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🏛️ Indexed Academic JournalOriginal: 电力系统自动化 - AEPS

Power System Automation

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Published Research PapersFiltered: Year 2026 • Vol. 32 • 3

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Original ResearchVol. 32, Issue 3 • pp. 100-112DOI: 10.7500/AEPS20260319004Jan 15, 2026

Special Issue Editorial: Construction of High-Voltage Direct Current Architectures and Equipment Technologies for New-Type Power Systems

Authors: Editorial Board of Automation of Electric Power Systems

The construction of new-type power systems, supporting the secure transmission and efficient utilization of large-scale renewable energy, is a major strategic initiative for China's clean energy transition. With the rapid development of energy bases in the western desert and eastern deep-sea regions, the proportion of renewable energy and DC infeed capacity in sending and receiving grids has increased significantly, leading to profound changes in source-grid structure and stability characteristics. This poses new challenges to the core functions of DC transmission technology. Firstly, large-scale renewable bases often lack conventional AC support, making point-to-point DC uneconomical and AC collection schemes risky. Secondly, the interaction mechanisms among sending/receiving grids, renewables, and DC are more complex, with prominent issues such as wide-band oscillations and cascading commutation failures. Thirdly, existing DC equipment exhibits shortcomings in system performance or economy. To address these challenges, this special issue presents 17 selected papers covering DC collection and networking, system characteristics and control enhancement, and novel converter topologies. Key contributions include a land-sea integrated DC collection scheme for gigawatt-scale offshore wind, a thyristor-based DC transformer for desert renewable bases, virtual power coordination control for urban MMC-MTDC systems, active support control for flexible DC, start-stop strategies for hybrid diode-MMC systems, small-signal stability analysis of hybrid multi-infeed systems, stability enhancement using submodule energy storage, harmonic analysis of controllable current-source converters, low-frequency oscillation suppression, commutation failure prediction, and novel topologies such as hybrid LCC, three-phase asymmetric bridge-arm reuse converters, multi-port hybrid MMC, heterogeneous UHVDC with 37.5% full-bridge submodules, and capacitive partial energy transfer DC transformers. The special issue also reports the world's first RB-IGCT-based HCC demonstration. These studies provide theoretical foundations and engineering solutions for the future development of HVDC systems.

Special Issue Editorial: Construction of High-Voltage Direct Current Architectures and Equipment Technologies for New-Type Power Systems
Graphical Abstract
Original ResearchVol. 32, Issue 3 • pp. 100-112DOI: 10.7500/AEPS20260311004Jan 15, 2026

Market-Oriented Power Balancing Mechanisms and Methods for New-Type Power Systems: A Special Issue Overview

Authors: Guest Editors of Automation of Electric Power Systems

The deep advancement of carbon peak and carbon neutrality goals has accelerated the construction of new-type power systems, with the installed capacity share of renewable energy approaching half and its electricity generation share rapidly increasing. However, the randomness, intermittency, and volatility of renewable energy output challenge the balancing of supply and demand, necessitating additional regulation resources. Concurrently, advances in communication, control, and artificial intelligence have enabled new regulation entities such as electrochemical energy storage, compressed air energy storage, and concentrating solar power, while the marginal cost of load-side balancing services declines, fostering the rapid development of virtual power plants and flexibility retrofits of conventional power. Accurately evaluating the value of regulation services and providing reasonable compensation are fundamental to incentivizing participation and investment. Yet, current power balancing mechanisms and market models do not fully reflect the true value of these flexible resources, and technical barriers and costs remain high for distributed resources. In 2025, China preliminarily established a unified national electricity market, covering the entire energy market, and attention has turned to valuing regulation services. This special issue, organized by the editorial board of Automation of Electric Power Systems, compiles 14 papers addressing market-oriented balancing mechanisms, capacity adequacy, cost compensation, flexible resource participation, and market applications. Key contributions include a market-oriented regulation responsibility system with 'substitute quantity' and 'regulation quantity' markets, hierarchical coordination mechanisms, capacity adequacy frameworks, cost compensation mechanisms using deep reinforcement learning, inertia pricing, and trading strategies for electric vehicles and building aggregators. Provincial market designs from Guangdong and Gansu provide practical templates. The issue aims to provide theoretical and practical support for market innovation and the construction of new-type power systems and the unified national market.

Market-Oriented Power Balancing Mechanisms and Methods for New-Type Power Systems: A Special Issue Overview
Graphical Abstract