EN 60868-0-1993 en Flickermeter Part 0 Evaluation of Flicker Severity《闪烁计 第0部分 闪烁强度的评价》.pdf
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1、3404583 O057792 978 EUROPEAN STANDARD NORME EUROPENNE EUROPISCHE NORM EN 60868-0 February 1993 UDC 621.317.7 Descriptors: Metrology, measuring instruments, flickermeter, evaluation, statistics, fidelity, verification, tests English version Flickermeter Part O : Evaluation of flicker severity (IEC 86
2、8-0 : 1991) Flickermtre Flickermeter Partie O: Evaluation de la sverit du flicker %il O: Beurteilung der Flickerschrfe (CE1 868-0 : 1991) (IEC 868-0 1991) This European Standard was approved by CENELEC on 1992-12-09. CENELEC members are bound to comply with the CENKENELEC Internal Regulations which
3、stipulate the conditions for giving this European Standard the status of a national standard without any alteration. Up-to-date lists and bibliographical references concerning such national standards may be obtained on application to the Centrai Secretariat or to any CENELEC member. This European St
4、andard exists in three official versions (English, French, German). A version in any other language made by translation under the responsibility of a CENELEC member into its own language and notified to the Centrai Secretariat has the same status as the official versions. CENELEC members are the nat
5、ional electrotechnical committees of Austria, Belgium, Denmark, Finland, France, Germany, Greece, Iceland, Ireland, Italy, Luxembourg, Netherlands, Norway, Portugal, Spain, Sweden, Switzerland and United Kingdom. CENELEC European Committee for Electrotechnical Standardization Comit Europen de Normal
6、isation Electrotechnique Europisches Komitee fr Elektrotechnische Normung Central Secretariat: rue de Stassart 35, B-1050 Brussels O 1993 Copyright reserved to CENELEC members Ref. No. EN 60868-0 : 1993 E = 3404583 0057793 1304 Page 2 EN 6086-O : 1993 Foreword The CENELEC questionnaire procedure, pe
7、rformed for finding out whether or not the Qchnical Report IEC 868-0 : 1991 could be accepted without textual changes, has shown that no common modifications were necessary for the acceptance as European Standard. The reference document was submitted to the CENELEC members for formal vote and was ap
8、proved by CENELEC as EN 60868-0 on 9 December 1992. The following dates were fixed: - latest date of publication of an identical national standard (dop) 1993-12-01 - latest date of withdrawal of conflicting national standards (dow) 1993-12-01 Annexes designated normative are part of the body of the
9、standard. In this standard, annex ZA is normative. m 3404583 0057794 740 m Page 3 EN 60868-0 : 1993 CONTENTS Page FOREWORD 2 Clause Statistical evaluation Short-term flicker severity assessment 2.1 Choosing the multipoint algorithm . 2.2 23 Accuracy of the Pd evaluation Interpolation . 4.1 Linear in
10、terpolation . 4.2 Non-linear interpolation . - 4.3 Pseudo zero interpolation Smoothing percentile points “ . Non-linear dassification . Performance tests including the classifier . Evaluation of long-tem flicker severity . “ Reference . Practical checking of the Pst evaluation Agreement between simp
11、lified assessment methods and evaluation - 4 6 6 7 9 9 11 11 11 11 12 13 14 15 16 FIGURES . 18 Annex ZA (normative) Other international publications quoted in this standard with the references of the relevant European publications 27 3404583 O057795 b87 Page 4 EN 60868-0 : 1993 FLICKERMETER Part O:
12、Evaluation of flicker severity 1 Statlstlcal evaluatlon The UIE/IEC flickermeter simulates the process of physiological visual perception and gives a reliable indication of the reaction of an observer to any type of flicker, which is independent of the source of the disturbance. The flickermeter mon
13、itors individual and sequential flicker occurrences in units of perceptibility; it is necessary to evaluate its output by a method that indicates severity level for regular and irregular type of flicker. The output of the instrument is one unit, at the threshold of perceptibility. The concern of UIE
14、 is to achieve a unique method for flicker evaluation using an evaluation procedure that is equally applicable to any kind of fluctuating load. The specification of limits for the disturbances generated by the various categories of equip- ment is the task of the appropriate standardization bodies. T
15、o take account of the mechanisms of vision and the building up of annoyance, the flicker shall be evaluated over a sufficiently representative period of time. Moreover because of the random nature of flicker caused by some loads It must be assumed that during this time its instantaneous level can be
16、 widely and unpredictably variable. it is important to check not only the maximum attained levels but also for what percentage of a significant observation period any given flicker level has been exceeded. To cover all cases, a statistical approach is essential and this requires a function to be est
17、ablished relating flicker sensation levels and the corresponding percentages of duration, over the observa- tion period. The steps to establish this function are the following: - first the measured instantaneous flicker sensation levels at the output of Block 4 of the flickermeter are classified acc
18、ording to their value, thus obtaining their frequency distribution; - when the observation period expires, the cumulative probability function (CPF) is established. This method has been called “time at level classification“ and is illustrated in figure 1. Figure 2 shows the graphical representation
19、of a CPF curve where, for clarity, only a small number of classes has been used. Figures 3 to 5 give examples of CPF curves obtained for different disturbing loads. It can be seen that the shapes of the curves are dissimilar, yet a common criterion is required to describe them in a concise and meani
20、ngful way and so assess flicker severity quantitatively and objectively. Rage 5 EN 6086-O : 1993 If all CPF curves followed a standard type of distribution, such as Gaussian, they might be characterised by a few parameters such as mean, standard deviation and so on. This not being the case, a multip
21、oint method which could be used to characterise any CPF curve was developed. A suitable algorithm for use with various shapes of CPF curves can be expressed as follows: Kl Pl + % P2 + . Kn Pn where: Pst ir the value of short-term flicker severity; Ki to Kn are weighting the choice of 0,l % as a mini
22、mum percentile provides a suitable response for large, infrequent flicker amplitudes. A suitable observation period should be chosen. This could be selected to match the duty cycle of a specific disturbing equipment but it is desirable to adopt a common time, independent of the specfic type of distu
23、rbing source belng considered. in fulfilling this objective it has been necessary to consider again the physiology of flicker perception and the results of tests on human subjects and to try to determine what time interval would be appropriate to represent the reaction of the average observer to a w
24、ide range of flicker characteristics. m 3404583 0057797 45T m Page 6 EN 60868-0 : 1993 An interval of 10 min has been selected as a good compromise. It is long enough to avoid giving too much Importance to isolated voltage changes. It is also long enough to allow an unaware subject to notice the dis
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