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A time domain based flickermeter with response to high frequency interharmonics

机译:基于时域的Flickermeter,响应高频间谐波

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Fluctuation of a supply voltage is primary viewed, for historical reason, as voltage amplitude modulation (AM) and the response of UIE/IEC flickermeter, which is based on incandescent bulb — human eye — brain scheme, is designed exactly for such fluctuation. From another point of view, a voltage magnitude fluctuation could be introduced also by subharmonic and/or interharmonic components superimposed on a voltage waveform. The boundary interharmonic frequency of a voltage AM is approx. double of fundamental system frequency (f1) and for this reason the response of the standard UIE/IEC flickermeter to interharmonic voltages is also up to 2* f1. Nevertheless, high frequency voltage interharmonics (over 100 Hz) are likewise able to produce light flicker. That is valid for all lamps, except incandescent. And the instrument is expected to properly work and measure also the effects of these interharmonics. The paper discusses the realization of flickermeter in time domain for frequency range up to 3 kHz in Matlab-Simulink environment. The used modifications are based on the analysis of voltage fluctuation caused by integer and non-integer harmonics in range of DC to 3 kHz, on utilization of the measured interharmonic-flicker curves of lamps, and are performed in the block 1 to block 4 of the standard flickermeter scheme.
机译:由于历史原因,电源电压的波动是初级观察的,因为归属于电压调制(AM)和UIE / IEC Flichermeter的响应,其基于白炽灯泡 - 人眼脑卒中设计。从另一个观点来看,可以通过叠加在电压波形上的子发声和/或间谐波组件来引入电压幅度波动。电压am的边界谐波频率约为。对基本系统频率(F 1 )的双重,因此标准UIE / IEC Flickermeter与InterHargarconic电压的响应也高达2 * F 1 。然而,高频电压互动(超过100Hz)同样能够产生轻闪烁。除了白炽灯之外,对所有灯都有效。并且仪器预计将适当地工作和衡量这些互惠的影响。本文讨论了MATLAB-SIMULINK环境中频率范围的时域的FLICKERMERS的实现。使用的修改基于DC至3 kHz范围内的整数和非整数谐波引起的电压波动的分析,以利用灯的测量的灯泡闪烁曲线,并在块1中执行到块4标准的Flickermeter方案。

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