过载情况下电力线路有功潮流自动控制系统的综合

K. Postoyankova, V. Polishchuk, A. Shuvalova
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引用次数: 0

摘要

目前,当有功功率过载时,几乎没有将潮流控制在规定范围内的自动化系统。监管被分配给电力系统的调度员或通过紧急自动化的方式来执行,从而断开用户的连接。因此,一项紧迫的任务是扩展过载模式下有功潮流自动控制的工具库。的相关性。电力用户的显著增加导致电力系统的复杂化。调度人员的工作量越来越大。保持电力系统各部件的平稳运行是一项非常重要和负责任的任务。在现代电力工业中,及时预警和消除网元过载具有重要意义。本文的研究目的是开发和研究基于模糊逻辑数学装置的电力线有功潮流智能自动控制系统。该系统是根据负载的调节效果来使用的。研究方法。采用了实现过程中静荷载模型的计算方法。将模糊集方法应用于过载有功潮流智能控制系统的构建。采用专家方法对效果进行了评价。结果。使用人工智能方法对负载下的变压器电压进行自动调节,可使过载模式下的有功功率流量减少5 - 7%。
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SYNTHESIS OF AN AUTOMATED CONTROL SYSTEM FOR THE FLOW OF ACTIVE POWER ALONG A POWER LINE IN OVERLOAD CONDITION
Currently, there are practically no automated systems for controlling power flow within the specified limits when the power line is overloaded by active power. Regulation is assigned to the dispatchers of the power system or is carried out by means of emergency automation, which disconnects consumers. Therefore, an urgent task is to expand the arsenal of tools for automatic control of active power flow in overload mode. Relevance. A significant increase in electricity consumers leads to a complication of the electric power system. The workload for dispatching personnel is increasing. Maintaining the smooth operation of the elements of the power system is a very important and responsible task. In modern electric power industry, timely warning and elimination of overloads of network elements are relevant. The study aims are development and research of an intelligent automatic control system for the flow of active power along a power line based on the mathematical apparatus of fuzzy logic. The system is based on the use of the regulating effect of the load. Research methodology. Methods of calculating static load model during their actualization were used. The method of fuzzy sets was used in the construction of an intelligence control system for active power flows in overload condition. The effectiveness was estimated by expert methods. Results. The use of artificial intelligence methods for automatic regulation of transformer voltage under load allows up to 5–7 % reducing the flow of active power in overload mode.
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发文量
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审稿时长
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