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首页> 外文期刊>IEE Proceedings. Part B, Electric Power Applications >Phase-locked-loop-control-based Electronic Ballast for Fluorescent Lamps
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Phase-locked-loop-control-based Electronic Ballast for Fluorescent Lamps

机译:基于锁相环控制的荧光灯电子镇流器

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The paper proposes an electronic ballast in which the resonant frequency of the circuit is continuously tracked by the phase-locked loop (PLL). This electronic ballast, which employs PLL control, has a high tolerance for the variations that exist in the equivalent resistance of a lamp. At present, the PLL control is used to drive cold-cathode fluorescent lamps (CCFLs), in which variations in equivalent resistance between ignition and the steady state are small, so that phase differences at the resonant frequency are almost fixed, thus the resonant frequency can be tracked continuously by the operating frequency. However, if variations in equivalent resistance are large, the phase difference at the resonant frequency may be not fixed, and thus the resonant frequency may be not continuously tracked by the operating frequency. The paper proposes the electronic ballast for fluorescent lamps with large variations in equivalent resistance betWeen ignition and the steady state. According to the phase characteristics of various resonant tanks and an optimum design of the resonant tank, the circuit's resonant frequency is continuously tracked by the PLL. Since the current regulator circuit licits the value of the lamp current as the operating frequency increases from the resonant frequency, the lamp current is accurately controlled, regardless of variations in the load. The paper discusses the implementation of the proposed ballast with PLL control, which offers high tolerance for the variations of the equivalent resistance in the lamp.
机译:本文提出了一种电子镇流器,其中的锁相环(PLL)连续跟踪电路的谐振频率。该电子镇流器采用PLL控制,对于灯的等效电阻中存在的变化具有较高的容差。目前,PLL控制用于驱动冷阴极荧光灯(CCFL),其中点火和稳态之间的等效电阻变化很小,因此谐振频率的相位差几乎固定,因此谐振频率可以通过工作频率连续跟踪。然而,如果等效电阻的变化较大,则谐振频率处的相位差可能不会固定,因此谐振频率可能不会被工作频率连续跟踪。本文提出了一种荧光灯电子镇流器,其在点火和稳态之间的等效电阻存在较大差异。根据各种谐振电路的相位特性和谐振电路的最佳设计,PLL会连续跟踪电路的谐振频率。由于当工作频率从谐振频率增加时,电流调节器电路会获得灯电流的值,因此无论负载如何变化,都可以精确地控制灯电流。本文讨论了采用PLL控制的拟议镇流器的实现,该镇流器对灯中等效电阻的变化具有较高的容忍度。

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