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PV system reliability: An operator's perspective

机译:光伏系统的可靠性:运营商的观点

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The long-term performance of a photovoltaic (PV) system is one of the fundamental sources of its value; the other being the unit value of the energy it is generating. The industry operates under the assumption that a PV system can keep converting photons to electrons quite reliably with minimal interruptions in service for the typical 20–25-year duration of the energy purchase contracts. However, manually assembled macroscopic systems, comprising components with a high quotient of manual labor, and which operate outdoors under noncontrolled conditions, do tend to exhibit issues. The inverter software which is critical for their operation is an additional potential source of failure. In the case of an operator with global presence, relying on local assembly crews and sourcing components from a large number of suppliers, the challenge in keeping hundreds of power plants in optimal operation with regional teams of roving technicians cannot be easily overstated. Outages of mission-critical subsystems comprise 69% of identified service issues and are responsible for 75% of the associated energy losses. Most of the issues manifest at the inverter, but ac subsystem failures and externally caused outages comprise a large share of the biggest losses. Module failures represent a small fraction of identified issues.
机译:光伏(PV)系统的长期性能是其价值的基本来源之一。另一个是它所产生的能量的单位值。该行业的运行假设是,在典型的20-25年的能源购买合同期限内,光伏系统可以将光子转换为电子的过程非常可靠,并且服务中断最少。然而,手动组装的宏观系统(包括具有高手工劳动的部件并且在不受控制的条件下在户外操作)确实表现出问题。对它们的操作至关重要的逆变器软件是另一个潜在的故障源。对于具有全球业务的运营商而言,依靠本地组装人员和从大量供应商处采购组件,要想使数百家发电厂保持最佳运行,就必须要有一支由巡回技术人员组成的区域团队,这是不容置疑的挑战。关键任务子系统的中断占已确定服务问题的69%,并造成了75%的相关能源损失。大多数问题都体现在逆变器上,但是交流子系统故障和外部中断是很大一部分损失。模块故障仅占已识别问题的一小部分。

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