Uncertainty Sources in Observer-based Power Harmonics Measurement

سال انتشار: 1402
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 72

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شناسه ملی سند علمی:

JR_ASAS-1-3_007

تاریخ نمایه سازی: 28 آذر 1402

چکیده مقاله:

Power harmonics, inter-harmonics and sub-harmonics are among the most challenging issues in power quality and electromagnetic compatibility. Harmonics are known to cause overheating of transformers, increased transmission losses and inadvertent operation of remote relays. Accurate and fast measurement or estimation of harmonics amplitude and phases is an important task for conformity assessment of electrical devices, harmonics mitigation, issuance of electricity bills for industrial sector and many other purposes. Harmonic measurement techniques are diverse and numerous. One of the most common approaches is to use state observers or Kalman filters to measure harmonics. In this paper, different uncertainty sources in observer-based harmonic measurement techniques are discussed. Two common approaches, namely; methods based on the Fourier transform and observer-based approaches are discussed in this regard. Identification and quantification of these uncertainty sources is of vital importance in laboratory accreditation according to ISO/ IEC ۱۷۰۲۵ standard for quality management in testing laboratories. After each source of uncertainty is identified, it should be quantified using either of the two existing evaluation methods.

نویسندگان

Mohammad Mahdi Share Pasand

Electrical Engineering Research Group, Research Center of Technology and Engineering, Standard Research Institute, Karaj, Iran

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  • IEEE std. ۵۱۹, “Recommended Practices and Requirements for Harmonic Control ...
  • IEC ۶۱۰۰۰-۳-۶, “Electromagnetic compatibility (EMC) – Part ۳-۶: Limits – ...
  • Pasand, Mohammad Mahdi Share. “Harmonic Aggregation Techniques: Methods to Compensate ...
  • Pasand, MM Share. “Harmonic reduction systems using active and passive ...
  • Pasand, Mohammad Mahdi Share, and Fateme Taherkhani. “Extended kalman filtering ...
  • Chen, C. I., et al. “Extended real model of Kalman ...
  • EN ۵۰۱۶۰:۲۰۱۱, Voltage Characteristics of Electricity Supplied by Public Electricity ...
  • IEC ۶۱۰۰۰-۳-۲: ۲۰۰۹, Electromagnetic Compatibility (EMC) - Part ۳-۲: Limits-Limits ...
  • IEC ۶۱۰۰۰-۴-۷, Electromagnetic compatibility (EMC) - Part ۴-۷: Testing and ...
  • IEC ۶۱۰۰۰-۴-۳۰:۲۰۱۵, Electromagnetic Compatibility (EMC)—Part ۴-۳۰: Testing and Measurement Techniques—Power ...
  • Dindar, B., and Ömer Gül. “The detection of illicit cryptocurrency ...
  • Mostafaei, Mohsen, and Jawad Faiz. “An overview of various faults ...
  • IEC ۶۲۶۱۲: ۲۰۱۵, Self-ballasted LED lamps for general lighting services ...
  • Kester, Walt. Data conversion handbook. Newnes, ۲۰۰۵ ...
  • Ferrero, Alessandro, et al., eds. Modern measurements: Fundamentals and applications. ...
  • IEC ۶۱۸۶۹-۶: ۲۰۱۶. Instrument Transformers—Part ۶: Additional General Requirements for ...
  • BIPM JCGM ۱۰۱:۲۰۰۸. Guide to the Expression of Uncertainty in ...
  • Mingotti, Alessandro, Lorenzo Peretto, and Roberto Tinarelli. “A Closed-form Expression ...
  • Marais, Zander, et al. “Measurement uncertainty of current harmonics during ...
  • United Kingdom accreditation service (UKAS). UKAS LAB ۳۴: ۲۰۰۲. The ...
  • ISO/IEC ۱۷۰۲۵: ۲۰۱۷. General requirements for the competence of testing ...
  • Taghvaie, Amir, et al. “A Comprehensive Review of Harmonic Issues ...
  • Share Pasand, Mohammad Mahdi, and Mohsen Montazeri. “Observer design for ...
  • Pasand, MM Share, and H. D. Taghirad. “Descriptor approach to ...
  • Share Pasand, Mohammad Mahdi. “Luenberger‐type cubic observers for state estimation ...
  • Pasand, Mohammad Mahdi Share, and Ali Akbar Ahmadi. “Performance evaluation ...
  • Pasand, Mohammad Mahdi Share, and Ali Tavakoli Golpaygani. “Feedback deep ...
  • Singh, Santosh Kumar, et al. “Several variants of Kalman filter ...
  • La Scala, Barbara F., and Robert R. Bitmead. “Design of ...
  • Dardanelli, Andrea, et al. “Model-based Kalman filtering approaches for frequency ...
  • Nie, Xiaohua. “Detection of grid voltage fundamental and harmonic components ...
  • Pradhan, Yuglina, and Aritro Dey. “Performance investigation of extended Kalman ...
  • Ray, Pravat Kumar, and BidyadharSubudhi. “Ensemble-Kalman-filter-based power system harmonic estimation.” ...
  • Beides, Husam M., and Gerald Thomas Heydt. “Dynamic state estimation ...
  • Macias, JA Rosendo, and A. Gomez Exposito. “Self-tuning of Kalman ...
  • Zhang, Jian, et al. “Estimation of power quality using an ...
  • Will, Newton C., and Rafael Cardoso. “Comparative analysis between FFT ...
  • Nayak, Pravati, and B. N. Sahu. “A robust extended Kalman ...
  • Chen, Cheng-I., and Yeong-Chin Chen. “Comparative study of harmonic and ...
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