Optimization of Distributed Generation in Power System
A special issue of Energies (ISSN 1996-1073). This special issue belongs to the section "F1: Electrical Power System".
Deadline for manuscript submissions: 10 February 2027 | Viewed by 36
Editor
2. School of Electronic, Electrical and Communication Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
Interests: flexible HVDC transmission technology; distributed power generation and energy storage technology; DC power grid key equipment technology
Special Issues, Collections and Topics in MDPI journals
Special Issue Information
Dear Colleagues,
With the rapid development of new power systems, distribution networks, station-area grids and microgrids have presented a new operational pattern characterized by high-penetration renewable energy, high-proportion power electronic equipment, and large-scale integration of ultra-high-power charging piles, which breaks the steady-state and unidirectional power flow operation mode of traditional power grids. The stochastic fluctuation of renewable energy output, the low-inertia and nonlinear characteristics of power electronic devices, and the short-term impact loads of ultra-high-power charging piles easily induce power quality problems such as voltage deviation, harmonic distortion and three-phase unbalance. Meanwhile, they cause power supply security risks including power flow violation, reduced fault tolerance, and insufficient operational stability, restricting the safe and efficient operation of power grids and renewable energy accommodation. Focusing on the above practical challenges, this Special Issue focuses on the optimal control of distributed generators in multiple scenarios, summarizes cutting-edge theories and key technologies, and explores grid regulation strategies adaptable to new loads and high-penetration renewable energy. Topics of interest for publication include, but are not limited to, the following:
- Source-load optimal dispatching;
- Low-inertia stability control;
- Charging pile power quality governance;
- Voltage and reactive power optimization;
- Microgrid mode switching control;
- Power grid harmonic suppression;
- Distribution network overload prevention;
- DG coordinated intelligent regulation;
- Grid security risk prevention;
- AI-based DG dynamic control.
Dr. Jingyuan Yin
Guest Editor
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Keywords
- distributed generators
- optimal control
- high-penetration renewable energy
- power electronic grid connection
- power quality
- power supply security
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