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HIGH-FIDELITY TESTING FOR RELIABLE AND COMPLIANT POWER NETWORKS

Field of Science:Energy Engineering and Power Technology
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ARTICLE ANNOTATION

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Abstract. Introduction. This article presents a high-fidelity testing system designed to assess and verify the integration of renewable energy sources and distributed energy resources into power networks. The study enables the evaluation of voltage stability, harmonic distortions, and overall system performance through real-time measurements, power quality diagnostics, and event-based analyses. The proposed approach supports compliance verification with regulatory standards and enhances the reliability of modern power grids. Materials and Methods. In this study, the integration of renewable energy sources into electrical power networks was evaluated based on high-precision experimental testing. In accordance with IEC and IEEE standards, comprehensive analyses of system stability, power quality, and regulatory compliance were conducted using Hardware-in-the-Loop (HIL) testing technologies—enabling real hardware devices to be evaluated within a mathematical modeling environment—and Supervisory Control and Data Acquisition (SCADA) systems. Results. Experimental tests demonstrated that the application of intelligent inverter settings and adaptive protection algorithms significantly improved voltage and frequency stability, as well as power quality indicators, confirming their compliance with international standards.

AUTHORS

Science ID: DQD-0525-0034

Science ID: FQD-0425-0014

Science ID: FQD-1225-0030

Science ID: MQD-0526-0386

Tags

# kuchlanish# muvofiqlik# energiya# barqarorligi# sifati# garmonik# integratsiyalash# buzilishlar# qayta# elektr# tarmog‘i# ishonchliligi# tarmoqlarining# me’yoriy# talablarga# muvofiqligi# tiklanuvchi# manbalarini# energiyasi# tahlili# tizimining# nomutanosibligi# standartlarga

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