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Fuel Cell Backup Power System for Grid Service and Microgrid in Telecommunication Applications

机译:电信应用中用于电网服务和微电网的燃料电池备用电源系统

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This paper presents the feasibility and economics of using fuel cell backup power systems in telecommunication cell towers to provide grid services (e. g., ancillary services, demand response (DR)) as well as power for cell towers during emergency conditions. This study evaluates the strategic integration of clean, efficient, and reliable fuel cell systems with the grid for improved economic benefits. The backup systems can potentially enhance capabilities through information exchange with the power grid, which adds value for grid services that depend on location and time. The economic analysis focused on the potential revenue for distributed telecommunications fuel cell backup units to provide value-added power supply. This paper includes case studies on current fuel cell backup power locations and regional grid service programs. The grid service benefits and system configurations for different operation modes provide opportunities for expanding backup fuel cell applications responsive to grid needs. The objective of this work is primarily on how fuel cells can become a significant part of the telecom backup power fleet to reduce system costs, environmental impact, and dependence on fossil fuels, while ensuring continuity of indispensable service for mobile users. The study identifies different fuel cell applications and nano/microgrid approaches for an extensive network of fuel cells as distributed energy resources. The possibilities of various application scenarios extend to fuel cell technologies and microgrids for reliable power supply.
机译:本文提出了在电信蜂窝塔中使用燃料电池备用电源系统来提供电网服务(例如辅助服务,需求响应(DR))以及在紧急情况下为蜂窝塔供电的可行性和经济性。这项研究评估了清洁,高效和可靠的燃料电池系统与电网的战略整合,以提高经济效益。备用系统可以通过与电网的信息交换来潜在地增强功能,从而为依赖位置和时间的电网服务增加价值。经济分析的重点是分布式电信燃料电池备用单元提供增值电源的潜在收入。本文包括有关当前燃料电池备用电源位置和区域电网服务计划的案例研究。电网服务的优势和针对不同操作模式的系统配置为响应电网需求而扩展备用燃料电池应用提供了机会。这项工作的目标主要是在如何确保燃料电池如何成为电信后备电源车队的重要组成部分,以降低系统成本,环境影响和对化石燃料的依赖的同时,确保移动用户必不可少的服务的连续性。这项研究确定了广泛的燃料电池网络作为分布式能源的不同燃料电池应用和纳米/微电网方法。各种应用场景的可能性都扩展到了燃料电池技术和微电网,以提供可靠的电源。

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