptotic convergence is guaranteed by strict stability analysis and linear matrix inequality gain design. Moreover, the fuzzy lighting current controller does not require the electrical model and arrangement of the LED array. In addition, even if we take uncertainty, disturbance and rapidly changing reference current into consideration, the high robustness and transient response performance are still assured via robust gain design. Finally, the satisfactory performance is shown from experimental results.
机译:这项研究通过使用单端初级电感转换器(SEPIC)DC / DC转换器和基于T-S模糊模型的电流控制器,为未知连接的发光二极管(LED)阵列提供了通用照明驱动器。驱动和点亮未知串联和并联连接的LED阵列是针对通用适应性应用的一项重要研究。为此,通过SEPIC DC / DC转换器可上下调节LED阵列的输入电压,而通过提出的T-S模糊并联分布式积分补偿控制方法可实现精确的LED照明电流控制。为了更容易实现,在输出反馈下引入了线性简化的模糊观测器。严格的稳定性分析和线性矩阵不等式增益设计可确保渐近收敛。此外,模糊照明电流控制器不需要LED阵列的电气模型和布置。此外,即使我们考虑了不确定性,干扰和快速变化的参考电流,通过稳健的增益设计仍可确保高鲁棒性和瞬态响应性能。最后,从实验结果表明令人满意的性能。

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