| Literature DB >> 35957404 |
Gabriella Crotti1, Yeying Chen2, Huseyin Çayci3, Giovanni D'Avanzo4,5, Carmine Landi4, Palma Sara Letizia1, Mario Luiso4, Enrico Mohns2, Fabio Muñoz6, Renata Styblikova7, Helko van den Brom6.
Abstract
The integration of renewable energy sources on a large scale in the electrical energy distribution systems, as well as the widespread of non-linear loads, has led to a significant increase in power quality (PQ) disturbances. For this reason, PQ monitoring is also becoming a key task in medium voltage (MV) grids. The measurement of PQ at MV levels can only be performed using instrument transformers (ITs) to scale down the level of voltage and current to levels suitable for the input stage of PQ instruments. However, no international standards currently require the verification of the errors introduced by ITs in the measurement of PQ phenomena. Moreover, this issue is only partially addressed in the scientific literature, where papers dealing with specific and limited aspects of the problem can be found. For this reason, this paper aims to comprehensively assess the issue, proposing IT accuracy verification tests for different PQ parameters. First, a set of PQ phenomena relevant for IT testing is chosen, as well as the associated ranges of variation, based on a review of the enforced standards and the scientific literature. For each selected PQ phenomenon, possible performance indices and test waveforms are proposed. Finally, the proposed procedure is validated by applying it to the characterization of two different types of commercial voltage transformers.Entities:
Keywords: accuracy; instrument transformers; power quality; power system measurements
Year: 2022 PMID: 35957404 PMCID: PMC9371017 DOI: 10.3390/s22155847
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.847
Maximum limit of PQ phenomena from the literature and standards.
| PQ Phenomenon | Limits |
|---|---|
| Frequency deviation | ±15% of rated frequency |
| Supply voltage and current deviation | From 5% up to 200% of amplitude rated voltage |
| Harmonic voltage | 10% from 2nd up to 15th—5% from 16th up to 50th |
| Interharmonic voltage | 3% from DC up to 20 Hz—5% from 20 Hz up to 100 Hz |
| Amplitude and phase modulation | Frequency modulating from 0.1 Hz up to 5 Hz—Kx = 0.1% |
| Oscillatory Transient | Up to 5 kHz, up to 22% of rated amplitude |
Proposed PIs for IT characterization: a summary.
| Test Category | Test Type | Quantity to Measure | Performance Index |
|---|---|---|---|
| Steady State | Amplitude and Frequency Variation | Amplitude | Ration error
|
| Phase | Phase error
| ||
| Harmonics and Interarmonics | Amplitude | Ratio error
| |
| Phase | Phase error
| ||
| Total Distortion | Total frequency error
| ||
| Dynamic | Amplitude modulation | Amplitude | Ratio error
|
| Phase | Phase error
| ||
| Combination of amplitude and phase | Total Vector Error | ||
| Frequency | Frequency Error | ||
| Rate of change of Frequency Error | |||
| Transient | Oscillatory Transient | Peak magnitude | Error peak magnitude
|
| Time shift | Time shift error
| ||
| Decay time | Devay time error
|
Rated characteristics of the investigated instrument transformers.
| Name | Primary | Secondary | Rated | Accuracy | Rated Insulation Level (kV) |
|---|---|---|---|---|---|
| Inductive VT | 20/√3 | 100√3 | 50 | 0.5 | 12 |
| LPVT | 7 | 7 | 25 | 0.5 | 24 |
Figure 1Block diagram of the generation and measurement setup: (a) for inductive MV VT; (b) for LPVT.
Figure 2Block diagram of the generation and measurement setup for current sensor under test.
The errors and uncertainties of the two-channel measuring system at 50 Hz with input voltage ranging from 0.1 V to 3 V under various PQ phenomena.
| Single | Harmonics/Interharmonics | Amplitude/ | Transient | |
|---|---|---|---|---|
| 0 | 3 | 1 | 1 | |
| 0 | 1 | 1 | 1 | |
| 3 | 3 | 3 | 3 | |
| 2 | 2 | 1 | 1 |
ε(f0) refers to the ratio errors at 50 Hz. Δ(f0) refers to the phase errors at 50 Hz. U(ε0) refers to the expanded uncertainties for ratio errors. U(δ0) refers to the expanded uncertainties for phase errors.
Figure 3Block diagram (a) and picture (b) of the generation and measurement setup for inductive CT characterization with CMI CCC.
Figure 4Block diagram (a) and picture (b) of the generation and measurement setup for MV combined ITs.
