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Affordable Cable System Reliability and Life Extension Strategy

机译:经济实惠的电缆系统可靠性和使用寿命延长策略

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Today, there is increased pressure for electric distribution cooperatives to maintain system reliability without increasing membership costs. This challenge is further compounded by the need to maximize existing legacy infrastructure. While membership reliability is a key consideration, a static economy, a commitment to a lower carbon footprint and the need for rate stability are also key factors that translate into increased operating costs. Many consider age to be the silent killer of America's critical infrastructure. The large fleets of equipment deployed by electric utilities and limited real-time monitoring makes it nearly impossible to know the duty each specific piece of equipment has experienced, thus age alone is used as the main determinant of remaining life. The economic and staffing requirements to replace these aged fleets based solely on in-service life is untenable. The need to find a lean approach to better address this challenge has lead to new technologies that provide detailed information about the equipment's true health or condition to allow the right measure of asset rehabilitation, replacement or extended deployment using actual condition assessment. There are millions of miles underground power distribution systems in service today that are operating beyond the original accounting defined depreciation life and failing at an ever increasing rate. Until recently, management of these underground assets was particularly challenging because once put into service, their concealment prevents visible inspection. A new cable life extension process is revolutionizing the industry by providing a means to field assess, rehabilitate and then certify cable systems to like new status. The proven assessment technology has certified more than 90,000 underground cable systems around the world and has shown that over 75% of aged assets still perform as well or better today as they did when they were first installed, decades ago. The Federal Energy Regulatory Commission's ("FERC") decision to allow capitalization of this new cable life extension technology is prompting many utilities and electric cooperatives coast to coast to reduce cable replacement budgets and make a positive impact on membership costs. These forward looking utilities have experienced extended capital reach, lowered operating and maintenance (O&M) expenditures, efficient resource utilization, minimal property intrusion and a dramatic real-time improvement in cable system reliability.
机译:如今,配电合作社在保持系统可靠性而又不增加会员成本的情况下,承受着越来越大的压力。最大限度地利用现有遗留基础架构的需求进一步加剧了这一挑战。尽管成员资格可靠性是一个关键考虑因素,但静态经济,降低碳足迹的承诺以及对速率稳定性的需求也是导致运营成本增加的关键因素。许多人认为年龄是美国关键基础设施的沉默杀手。电力公司部署的大量设备和有限的实时监控使几乎不可能知道每个特定设备所经历的职责,因此仅以年龄作为剩余寿命的主要决定因素。仅根据服役寿命来替换这些老化的机队的经济和人员需求是站不住脚的。寻找一种精益方法以更好地应对这一挑战的需求导致了新技术的出现,这些技术提供了有关设备真实健康状况的详细信息,从而可以使用实际状况评估来正确衡量资产的修复,更换或扩展部署。如今,有数百万英里的地下配电系统在运行,其运行超出了原始会计定义的折旧寿命,并且以越来越高的速度失效。直到最近,对这些地下资产的管理仍然特别具有挑战性,因为一旦投入使用,它们的隐蔽性就会阻止可见的检查。一种新的延长电缆寿命的方法通过提供一种现场评估,修复然后认证电缆系统使其达到新状态的方法,正在改变行业。久经考验的评估技术已经在全球范围内认证了90,000多个地下电缆系统,并且表明,如今,超过75%的老化资产仍能像几十年前首次安装时一样好或更好。联邦能源管理委员会(“ FERC”)决定将这种新的电缆寿命延长技术资本化的决定,正促使许多公用事业和电力合作社纷纷走下坡路,以减少电缆更换预算,并对会员成本产生积极影响。这些具有前瞻性的公用事业公司经历了扩展的资本覆盖范围,降低了运营和维护(O&M)支出,有效的资源利用,最小的财产入侵以及电缆系统可靠性的实时显着提高。

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