Advanced Technologies in Power Quality and Power Disturbance Data Application—Volume II
A special issue of Symmetry (ISSN 2073-8994). This special issue belongs to the section "Engineering and Materials".
Deadline for manuscript submissions: closed (31 August 2024) | Viewed by 308
Special Issue Editors
Interests: power quality data application; voltage sag; harmonic and supraharmonic
Special Issues, Collections and Topics in MDPI journals
Interests: voltage sag; high quality power supply; custom power technology
Special Issues, Collections and Topics in MDPI journals
Special Issue Information
Dear Colleagues,
The electrical power system can be regarded as a comprehensive symmetrical system of power supply and power consumption, with load microelectronics technology being the core of many new technologies, emerging industries, The most common PQ events are associated with sags (dips), harmonics/interharmonics, transients, and asymmetrical variations. PQ is related to the safe and stable operation of power systems and users' high-quality electricity consumption. Therefore, the monitoring, prevention, and mitigation of PQ disturbances are of great concern for both parties. To achieve these goals, the study of many PQ issues and their methods of analysis remains a challenging task. Moreover, with the widespread use of power quality monitoring tools, more and more users and developers are starting to realize that power disturbances can carry valuable information about the conditions of a system and its equipment. As a result, initiatives that explore the “useful” aspects of power disturbances using power big data have emerged.
The topics of interest for this planned issue of Symmetry include but are not limited to:
- Voltage sag perception, warning, location and treatment technology;
- Transient characteristic analysis of AC/DC power grid under voltage sag conditions;
- The division of harmonic responsibility;
- Harmonic power flow algorithms considering distributed generation;
- Study of generation, propagation characteristics and influence of ultra-high harmonics;
- Harmonic source load identification;
- Three-phase imbalance management;
- Power quality data application;
- Power quality in integrated energy systems;
- The modeling of power quality interference sources;
- The optimization and management of power quality problems in new power systems;
- Three-phase unbalanced power flow analysis technology;
- Power quality analysis and economic research.
Dr. Yi Zhang
Prof. Dr. Ying Wang
Guest Editors
Manuscript Submission Information
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Keywords
- voltage sag
- harmonic responsibility
- harmonic power
- supraharmonic
- integrated energy system
- power quality data
- power flow analysis
- interference modeling
- power quality analysis
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