电力公司与特定低压用户的谐波失真责任归因-个案研究

Lugo Aj
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引用次数: 0

摘要

电能质量研究在电力系统中可能引起干扰的电磁现象,这些干扰可以是永久状态(稳态电压、功率因数、谐波、电压不平衡、电压波动、频率变化)或瞬态电压变化。随着电力电子领域的技术进步,需要电能运行的电器数量正在增加和多样化。这些设备(非线性负载)产生扭曲的(即非正弦)电流,即使由正弦源供电,也可以扭曲与公用事业连接点的电压。这些畸变被称为电流和电压的谐波畸变,并被归类为永久状态扰动。由于谐波失真在连接到电力系统的各种消费者中引起几个问题,从噪音、振动和光强变化,缩短电器的使用寿命,在工业部门的情况下,这可能导致生产过程停止。由于主题的重要性,对这些扭曲有限制的规则,这项工作作为一项建议,通过特许经销商和可能的电子设备的网络模型,研究巴西圣保罗市的特许经销商和低压居民消费者之间的责任分配。我们将分析文献中发现的一些方法,如谐波功率法,符合和不符合电流法和叠加法。作为模拟,它们是在ATP Draw环境中完成的,其中生成了必要的结果,用于审查所分析的方法,从而验证其局限性和潜力。
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Harmonic Distortion Responsibility Attribution between Utility and Specific Low-Tension Costumer - Case Study
The Electric Power Quality studies the electromagnetic phenomena that can cause disturbances in the electrical systems, which can be of permanent regime (steady state voltage, power factor, harmonics, voltage unbalance, voltage fluctuation, frequency variation) or transient voltage variations). With the technological advance in the area of power electronics, an increase and diversification of the amount of appliances that need electric energy for its operation is occurring. These devices (non-linear loads) produce distorted (ie non-sinusoidal) current, even when powered by a sinusoidal source, and can also distort the voltage at the connection point with the utility. These distortions are called harmonic distortions of current and voltage and are classified as permanent regime perturbations. As harmonic distortions cause several problems in the various consumers connected to the electrical system, ranging from noises, vibrations and variations in light intensity, shortening the useful life of the appliances, and in the case of the industrial sector, which can lead to a halt to the production process. Due to the importance of the theme, there are rules with limits for these distortions, and this work has as a proposal to investigate computationally a responsibility assignment between a concessionaire and residential consumer of low voltage in the city of Sao Paulo, Brazil, through the network model of the concessionaire and possible electro-electronic equipment We will analyze some methodologies found in the literature, such as the Harmonic Power Method, Conformity and Non-Compliant Current Method and Superposition Method. As simulations, they were done in an ATP Draw environment, where the necessary results were generated for the review of methodologies analyzed, thus verifying, as limitations and potentialities of its own.
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