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Risk Assessment for Operations in the Portuguese Transmission System The Key Issues for the Probability of Contingencies

机译:葡萄牙传输系统在葡萄牙传输系统中的运营风险评估关键问题概要的概要

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The increasing competitiveness of the power systems' environment has created new challenges to the power system security assessment, demanding the development of new methodologies. Important aspects of this evolution are the unbundling of generation, transmission and distribution, caused by regulatory changes and creating a more competitive environment, the increased environmental concerns making it more difficult to build new assets, and the strong incentives to the generation from renewable energy sources. These factors contribute to the increasing stress on operating conditions and, consequently, cause more vulnerable networks. In recent years, the daily routine of transmission system operators has become more complex. The interconnected network is no longer just for mutual support; nowadays it has become the base platform for trading electricity allowing the shifting of increasing volumes of power across the system. Despite all the benefits that doubtless are many, from the operations perspective, the free electricity market presents more unpredictable and less stable power flows, a market-dependent generation pattern, also more unpredictable and less controllable. In addition to the latter, the significant amount of generation from renewable energy sources also contributes to place the system closer to its security limits. Therefore, and despite the bigger complexity and increased quality of service requirements, the energy supply and the optimization of resources remain a permanent goal, fulfilling all the security principles used for system operation. Incidents are naturally unpredictable and after the large disturbances which occurred in recent years (such as the blackouts on 9th May of 2000 in Portugal, on August 14th 2003 in the United States of America, on September 28th 2003 in Italy and in the European UCTE Network on November 4th 2006), the awareness of the risk of unpredictable disturbances has increased, and it has become essential for the decision-making process to have security indices that allow the operator to react in advance and to be aware of inherent risks, preventing harmful situations. The use of methodologies that take advantage of the actual real-time conditions in combination with past knowledge is extremely interesting in the system operation environment, because it gives a more accurate overview to the control room operators. Since long, the deterministic security assessment has been used to guarantee a high level security in system operations of Transmission Systems, being known as N-1 criterion. It tends to provide a conservative security region for protecting the system against severe contingencies. In the
机译:电力系统环境的竞争力越来越高的竞争对电力系统安全评估产生了新的挑战,要求新方法的发展。这种进化的重要方面是由监管变化和创造更具竞争力的环境引起的生成,传播和分配的分布,增加了环境问题,使得建立新资产更加困难,以及从可再生能源发电的强烈激励措施。这些因素有助于对运行条件的压力越来越大,因此导致更多脆弱的网络。近年来,传输系统运营商的日常生活变得更加复杂。互连的网络不再只是为了相互支持;如今,它已成为交易电力的基础平台,从而允许在整个系统上增加增加的电力。尽管毫无疑问,但从运营角度来看,自由电力市场呈现出更不可预测和更不稳定的功率流动,这是一种市场依赖的生成模式,也更加不可预测,可控不可控制。除了后者之外,可再生能源的大量产生还有助于将系统更接近其安全限制。因此,尽管复杂性更大并提高了服务质量要求,但资源的能源供应和优化仍然是永久目标,满足系统操作的所有安全原则。事件自然是不可预测的,并且在近年来发生的大扰动之后(例如2000年5月9日的停电,于2003年8月14日在美国2003年8月28日在意大利和欧洲UCTE网络的情况下2006年11月4日),对不可预测的骚乱风险的认识增加,决策过程必须具有安全指标,使运营商提前做出反应并意识到固有风险,预防有害的索引情况。使用方法的利用与过去知识结合使用的方法非常有趣,因为它可以更准确地概述控制室运营商。自长时间,确定的安全评估已被用来保证传输系统的系统操作中的高级安全性,被称为N-1标准。它倾向于为保护系统免受严重的突发事件提供保守的安全区域。在里面

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