首页> 外文会议>CIGRE Session >POORLY DAMPED ELECTROMECHANICAL OSCILLATION IN THE 345 kV INTERCONNECTION BETWEEN ARGENTINA AND CHILE - IDENTIFICATION BASED ON A SLIDING PRONY ANALYSIS
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POORLY DAMPED ELECTROMECHANICAL OSCILLATION IN THE 345 kV INTERCONNECTION BETWEEN ARGENTINA AND CHILE - IDENTIFICATION BASED ON A SLIDING PRONY ANALYSIS

机译:阿根廷与智利之间的345 kV互连阻尼机电振荡差 - 基于滑动掌分析

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Small signal stability problems are one of the major threats to grid stability and reliability. An unstable oscillatory mode can cause large-amplitude oscillations and may result in system breakup and large scale blackouts. There is an existent and non-operating, 345 kV transmission line between Argentinean Interconnected System (SADI) and the Northern Interconnected System (SING), which is one of the two major electrical isolated power systems in Chile with current surplus capacity and ongoing renewable energy developments. In the past, this line was only dedicated to transmit power to Chile from a power plant located in Argentina but isolated from its power system. Recently, there has been an increasing interest in restarting the operation of the 345 kV transmission line to allow the interconnected operation of both systems, SADI and SING, with growing power flows in both directions. Last year, the Company AES GENER (owner of the 345 kV transmission line and some generation plants in Argentina and Chile) received the authorization from both governments to start interconnection feasibility studies [5], to make interconnection tests and to develop operational procedures. Starting up the operation of the transmission line, in order to establish power transactions between both countries, requires the involvement of many energy market players like: system operators, transmission operators, energy policy makers, generation companies, consumers and governmental entities. The "Instituto de Investigaciones Tecnologicas para Redes y Equipos Electricos" (IITREE) from La Plata National University, was responsible for performing power measurements, due to the fact that according to power system studies performed by the IITREE and the "Compania Administradora del Mercado Mayorista Electrico S.A." (CAMMESA), a poorly damped electromechanical oscillation in the electrical power was expected.
机译:小的信号稳定性问题是网格稳定性和可靠性的主要威胁之一。不稳定的振荡模式可能导致大幅度振荡,并可能导致系统分解和大规模的停电。阿根廷互连系统(Sadi)和北部互连系统(唱片)之间存在存在的和非操作,345 kV传输线,这是智利的两个主要电气隔离电力系统之一,具有当前的剩余容量和正在进行的可再生能源发展。在过去,这条线只致力于从位于阿根廷的电厂传送到智利,而是从其电力系统隔离。最近,在重新启动345 kV传输线的操作以允许允许系统,悲伤和唱歌的互连操作,并且在两个方向上流动的互联操作。去年,公司AES BENT(345千伏输电线路和阿根廷和智利的一些一代工厂)收到了两国政府授权,开始互连可行性研究[5],制定互连测试并开发运营程序。启动传输线的操作,为了建立两个国家之间的电力交易,需要许多能源市场参与等:系统运营商,传输运营商,能源政策制定者,一代公司,消费者和政府实体。来自La Plata国立大学的“Instituto de Investigaciones Tecnologicas Para Redes Y Equipos Meching Yearipos Meching”(Iitree)负责执行电力测量,这是由于IITREEM和Compania管理员德尔梅尔多瓦市长Mayorista的电力系统研究电器SA“ (Cammesa),预期电力中的阻尼机电振荡差。

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