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QUANTIFICATION, CHALLENGES AND OUTLOOK OF PV INTEGRATION IN THE POWER SYSTEM: A REVIEW BY THE EUROPEAN PV TECHNOLOGY PLATFORM

机译:电力系统中光伏集成的量化,挑战和前景:欧洲光伏技术平台的回顾

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Integration in the power system is becoming a limiting factor to the further development of photovoltaics. Proper quantification is needed to evaluate both issues and solutions; the share of annual electricity demand is widely used but we found that some of the metrics which are related to power rather than energy better reflect the impact on networks. Barriers to wider deployment of PV into power grids can be split between local technical issues (voltage levels, harmonics distortion, reverse power flows and transformer loading) and system-wide issues (intermittency, reduction of system resilience). Many of the technical solutions to these issues rely on the inverters as actuators (e.g., for control of active and reactive power) or as interfaces (e.g., for local storage). This role requires further technical standardisation and needs to be taken into account in the planning of power networks. Forecasting, storage, and combination with other renewable sources are interdependent solutions to solve the intermittency issue. Finally, we found that PV is also an opportunity to reduce some investment required to upgrade existing power networks. Through integration with micro-grids and hybrid generators, it can form the basis of novel power systems.
机译:电力系统中的集成正成为光伏技术进一步发展的限制因素。需要适当量化以评估问题和解决方案;年度电力需求份额被广泛使用,但是我们发现与电力而不是能源相关的某些指标可以更好地反映对网络的影响。可以在本地技术问题(电压水平,谐波失真,反向潮流和变压器负载)和系统范围内的问题(间歇性,系统弹性降低)之间划分阻碍将PV广泛部署到电网中的障碍。解决这些问题的许多技术解决方案都依赖于逆变器作为执行器(例如,用于控制有功和无功功率)或作为接口(例如,用于本地存储)。该角色需要进一步的技术标准化,并且在电网规划中必须予以考虑。预测,存储和与其他可再生资源的组合是相互依赖的解决方案,可以解决间歇性问题。最后,我们发现PV也是减少升级现有电力网络所需投资的机会。通过与微电网和混合发电机的集成,它可以构成新型电力系统的基础。

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