( Vol 46 , Issue 01 ) | 15 Jun 2026
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( Vol 46 , Issue 01 ) | 30 Jun 2026
Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering (ISSN:0258-8013) is a monthly peer-reviewed scopus-indexed journal from 1985 to present. The publisher of this journal is Chinese Society for Electrical Engineering. PCSEE committed to gathering and disseminating excellent research achievements. The journal welcomes all kind of research/review/abstract papers regarding Engineering: Electrical and Electronic Engineering.
Electrical Engineering
Biological Biosystem Engineering
Hardware-software co-design and interfacing
Nanotechnology
Turbines micro-turbines
Power quality
Energy optimization
HVDC transmission
Telecommunication Engineering
Integrated Engineering
Semiconductor chip
Advanced control theories and applications
FACTS devices
High voltage engineering
Electric drives
Power electronics
Electro-mechanical System Engineering
Electronic Engineering
Peripheral equipments
Machine design and optimization
Insulation systems
Electrical machines
Semiconductor chip
Electronic Engineering
This paper first proposes the concept of committed carbon emission operation regions (CCEOR) to depict the low-carbon operation space (LCOS) of power system, which provides more comprehensive information for low-carbon operation analysis. Then, aiming at the construction of the CCEOR boundary (CCEORB) under the high-dimensional nonlinear spatio-temporal coupling variables of power system, this paper develops a CCEORB construction method based on data and model hybrid driven mechanism. With the feature engineering, neural network architecture based on attention mechanism and deep convolution
The large amount of wind power connected to offshore oil and gas platforms has a negative impact on the frequency stability of the system. In actual production, the adjustable and partial production loads represented by the injection pumps account for 30% of the total load, and their power variations or even start-up and shutdown have little impact on production. This type of load has not been directly involved in the frequency regulation of the offshore platform in previous studies, but has a great potential for frequency regulation and a fast response time. Without affecting the productio
Generation maintenance scheduling is an important part of the mid/long-term operation of power systems. It is very critical for maintaining the safe operation of generators and mid/long-term electric power and energy balance of power systems with high proportion of renewable power. Due to the complexity of maintenance constraints such as the duration and time interval, numerous integer variables and constraints are needed for the generation maintenance scheduling model, resulting in difficulties in model solution. Aiming at the above problems, this paper proposes an event-based generation m
In the field of high-voltage, large-capacity, long-distance transmission, the hybrid converter topology has more technical advantages than the single converter. In order to cope with extremely hazardous DC short-circuit faults, the DC short-circuit fault traversal capability of the converter needs to be considered as a priority. First, this paper proposes a hybrid cascade topology with DC short-circuit fault ride-through capability based on line commutated converter (LCC) and modular multilevel converter (MMC). The DC short-circuit fault current limiting control method is then presented. Th
To achieve the integrated energy system's low-carbon development, it is essential to coordinate the conflict of interest distribution under various park scenarios on the basis of protecting information privacy. This paper analyzes the principles of carbon emission trading and green certificate trading to build a two-tier trading framework of green card-carbon emission linkage theory. With the aim of setting the electricity selling and purchasing price and directing the park in setting the unit production plan, the Stackelberg theory is employed to create a leader-follower relationship.