Proposed test point for amplitude and frequency deviations.
| Test Point 1 | Test Point 2 | Test Point 3 | |||||||
|---|---|---|---|---|---|---|---|---|---|
| 1.A | 1.B | 1.C | 2.A | 2.B | 2.C | 3.A | 3.B | 3.C | |
| Frequency (Hz) | 42.5 | 50 | 57.5 | 42.5 | 50 | 57.5 | 42.5 | 50 | 57.5 |
| Amplitude (% of rated) | 5 | 100 | 120 | ||||||
Proposed test point for amplitude and frequency deviations.
|
|
|
|
|
| Amplitude (% of fundamental) | 5 | 10 | 1 |
| Harmonic Order | 2nd | 3rd | 50th |
|
|
|
|
|
| Amplitude (% of fundamental) | 5 | 10 | 1 |
| Frequency (Hz) | 75 | 375 | 2475 |
* Fundamental component at rated amplitude and frequency.
Proposed test point for harmonics and interharmonics.
| Test Point 4 | |
|---|---|
|
| Harmonics at 1% of the fundamental from the 2nd to the 50th order |
|
| 1% of the fundamental at 7 Hz, 149 Hz, 951 Hz, 2048 Hz |
* Fundamental component at rated amplitude and frequency.
Proposed test point for amplitude modulation.
| Amplitude Modulation | Test Point 1 | Test Point 2 |
|---|---|---|
| 10 | 10 | |
| 2 | 5 |
* Fundamental component at rated amplitude and frequency.
Proposed test point for phase modulation.
| Phase Modulation | Test Point 1 | Test Point 2 |
|---|---|---|
| 0.1 | 0.1 | |
| 2 | 5 |
* Fundamental component at rated amplitude and frequency.
Proposed test point for oscillatory transient.
| Oscillatory Transient | Test Point 1 | Test Point 2 | Test Point 3 | Test Point 4 |
|---|---|---|---|---|
| 22 | 22 | 22 | 22 | |
| 500 | 1000 | 2000 | 5000 | |
| τ (µs) | 600 | 600 | 600 | 600 |
* Fundamental component at rated amplitude and frequency.
Figure 5Ratio (a) and phase (b) errors of the VT under test at different fundamental amplitudes and frequencies.
Ratio and phase errors of VT in harmonics and interharmonic measurements.
| Harmonics | Interharmonics | |||
|---|---|---|---|---|
| Test Point 1 | 0.045 | −0.93 | 0.0158 | −0.49 |
| Test Point 2 | −0.062 | −1.02 | −0.042 | −2.41 |
| Test Point 3 | −2.93 | −7.35 | −2.86 | −7.23 |
Figure 6Ratio (a) and phase (b) errors of VT under test in FTN conditions with harmonic components (circle markers) and interharmonic components (square markers).
Figure 7Oscillatory transient characterized by UOT = 22% of Un, fOT = 5 kHz and τ = 600 µs, φOT = 0 rad measured at VT primary side (blue curve) and secondary side (red curve).
VT PIs results under oscillatory transient phenomena.
| Test Point 1 | −0.04 | 0.02 | −0.36 |
| Test Point 2 | −0.06 | 0 | −0.49 |
| Test Point 3 | −3.59 | 0 | −1.01 |
| Test Point 4 | −7.61 | 0.02 | −4.52 |
Figure 8Ratio (a) and phase (b) errors of LPVT under test at different fundamental amplitudes and frequencies.
Ratio and phase errors of LPVT in harmonics and interharmonic measurements.
| Harmonics | Interharmonics | |||
|---|---|---|---|---|
| Test Point 1 | −1.42 | 0.026 | −0.85 | 0.01 |
| Test Point 2 | −2.20 | 0.056 | −3.55 | 0.18 |
| Test Point 3 | −5.56 | 1.2 | −5.57 | 1.22 |
Figure 9Ratio (a) and phase (b) errors of LPVT under test in FTN conditions with harmonic components (rhombus markers) and interharmonic components (square markers).
Maximum values of TVE, FE and RFE of LPVT.
| Amplitude Modulation | Phase Modulation | |||||
|---|---|---|---|---|---|---|
| TVE (%) | FE (mHz) | RFE (Hz/s) | TVE (%) | FE (mHz) | RFE (Hz/s) | |
| Test Point 1 | 1.85 | 3.2 | 12.44 | 1.95 | 3.9 | 13.97 |
| Test Point 2 | 1.88 | 4.1 | 13.43 | 2.05 | 10.4 | 39.27 |
Figure 10RFE of LPVT under test in amplitude (a) and phase (b) modulations with modulation frequency of 5Hz (rhombus markers) and 2Hz (circle markers).
LPVT PIs results under oscillatory transient phenomena.
| Test Point 1 | −3.86 | 0.03 | −2.35 |
| Test Point 2 | −5.10 | 0.04 | −3.42 |
| Test Point 3 | −5.74 | 0.04 | −4.75 |
| Test Point 4 | −8.72 | 0.03 | −5.57 |