大电压变化下节能灯的电能质量

Rikardo Simanjuntak, P. Dupuis, L. Canale, N. Sinisuka, G. Zissis
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引用次数: 11

摘要

自2005年以来,印尼国有电力公司PLN一直通过需求侧管理(DSM)计划推广节约灯(ESLs)。因此,这些灯在印度尼西亚被广泛使用。为了避免对客户造成停电,有时会使用限电策略(降低电压)。在这种情况下,灯的工作电压低于额定电压。本文旨在通过实验室试验,探讨这些电压变化对电能质量的影响。分析了激光激光器的谐波值、功率因数和波形。测试涉及16个常用于住宅和商业用途的样本灯,分为11个LED灯和5个cfl灯,涵盖不同的制造商和不同的额定功率。实验中使用功率计来获得电学特性。测试期间施加的电源电压由无电压谐波的理想电源产生,以避免与器件非线性行为相关的影响。测试结果表明,根据输入电流波形可以识别出4种led和2种cfl。但它们在电压幅值变化下的响应不同。本文的重点是这种特殊的电学性质,这是没有现成的文件。结果表明,只有少数esl具有低水平的谐波电流和高功率因数,这与它们对振幅变化的低灵敏度一致。并将实验结果与IEC 61000-3-2中照明负荷允许的标准谐波限值进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power quality of energy saving lamps under wide voltage variations
PLN, State-owned Electricity Company in Indonesia has been promoting energy saving lamps (ESLs) through demand-side management (DSM) program since 2005. As a result, those lamps are widely used in Indonesia. To avoid outages on the customers, a brownout strategy (voltage reduction) is sometimes used. The lamps are in this case operated at a lower voltage than their rating. The paper aims to investigate the effect on power quality of those voltage variations through a laboratory test. Value of harmonics, power factor and waveform of ESLs were analyzed. The test relates to 16 sample lamps commonly used in residential and commercial area, divided in 11 LED lamps and 5 CFLs covering different manufacturers and different power ratings. The experiment uses power meter to obtain the electrical characteristics. The supply voltage applied during testing was generated by an ideal power source without voltage harmonics to avoid effects linked to device non-linear behavior. The test results show that 4 types of LEDs and 2 types of CFLs can be identified based upon the input current waveform. However, their responses under voltage amplitude variation differ. This paper focuses on this specific electrical property, which is not readily documented. It was observed that only a few ESLs have low level of harmonic currents and high power factor, in concordance with low sensitivity to amplitude variations. Moreover, the experimental results are compared with the standard harmonic limit allowable for lighting load as per IEC 61000-3-2.
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