EN 61800-2-1998 en Adjustable Speed Electrical Power Drive Systems Part 2 General Requirements Rating Specifications for Low Voltage Adjustable Frequency a c Power Drive Systems (R.pdf
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1、STD-BSI BS EN b1800-2-ENGL L99 S Lb24bb 073bb40 b9i-I II BRITISH STANDARD Adjustable speed electrical power drive systems - Part 2: General requirements - Rating specifications for low voltage adjustable frequency ax, power drive systems The European Standard EN 61800-21998 has the status of a Briti
2、sh Standard ICs 29.200 NO COPYING WTHOUT BSI PERMISSION EXCEPT AS PERMITTED BY COPYRIGHT LAW BS EN 61800-2: 1998 IEC 61800-2: 1998 STD-BSI BS EN bLOO-2-ENGL 1998 Lb2LibbS 073bb4L 520 = Amd. No. Date BS EN 61800-2:1998 Text affected National foreword This British Standard is the English ianguage vers
3、ion of EN 61800-21998. It is identical with IEC 61802: 1998. The UK participation in its preparation was entrusted to Technical Committee PEIs22, Static power convertor equipment, which has the responsibility to: - aid enquirers to understand the text; - present to the responsible internatio Q is th
4、e total r.m.s. value; h is the harmonic order; Qh is trie r.m.s. value of harmonic component of order h; O can represent either current or voltage. For the purpose of this standard and for clarity, limits are referred to the corresponding rated value. Limits for THD and THF are defined by: THD= and
5、THF= QIN QN NOTE I - These definitions are inaccordance with the second edition of IEV 551 and with common practice. The network voltage waveform is much less distorted than the injected current. Therefore, application of both definitions, total harmonic distortion coefficient THD or total harmonic
6、factor THF, to the voltage provides the same result while the difference is significant when current is considered. NOTE 2 - It is important to note that these definitions include interharmonics. When interharmonics are present the wave form is no longer periodical, which can produce more complex ef
7、fects than those produced by harmonics. If interharmonics are negligible, these equations simplify to: THD= JChTP“eh and THF= Jm QIN QN where QN is the rated r.m.s. value of the fundamental; QN is the rated total r.m.s. value. lhe summation is extended to and includes order 40, according to IEC comm
8、on practice. NOTE 3 - For particular use, the highest frequency content of THD (order h from 14 to 40 inclusive) is named partial harmonic distortion coefficient PHD, and the even content (where order h is only even) is named even harmonic distortion coefficient EHD. Applied to current this gives: a
9、nd EHD= IlN Page 16 EN 61800-2:1998 2.4.9 converter input displacement factor cos 1 cosine of the phase displacement angle between the fundamental phase components of the voltage and current on the input a.c. side of the input power converter 2.4.1 O line-side displacement factor cos al cosine of th
10、e phase displacement angle between the fundamental phase components of the voltage and current on the input a.c. side of the CDM 2.4.1 1 input total power factor, AL ratio of the total power input, to the apparent power, as determined at the connection of the CDM to the supply Example: in a three-ph
11、ase system where the voltage is considered sinusoidal. ;iI. = (U, IL1 fi cos pILJ 1 CU, I, J3 ) = (IL1 14,) x cos pIL1 NOTE 1 -The power factor includes the effect of displacement cos(pi and of harmonics by means of the deformation factor v = A I cos rp. NOTE 2 - The definition applies to the conver
12、ter input (subscript V) or to the CDM input line side (subscript L). 2.4.12 d.c. current /, average value of the current in the d.c. link over one full period of the input power system frequency 2.4.1 3 maximum allowable a.c. system, symmetrical short-circuit current Isc maximum allowable symmetrica
13、l short-circuit current (IscM), as specified on the rating plate can be related to the fundamental component of the line-side rated a.c. current (/LN1) by means of the short-circuit ratio (RSC) RCC is the ratio of the short-circuit power of the source to the fundamental apparent power on the line-si
14、de of the converter(s). (See IEC 60146-1-1) The maximum allowable symmetrical short-circuit current (ISCM) is of importance in the definition of the protection of the converter. At the point of common coupling (PCC), the relative short-circuit power shall be considered (see 1.5.35. of IEC 60146-1-1)
15、. This sc has to be limited to the following RSCM: where ILNI is equal to the fundamental content of IL. Page 17 EN 61800-2:1998 2.5 CDM, BDM and converter output parameters Symbols defined in 2.5 are included in table 1. 2.5.1 rated continuous output current IaN total r.m.s. output current which ca
16、n be supplied continuously without exceeding established limitations, under prescribed operating conditions 2.5.2 overload capability Iam maximum output current which can be supplied, for a specified period of time, without exceeding established limitations under prescribed operating conditions 2.5.
17、3 operating frequency range range of fundamental frequency over which the converters output can be controlled 2.5.4 load-side converter a.c. rated voltage U,N1 RMS value of the rated fundamental voltage at the a.c. terminals of the load-side converter NOTE - This is the voltage which appears at the
18、a.c. terminais of the load-side converter and is not necessarily the fundamental voltage of the motor. 2.5.5 base frequency base frequency of an adjustable frequency drive system is the lowest frequency at which it is capable of delivering maximum output power 2.5.6 rated fundamental output current
19、RMS value of the fundamental component of the output current which can be supplied continuously without exceeding established limits 2.5.7 efficiency of power conversion t, t efficiency 170 of the drive system is the ratio of the power delivered by the motor shaft to the total power drawn from the i
20、nput power supply (see feeding line in figure l), and is usually exprssed as a percentage. Efficiency of the CDM (complete drive module) qc is the ratio of the total output power delivered by the CDM to the motor and auxiliaries (motor ventilation fan, etc.) to the total power drawn from the input p
21、ower supply (see feeding line in figure l), and is usually expressed as a percentage 2.5.8 load-side harmonic content this definition is identical to line-side harmonic content (2.4.6) but determined at the output side of the BDM NOTE - Load-side harmonic content is a function of the Converter wavef
22、orm and load reactance. STD-BSI BS EN bLAOO-2-ENGL 1998 Lb24bb9 073bb57 7b0 W Page 18 EN 61800-2:1998 2.5.9 load-side total harmonic distortion THD, the definition of harmonic distortion (2.4.8) can be applied to the output of the BDM yielding THD, NOTE - Load-side voltage total harmonic distortion
23、is expressed as THDU, and load side current total harmonic distortion is expressed as THDI The difference between THD and THF is significant for both voltage and current. 2.5.1 O rated load power factor cosine of the angle between the motor phase voltage and current, at rated load, with sinusoidal v
24、oltage applied 2.5.1 1 load-side displacement factor this definition is identical to line-side displacement factor (2.4.1 O) but determined at the output side of the BDM 2.5.1 2 quasi-square wave stepped waveform as obtained from the difference of two phase-shifted square waves (one square wave per
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