Technical Transformation of Photovoltaic Power Station

Due to the technical level and other reasons, the early built photovoltaic power station gradually showed its performance defects after a period of operation. With the rapid development of photovoltaic industry, the improvement of photovoltaic system efficiency, the decline of system cost, and the rapid progress of technology, the technical transformation of photovoltaic power station arises spontaneously.

 

The technical transformation of photovoltaic power station is mainly through the deep integration of the Internet of Things, cloud computing, big data, artificial intelligence, new materials, new technologies and photovoltaic power generation industry to transform the power station with low performance indicators into a new intelligent photovoltaic power station. After the transformation, the power generation of the photovoltaic power station has been greatly increased, and the operating cost has been significantly reduced.

 

Through analysis and calculation, it is found that the greater the decay of the old components, the higher the system efficiency, and the higher the grid price of the existing power plants, the better the benefits of technological transformation will be; At the same time, efficient modules with high cost performance ratio will bring better benefits.

 

At present, the technical transformation of the power station is mainly divided into benefit oriented technical transformation, production oriented technical transformation and safety oriented technical transformation. Among them, the benefit oriented technical transformation includes the capacity increase and transformation of the power station, the replacement of old equipment, and the transformation of PID effect suppression device; Production type technical transformation includes upgrading of AGC/AVC system, reactive power compensation and monitoring system; The technical improvement of safety includes the technical improvement of the safety protection of the power monitoring system, the transformation of corroded roof bridges, cable trays, lightning protection and grounding, safety signs, and non-standard ladder climbing.

 

NOA has rich experience in photovoltaic projects, can carry out technical transformation and troubleshooting for photovoltaic systems, and provide professional technical support for photovoltaic system upgrading, so as to improve the performance of photovoltaic systems and solve photovoltaic system failures.

 

 

 

Service Content

The technical support provided by NOA involves many aspects of the photovoltaic power station, which can provide the overall technical support of the power station, as well as technical transformation or troubleshooting of a single item.

 

One. Service content

1. Technical transformation of photovoltaic power station modules
2. Photovoltaic power station bracket technology transformation
3. Transformation of converter box technology
4. technical transformation of PV inverters
5. technical transformation of facilities in the substation room of the photovoltaic power station
6. technical transformation of PV power station cables
7. troubleshooting of PV power stations
8. technical transformation programme implementation

 

 

Two. Reference standard
1. IEC62446-1:2016+AMD1:2018 Amendment 1 - Photovoltaic (PV) systems - Requirements for testing, documentation and maintenance - Part 1: Grid connected systems - Documentation, commissioning tests and inspection 
2. CNCA/CTS 0004-2009A Technical Specification of Grid-connected PV inverter 
3. CNCA/CTS 0016-2015 Guideline of Performance Testing and Quality Assessment For Grid-connected PV Power Plants 
4. CNCA/CTS 0004-2010 Basic Accesptance Requirements for Grid-Connected PV Systems
5. GB/T 14549-1993 Quality of electric energy supply harmonics in public supply network 
6. GB/T 50796-2012 Code for acceptance of photovoltaic power project 
7. GB 50794-2012 Code for construction of PV power station
8. GB 50797-2012 Code for design of photovoltaic power station

 

Service Process

Q&A
The photovoltaic power station system is composed of photovoltaic modules, inverters, combiner boxes, brackets and other components. Problems in one link will affect the operation of the power station, ranging from loss of power generation to zero in case of fire.
What are the factors that affect the overall technical transformation income of photovoltaic power plants?
(1) Feed-in tariff of the project; (2) Power reduction of old modules; (3) System efficiency of photovoltaic power station; (4) Style of the new module.
What are the common failures of photovoltaic power station?
(1) Module failure; (2) Inverter fault; (3) Box transformer failure; (4) 35kv single-phase grounding; (5) Natural disasters; (6) High voltage cable terminal fault; (7) The combiner box is on fire.
What are the factors that affect the output power of photovoltaic power plants?
The solar radiation, tilt angle of battery modules, dust and shadow blocking, and temperature characteristics of modules cause the system power to be low due to improper system configuration and installation.
What are the common faults of the string inverter for external feedback?
It can be classified into six categories: PV voltage anomaly, power grid anomaly, insulation impedance anomaly, leakage current anomaly, communication anomaly and low output power. Among them, the low output power does not belong to a fault, although it has a great impact on user income, which requires necessary analysis.
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