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An Evolution in Cost Effective Power Utility Grounding Asset Management: Plan, Design, Build, Assess Operate

机译:成本效益电力实用工具接地管理的演变:计划,设计,构建,评估和运营

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Grounding systems are critical plant for the correct operation of major power installations, particularly major sub-stations. As the average age of major substations in a utility's franchise increases, the likelihood that an assessment of the condition of a grounding system will be initiated. Whether or not the grounding system needs to be assessed in line with the substations age is often debated. However, the evidence is that the driving factors behind an assessment of a grounding system's aging or condition, is dependent on factors different to that of the remainder of the plant. Assessing the condition of a ground requires the execution of an appropriate regime of tests, conducted over the lifetime of the ground, and in some cases over the lifetime of the associated HV asset. Maximizing the knowledge gleaned from the information contained in these measurements is the art of the specialist, which distinguishes them from then infrequent practitioner. Experience over the past 20 years of managing grounding assets, has demonstrated that managing grounding systems, can and should evolve from a perfunctory duty to a recognized, significant contributor to the proper functioning of every power utility asset and to the network as a whole. Many existing grounding asset management strategies focus on design. This has and is resulting in a lack of rigour in condition monitoring and unidentified failures for ageing assets. Asset management must consider a cost effective method of life cycle integrity verification. This paper presents the benefits of such a method over existing strategies by explaining why excessive focus to a particular phase of the grounding asset life-cycle produces a false security in the management of an aging asset. The various life-cycle stages of a grounding asset need to be balanced against the rest of its expected lifetime, which can be evaluated by the effectiveness of each stage to maximizing an assets lifetime. The major insight to this effectiveness is the realization that the lifetime of these assets if primarily driven by external forces.
机译:接地系统是主要的电力装置,特别是主要子站的正确操作的关键植物。随着公用事业的特许经营权的平均年龄增加,将启动对接地系统状况的评估的可能性。是否需要根据变电站逐行评估接地系统经常争论。然而,证据表明,对接地系统的衰老或条件的评估背后的驱动因素取决于与植物剩余的因素不同。评估地面的状况要求在地面的寿命中执行适当的测试制度,并且在某些情况下在相关的HV资产的寿命上。最大化从这些测量中包含的信息收集的知识是专家的艺术,它将它们与那时不频繁的从业者区分开来。经验在过去20年管理接地资产的情况下表明,管理接地系统,可以并应从敷衍义务到公认的,重要的贡献者来实现每个电力公用事业资产和整个网络的正常运作。许多现有的接地资产管理战略专注于设计。这使得能够缺乏严格的病情监测和未识别的衰老失败。资产管理必须考虑成本效益的生命周期完整性验证方法。本文通过解释为什么对接地资产生命周期的特定阶段过度重点产生了对老化资产管理中的虚假安全性的原因,提出了这种方法对现有策略的益处。接地资产的各种生命周期阶段需要与其预期寿命的其余部分相平衡,这可以通过每个阶段的有效性来评估,以最大限度地提高资产寿命。这种有效性的主要见解是实现这些资产的一生,如果主要由外力驱动。

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