Validation of a Qualification Procedure Applied to the Verification of Partial Discharge Analysers Used for HVDC or HVAC Networks

Author:

Vera Carlos1,Garnacho Fernando12,Klüss Joni3ORCID,Mier Christian4ORCID,Álvarez Fernando1ORCID,Lahti Kari5ORCID,Khamlichi Abderrahim12,Elg Alf-Peter3,Rodrigo Mor Armando6ORCID,Arcones Eduardo1,Camuñas Álvaro1,Pakonen Pertti5,Ortego Javier17,Vidal José Ramón2ORCID,Haider Miran3,Rovira Jorge2ORCID,Simon Pascual2,Squicciarini Antonio1

Affiliation:

1. ETSIDI, Departamento de Ingeniería Eléctrica, Universidad Politécnica de Madrid, Electrónica, Automática y Física Aplicada, 28006 Madrid, Spain

2. Fundación para el Fomento de la Innovación Industrial, FFII-LCOE, Eric Kandel Street 1, Getafe, 28906 Madrid, Spain

3. RISE Research Institutes of Sweden, 501 15 Borås, Sweden

4. Electrical Sustainable Energy Department, Delft University of Technology, Mekelweg 4, 2628 CD Delft, The Netherlands

5. Electrical Engineering Department, Faculty of Information Technology and Communication Sciences, Tampere University (TAU), Korkeakoulunkatu 3, 33720 Tampere, Finland

6. Instituto de Tecnología Eléctrica, Universitat Politècnica de València, Camino de Vera s/n, 46022 Valencia, Spain

7. AMPACIMON SLU, C. de la Antracita, 7, Nave 15, 28045 Madrid, Spain

Abstract

The insulation condition of HVDC grids consisting of cable systems, GIS, and converters should be monitored by partial discharge (PD) analysers using artificial intelligence (AI) tools for efficient insulation diagnosis. Although there are many experiences of PD monitoring solutions developed for the supervision of the insulation condition of HVAC grids using PD analysers, there are no standardised requirements for their qualification available yet. The international technical specification TS IEC 62478 provides general rules for PD measurements using electromagnetic methods but does not define performance requirements for qualification tests. HVDC and HVAC PD analysers must be tested by unambiguous test procedures. This paper compiles experiences of using PD analysers with HFCT sensors in HVAC grids (cable systems, GIS, and AIS) to define a qualification procedure for HVAC systems. This procedure is applicable to HVDC grids (cable systems, GIS, AIS, and converters) because the particularities related to the insulation behaviour under HVDC voltage are also considered. Representative PD sources are discussed in HVAC and HVDC positive and negative polarity. The PD pulse trend of representative insulation defects in HVDC cable systems is quite different from that of HVAC grids. Special attention should be paid to the acquisition of PD signals in HVDC grids since few pulses appear in solid insulations, mainly during voltage changes (polarity reversals or surges), but rarely in continuous operation with constant direct voltage. A synthetic PD simulator has been developed to reproduce trains of PD pulses or noise signals, similar to those that can appear in the power network. A set of three functionality tests has been developed for qualification of the diagnostic capabilities of PD analysers working up to 30 MHz addressed to HVDC or HVAC grids: (1) PD recognition test, (2) PD clustering test, and (3) PD location test. This qualification procedure has been validated by means of a round-robin test performed by five research institutes (RISE, FFII, TUDelft, TAU, and UPM) using commercial and in-development AI PD recognition and clustering tools to demonstrate its robustness and applicability. Applying this qualification procedure, two PD methods for electrical detection and prevention of insulation defects have been approved, one for HVAC and the other for HVDC grids.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference24 articles.

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2. Best practices for Partial Discharge Monitoring of HVDC Cable Systems and Qualification Tests;Garnacho;CIGRE Sci. Eng. A Scopus Regist. Mag. (CSE),2023

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4. (2016). High Voltage Test Techniques—Measurement of Partial Discharges by Electromagnetic and Acoustic Methods. TC 42 High-Voltage and high-Current Test Techniques. Standard No. IEC TS 62478:2016.

5. Location and characterization of partial discharge sites in shielded power cables;Mashikian;IEEE Trans. Power Deliv.,1990

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