Abstract:
High-precision synchronized measurement data with short measurement latency are required for applications of phasor measurement units (PMUs). This paper proposes a synchr...Show MoreMetadata
Abstract:
High-precision synchronized measurement data with short measurement latency are required for applications of phasor measurement units (PMUs). This paper proposes a synchrophasor measurement method based on cascaded infinite impulse response (IIR) and dual finite impulse response (FIR) filters, meeting the M-class and P-class requirements in the IEC/ IEEE 60255-118-1 standard. A low-group-delay IIR filter is designed to remove out-of-band interference components. Two FIR filters with different center frequencies are designed to filter out the fundamental negative frequency component and obtain synchrophasor estimates. The ratio of the amplitudes of the synchrophasor is used to calculate the frequency according to the one-to-one correspondence between the ratio of the amplitude frequency response of the FIR filters and the frequency. To shorten the response time introduced by IIR filter, a step identification and processing method based on the rate of change of frequency (RoCoF) is proposed and analyzed. The synchrophasor is accurately compensated based on the frequency and the frequency response of the IIR and FIR filters, achieving high-precision synchrophasor and frequency estimates with short measurement latency. Simulation and experiment tests demonstrate that the proposed method is superior to existing methods and can provide synchronized measurement data for M-class PMU applications with short measurement latency.
Published in: Journal of Modern Power Systems and Clean Energy ( Volume: 12, Issue: 5, September 2024)
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- IEEE Keywords
- Index Terms
- Finite Impulse Response ,
- Finite Impulse Response Filter ,
- Infinite Impulse Response ,
- Phasor Measurement Units ,
- Infinite Impulse Response Filter ,
- Synchrophasor Measurements ,
- Response Time ,
- Frequency Response ,
- Fundamental Frequency ,
- Center Frequency ,
- Frequency Components ,
- Frequency Estimation ,
- Simulation Test ,
- Shorter Latency ,
- Positive Frequency ,
- Phase Measurements ,
- Response Ratio ,
- Amplitude Ratio ,
- Negative Component ,
- Filter Response ,
- Good Dynamic Performance ,
- Dynamic Performance ,
- Low-pass ,
- Least-squares ,
- Filter Design ,
- Static Test ,
- Hamming Window ,
- Group Delay ,
- Phase Step ,
- Good Suppression
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Finite Impulse Response ,
- Finite Impulse Response Filter ,
- Infinite Impulse Response ,
- Phasor Measurement Units ,
- Infinite Impulse Response Filter ,
- Synchrophasor Measurements ,
- Response Time ,
- Frequency Response ,
- Fundamental Frequency ,
- Center Frequency ,
- Frequency Components ,
- Frequency Estimation ,
- Simulation Test ,
- Shorter Latency ,
- Positive Frequency ,
- Phase Measurements ,
- Response Ratio ,
- Amplitude Ratio ,
- Negative Component ,
- Filter Response ,
- Good Dynamic Performance ,
- Dynamic Performance ,
- Low-pass ,
- Least-squares ,
- Filter Design ,
- Static Test ,
- Hamming Window ,
- Group Delay ,
- Phase Step ,
- Good Suppression
- Author Keywords