Power-line Flicker
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Power-line flicker is a visible change in brightness of a lamp due to rapid fluctuations in the voltage of the power supply. The
voltage drop In electronics, voltage drop is the decrease of electric potential along the path of a current flowing in a circuit. Voltage drops in the internal resistance of the source, across conductors, across contacts, and across connectors are unde ...
is generated over the source impedance of the grid by the changing load current of an equipment or facility. These fluctuations in time generate flicker. The effects can range from disturbance to epileptic attacks of
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persons. Flicker may also affect sensitive electronic equipment such as
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receivers or industrial processes relying on constant electrical power.


Causes

Flicker may be produced, for example, if a
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uses large
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s or arc furnaces on a distribution network, or frequent starting of an
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motor in an office building, or if a rural residence has a large water pump starting regularly on a long feeder system. The likelihood of flicker increases as the size of the changing load becomes larger with respect to the prospective short-circuit current available at the point of common connection.


Measurement of flicker

The requirements of a flicker measurement equipment are defined in the international electro-technical standard IEC 61000-4-15. A flickermeter is composed of several function blocks which simulate a 230 V/60 W or a 120 V/60 W
incandescent lamp An incandescent light bulb, also known as an incandescent lamp or incandescent light globe, is an electric light that produces illumination by Joule heating a filament until it glows. The filament is enclosed in a glass bulb that is eith ...
(reference lamp) and the human perception system (eye-brain model). From the resulting momentary value of flicker the short term flicker "perceptibility" value ''Pst'' is calculated according to a statistical process over a standardized 10-minute observation interval. Long term flicker ''Plt'' is calculated as the cubic mean of several ''Pst'' values over a standardized two-hour period. The perceptibility value calculation and scaling algorithm were chosen such that a P value of 1.0 corresponds to a level at which 50% of test subjects found the flicker to be both noticeable and irritating. In the standard IEC 61000-3-3 the observation intervals and the limiting values for ''Pst'' and ''Plt'' are specified: {, class="wikitable" , - ! Value, , Observation Interval , , Limiting Value , - , ''Pst'' , , 10 min , , 1.0 , -1 , ''Plt'' , , 2 h , , 0.65


Operating condition of the EUT

The IEC-flicker standard states that the EUT (Equipment Under Test) has to be operated during the test in a way which is the worst case state with respect to flicker. If the EUT is operated in a (relatively) constant fashion during the whole test, ''Plt'' = ''Pst'' will result. If this state is feasible and realistic this means ''Pst'' has to fulfill the limits for ''Plt'' (which are lower). The technical report IEC TR 61547-1 defines the functions and methodology of a light flickermeter. The report details perceptibility values measurements according to the luminous flux of different types of lamps.


Estimation

A purely analytical calculation of ''Pst'' is almost impossible. In the standardIEC 61000-3-3, Limits – Limitation of voltage changes, voltage fluctuations and flicker in public low-voltage supply systems, for equipment with rated current ≤16 A per phase and not subject to conditional connection, Edition 2.0, 2008-06 there are formulas which allow the estimation of the ''Pst'' values to be expected.


Flicker mitigation

Flicker is generated by load changes. Only the amplitude of the load change is relevant, not the absolute value. A reduction in flicker can be attained through making less frequent load changes, or smaller load changes. If the load is changed gradually (for example, by the help of
power electronics Power electronics is the application of electronics to the control and conversion of electric power. The first high-power electronic devices were made using mercury-arc valves. In modern systems, the conversion is performed with semiconduct ...
) instead of step fashion, this also makes flicker less perceptible. The relationship between amplitude of load changes and ''Pst'' is linear, i.e. halving the switched load results in half the ''Pst''. The relationship between number of load changes per time (n/ Tp) and ''Pst'' is non-linear. A halving of load changes reduces ''Pst'' by only about 20%. In order to have half the ''Pst'', the number of load changes must be reduced by a factor of 9.


See also

*
Power quality Electric power quality is the degree to which the voltage, frequency, and waveform of a power supply system conform to established specifications. Good power quality can be defined as a steady supply voltage that stays within the prescribed range, ...


References


External links


FlickerSim open source flicker measurement simulator
Electric power distribution Electromagnetic compatibility Electronics concepts