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Review of the Impact of Vehicle-to-Grid Technologies on Distribution Systems and Utility Interfaces

机译:审查车辆到电网技术对配电系统和公用事业接口的影响

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Plug-in vehicles can behave either as loads or as a distributed energy and power resource in a concept known as vehicle-to-grid (V2G) connection. This paper reviews the current status and implementation impact of V2G/grid-to-vehicle (G2V) technologies on distributed systems, requirements, benefits, challenges, and strategies for V2G interfaces of both individual vehicles and fleets. The V2G concept can improve the performance of the electricity grid in areas such as efficiency, stability, and reliability. A V2G-capable vehicle offers reactive power support, active power regulation, tracking of variable renewable energy sources, load balancing, and current harmonic filtering. These technologies can enable ancillary services, such as voltage and frequency control and spinning reserve. Costs of V2G include battery degradation, the need for intensive communication between the vehicles and the grid, effects on grid distribution equipment, infrastructure changes, and social, political, cultural, and technical obstacles. Although V2G operation can reduce the lifetime of vehicle batteries, it is projected to become economical for vehicle owners and grid operators. Components and unidirectional/bidirectional power flow technologies of V2G systems, individual and aggregated structures, and charging/recharging frequency and strategies (uncoordinated/coordinated smart) are addressed. Three elements are required for successful V2G operation: power connection to the grid, control and communication between vehicles and the grid operator, and on-board/off-board intelligent metering. Success of the V2G concept depends on standardization of requirements and infrastructure decisions, battery technology, and efficient and smart scheduling of limited fast-charge infrastructure. A charging/discharging infrastructure must be deployed. Economic benefits of V2G technologies depend on vehicle aggregation and charging/recharging frequency and strategies. The benefits will receive increased a- tention from grid operators and vehicle owners in the future.
机译:在称为“车辆到电网(V2G)”连接的概念中,插入式车辆既可以充当负载,也可以充当分布式能源和动力资源。本文回顾了V2G /网格到车辆(G2V)技术对单个车辆和车队的V2G接口的分布式系统,需求,收益,挑战和策略的现状和实施影响。 V2G概念可以在效率,稳定性和可靠性等领域提高电网性能。具有V2G功能的车辆可提供无功功率支持,有功功率调节,跟踪可变可再生能源,负载平衡和电流谐波滤波。这些技术可以实现辅助服务,例如电压和频率控制以及旋转备用。 V2G的成本包括电池质量下降,车辆与电网之间需要加强通讯,对电网配电设备的影响,基础设施的变化以及社会,政治,文化和技术障碍。尽管V2G操作会缩短汽车电池的使用寿命,但预计它将对车主和电网运营商变得经济。讨论了V2G系统的组件和单向/双向潮流技术,单个和聚合的结构以及充电/充电频率和策略(非协调/智能协调)。 V2G的成功运行需要三个要素:与电网的电源连接,车辆与电网运营商之间的控制和通信以及车载/车载智能计量。 V2G概念的成功取决于要求和基础架构决策,电池技术以及有限的快速充电基础架构的高效智能调度的标准化。必须部署充电/放电基础设施。 V2G技术的经济利益取决于车辆聚合,充电/充电频率和策略。将来,电网运营商和车主将越来越多地受益。

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