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Effect of power factor improvement on switching life of self ballasted fluorescent lamps

机译:功率因数提高对自镇流荧光灯开关寿命的影响

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This work aims to reveal the underlying effect of improved power factor on the life of Self Ballasted Fluorescent Lamps commonly termed as CFL. In the third world country like India because of cost effectiveness CFLs are still used without any power factor correction circuitry. Recently the power factor improvement tool is made compulsive for CFL and the recommended range as suggested by IEC 61000-3-2 is greater than 0.85. In addition to this the current harmonic distortion is preferred to be around 30% as per the standards. But unfortunately there are still CFLs available in the market which have less power factor in comparison with the desired standards. This has caused substantial problems not only on the generation side, but it certainly has considerable impact on the lamp performance. In the present work in order to exemplify this problem, four CFLs of 15W each from two different manufacturers are used for the experiment. Out of these four lamps, two lamps are ballast with low input power factor and instant start type. The other two are incorporated with improved input power factor having rapid start or warm start circuitry. The lamps are constantly switched ON and OFF at regular intervals. The interval was taken as 5 minutes ON and 5 minutes OFF. The lamps were subjected to this accelerated switching test. At the end of every switching cycle the electrode temperature was calculated from the ratio of hot resistance to cold resistance. It was thus observed that lamps with instant start ballast and poor power factor were unable to sustain the switching stress as compared to the lamps with rapid start ballast and improved power factor. Furthermore, the rise in electrode temperature for the lamps with improved power factor was within the desired standards. Thus it was concluded that lamps with poor power factor was more prone to early end in comparison with the other variety.
机译:这项工作旨在揭示功率因数提高对通常称为CFL的自镇流荧光灯寿命的潜在影响。由于成本效益,在第三世界国家(如印度),CFL仍在使用,而没有任何功率因数校正电路。最近,功率因数改善工具已成为CFL的强制性工具,IEC 61000-3-2建议的推荐范围大于0.85。除此之外,根据标准,电流谐波失真最好约为30%。但是,不幸的是,市场上仍然有CFL,其功率因数低于所需的标准。这不仅在发电侧造成了严重的问题,而且无疑对灯的性能产生了相当大的影响。在本工作中,为了举例说明此问题,将来自两个不同制造商的四个15W的CFL用于实验。在这四盏灯中,有两盏是镇流器,它们具有低输入功率因数和即时启动类型。另外两个具有改进的输入功率因数,具有快速启动或热启动电路。灯泡以固定的时间间隔不断地打开和关闭。间隔取为5分钟ON和5分钟OFF。灯经受了该加速开关测试。在每个开关周期结束时,根据热阻与冷阻之比计算电极温度。因此观察到,与具有快速启动镇流器和改善的功率因数的灯相比,具有瞬时启动镇流器和较差的功率因数的灯不能承受切换应力。此外,具有改善的功率因数的灯的电极温度升高在期望的标准之内。因此可以得出结论,与其他品种相比,功率因数较差的灯更容易出现早期故障。

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