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An efficient dimming scheme for a plasma lighting system using solid-state power amplifier

机译:一种使用固态功率放大器的等离子体照明系统的高效调光方案

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An electrodeless plasma bulb is one of promising lighting source due to its high efficacy, long life time, and sun-like light spectrum. Recently, a plasma lighting system (PLS) using a radio frequency (RF) solid-state power amplifier (SSPA) as a power source of the plasma bulb is widely used instead of the conventionally used magnetron. The SSPA is easy to control an RF signal of the system, and therefore has benefit in dimming control. One of the simple dimming scheme is to control magnitude of continuous wave (CW) signal of the PLS. However, the efficiency of the SSPA degrades due to thermal problem for the CW signal. In addition, a power back-off for the dimming decreases the efficiencies of the SSPA and the PLS. To overcome this problem, a pulsed RF signal is used for the dimming of the PLS. A combination of switch-mode RF SSPA and pulsed RF signal can improve the efficacy of the PLS. In this paper, we propose an efficient dimming scheme by modifying the pulsed RF signal. In order to achieve better efficiency and linearity performances, the proposed RF pulsed signal has a slope in time-domain unlike the conventional pulsed RF signal that have rectangular shape. A spectral regrowth of the modified pulsed RF signal can be reduced by changing slope rate. In result, the adjacent channel leakage power ratio of the proposed method is less than that of the conventional pulsed RF signal. A PLS using the proposed dimming scheme shows better efficacy because it reduces return loss in the adjacent channel. A 2.47 GHz PLS with a 300 W gallium-nitride (GaN) SSPA is implemented, and it is used to verify the proposed method. The PLS using the proposed method shows better performance compared with those using the CW signal or the conventional pulsed RF signal.
机译:由于其高效率,长寿命和阳光样光谱,电极等离子体灯泡是有前途的照明源之一。最近,广泛使用使用射频(RF)固态功率放大器(SSPA)作为等离子体灯泡的电源的等离子体照明系统(PLS)而不是常规使用的磁控管。 SSPA易于控制系统的RF信号,因此在调光控制中具有受益。简单调光方案之一是控制PLS的连续波(CW)信号的大小。然而,由于CW信号的热问题,SSPA的效率降低。此外,调光的电源返回降低了SSPA和PLS的效率。为了克服这个问题,脉冲RF信号用于PLS的调光。开关模式RF SSPA和脉冲RF信号的组合可以提高PLS的功效。在本文中,我们通过修改脉冲RF信号来提出一种有效的调光方案。为了实现更好的效率和线性性能,所提出的RF脉冲信号具有与具有矩形形状的传统脉冲RF信号的时间域中的斜率。可以通过改变斜率率来降低修改的脉冲RF信号的光谱再生。结果,所提出的方法的相邻信道泄漏功率比小于传统脉冲RF信号的信道漏功率比。使用所提出的调光方案的PLS显示出更好的功效,因为它会降低相邻信道中的回波损耗。具有300W镓 - 氮化物(GaN)SSPA的2.47GHz PLS,用来验证所提出的方法。使用所提出的方法的PLS与使用CW信号或传统脉冲RF信号的方法相比显示出更好的性能。

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