利用瞬时功率分析方法诊断感应电机转子的损坏情况

Marjola Puka, Astrit Bardhi, Alfred Pjetri, Aldi Mucka
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引用次数: 0

摘要

所研究问题的现实意义在于,在感应机广泛应用于工业领域的现代社会,使用瞬时功率分析方法及早发现转子损坏对于保持设备不间断运行和降低运营成本至关重要。本研究的目的是调查并确定瞬时功率分析方法在诊断感应机转子损坏方面的有效性,以提高其可靠性并降低生产故障风险。使用的方法包括分析法、分类法、功能法、统计法、综合法。在当今工业中,异步机发挥着核心作用,对其可靠和安全运行提出了很高的要求。这些机器运行中的故障和失灵会导致严重的停机和巨大损失,从而影响公司的财务状况。准确诊断故障的方法之一是分析加到电机电流中的理论成分。分析结果表明,空间矢量、瞬时功率和基频周围的边带频率的位置表明感应机转子铁芯可能断裂。这些成分成为感应机故障检测的关键指标。此外,在三相鼠笼式感应器上进行的实验证实了理论分析的正确性,加强了所开发方法的实用性,有助于早期诊断和提高设备可靠性,并降低维护和维修成本。其实际意义在于开发了一种可用于工业领域的方法,可用于感应机转子损坏的早期诊断,确保提高设备可靠性并降低维护和维修成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diagnostics of Damage to the Rotor of an Induction Machine Using the Method of Instantaneous Power Analysis
The relevance of the problem under study is that in the modern world, where induction machines are widely used in industry, early detection of rotor damage using the method of instantaneous power analysis is critical to maintaining uninterrupted equipment operation and reducing operating costs. The purpose of this study is to investigate and determine the effectiveness of the method of instantaneous power analysis for diagnosing rotor damage in induction machines to improve their reliability and reduce the risk of production failures. The methods used include the analytical method, classification method, functional method, statistical method, synthesis method. In today’s industry, asynchronous machines play a central role, creating a high demand for their reliable and safe operation. Malfunctions and failures in the operation of these machines can lead to serious downtime and considerable losses that affect the financial position of the company. One method of accurate fault diagnosis is to analyses the theoretical components added to the motor current. The analysis revealed that the locus of the space vector, instantaneous power, and sideband frequencies around the fundamental frequency indicate possible broken rotor cores of an induction machine. These components become key indicators for fault detection in induction machines. Furthermore, the experiments on a three-phase squirrel-cage induction confirmed the theoretical analysis, reinforcing the practical significance of the developed methodology for early diagnosis and improving equipment reliability, as well as reducing maintenance and repair costs. The practical significance lies in the development of a methodology that can be used in the industry for early diagnosis of rotor damage in induction machines, ensuring increased equipment reliability and reduced maintenance and repair costs.
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