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Article

Active/Reactive Power Separation Mechanisms for Different Signal-Modulated Power Devices Based on Time-Varying Amplitude/Frequency Rotating Vectors in Dynamic Processes

1
School of Electrical and Electronic Engineering, Huazhong University of Science and Technology, Wuhan 430074, China
2
Electric Power Dispatching and Control Center of Guangdong Power Grid, Guangzhou 510635, China
*
Author to whom correspondence should be addressed.
Processes 2025, 13(6), 1907; https://doi.org/10.3390/pr13061907
Submission received: 15 May 2025 / Revised: 12 June 2025 / Accepted: 13 June 2025 / Published: 16 June 2025

Abstract

The dynamic behavior of large-scale systems containing diverse devices is a crucial focus for system operators, particularly in power systems where grid-connected devices generate AC electrical signals through various modulated methods. One of the main objectives of power systems is to transmit power. To this end, time-varying amplitude/frequency rotating vectors are used to describe different AC voltage and current signals, and then the active/reactive power separation mechanisms and characteristics for different signal-modulated power devices are explored. These mechanisms and characteristics are analyzed and verified through time-domain simulations. The theoretical contribution of this paper is that it thoroughly clarifies the misconception in current power theories by demonstrating that active power and reactive power naturally arise as inherent physical quantities rather than being solely mathematically defined. In terms of practicality, this paper can provide physically grounded insights for the power calculation methods and offer guidance for the design of power measurement in actual power system dynamic processes. Through the analysis presented in this study, the analysis, measurement, and control of the active/reactive components in renewable energy equipment based on the instantaneous reactive power calculation method or the traditional sinusoidal steady-state power calculation method do not need to be updated.
Keywords: power generation mechanisms; different signals modulated power devices; dynamic processes; reactive power; time-varying amplitude/frequency rotating vectors power generation mechanisms; different signals modulated power devices; dynamic processes; reactive power; time-varying amplitude/frequency rotating vectors

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MDPI and ACS Style

Yang, H.; Yi, Y.; Li, S.; Zhou, Y. Active/Reactive Power Separation Mechanisms for Different Signal-Modulated Power Devices Based on Time-Varying Amplitude/Frequency Rotating Vectors in Dynamic Processes. Processes 2025, 13, 1907. https://doi.org/10.3390/pr13061907

AMA Style

Yang H, Yi Y, Li S, Zhou Y. Active/Reactive Power Separation Mechanisms for Different Signal-Modulated Power Devices Based on Time-Varying Amplitude/Frequency Rotating Vectors in Dynamic Processes. Processes. 2025; 13(6):1907. https://doi.org/10.3390/pr13061907

Chicago/Turabian Style

Yang, Hui, Yang Yi, Shun Li, and Yunpeng Zhou. 2025. "Active/Reactive Power Separation Mechanisms for Different Signal-Modulated Power Devices Based on Time-Varying Amplitude/Frequency Rotating Vectors in Dynamic Processes" Processes 13, no. 6: 1907. https://doi.org/10.3390/pr13061907

APA Style

Yang, H., Yi, Y., Li, S., & Zhou, Y. (2025). Active/Reactive Power Separation Mechanisms for Different Signal-Modulated Power Devices Based on Time-Varying Amplitude/Frequency Rotating Vectors in Dynamic Processes. Processes, 13(6), 1907. https://doi.org/10.3390/pr13061907

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