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Digital Control of LFSW HID Lamp Drivers with Soft Saturation Magnetic Materials and Integrated Resonant Lamp Ignition.

机译:LFSW HID灯驱动器的数字控制,具有软饱和磁性材料和集成的谐振灯点火功能。

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摘要

Electronic HID ballasts provide many advantages over magnetic HID ballasts including size, weight, overall efficiency, and greater control of operating conditions. Electronic ballasts add complexity to the system, requiring a greater understanding of the operation of HID lamps. Electronic ballasts also introduce a host of issues for the HID ballast designer including possible acoustic resonances, arc stability issues, and operation across broad operating conditions. In this work, research of a Low Frequency Square Wave (LFSW) HID solution is performed that includes use of a non-linear soft saturation core material for the inductor. Modeling of the converter with this core is presented as well. Difficulties with operation of HID lamps are outlined, as well as the previous methods to overcome such obstacles.;Ignition and steady-state operation of HID lamps occur with very different operating conditions. Ignition occurs with very little lamp current, but large lamp voltage, and steady-state operation is the opposite. Due to this mismatch, any single ignitor/ballast design requires the inductor to be able to handle both operating points.;Use of a soft saturation material allows for a reduction in size and weight of the overall system due to the higher magnetic capacity of the material as compared to hard saturation alternatives. The downside to using this material is inductance varies with magnetizing force on the core. A resonant ignition approach with soft saturation material is presented, motivating the need for phase control of the system.;A fast transition between resonant and LFSW mode operation is presented, which requires a large design space for possible lamp impedances. Transition times between LFSW modes are dependent on natural frequency and Q factor of a buck filter response, which is shaped beneficially by the soft saturation material. A design method for this is presented, along with considerations for core selection.;A two loop control method is analyzed with an inner current loop that stabilizes the lamp arc and an outer power loop in order to obtain regulated light output. The current loop is able to monitor currents of a positive and negative buck mode operation using a single sense point. A system that uses input power sensing to ultimately control output power is analyzed and experimentation is presented.
机译:电子HID镇流器比磁性HID镇流器具有许多优势,包括尺寸,重量,总体效率以及对操作条件的更好控制。电子镇流器增加了系统的复杂性,需要对HID灯的操作有更多的了解。电子镇流器还为HID镇流器设计人员引入了许多问题,包括可能的声共振,电弧稳定性问题以及在广泛的工作条件下的操作。在这项工作中,我们对低频方波(LFSW)HID解决方案进行了研究,其中包括将非线性软饱和磁芯材料用于电感器。还介绍了使用该内核的转换器建模。概述了HID灯工作的困难以及克服此类障碍的现有方法。HID灯的点火和稳态工作在非常不同的工作条件下发生。在极小的灯电流下会发生点火,但是在大的灯电压下,稳态工作则相反。由于这种失配,任何单个点火器/镇流器设计都要求电感器能够同时处理两个工作点。由于饱和磁通量较高的磁容量,使用软饱和材料可以减小整个系统的尺寸和重量。与硬饱和替代材料相比。使用这种材料的缺点是电感会随着磁芯上的磁化力而变化。提出了一种使用软饱和材料的谐振点火方法,从而激发了系统的相位控制的需求。提出了谐振和LFSW模式操作之间的快速转换,这需要较大的设计空间来容纳可能的灯阻抗。 LFSW模式之间的过渡时间取决于自然频率和降压滤波器响应的Q因子,后者由软饱和材料有利地成形。提出了一种为此设计的方法,并考虑了选择铁芯的问题。分析了一种具有内部电流环路(可稳定灯弧)和外部电源环路(以获得稳定的光输出)的两环路控制方法。电流环路能够使用单个感测点监视正和负降压模式操作的电流。分析了使用输入功率感测最终控制输出功率的系统,并进行了实验。

著录项

  • 作者

    Schnell, Ryan Wei-Ming.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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