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Commercial & Industrial & Utility Solutions



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100kWp Solar Power Plant Solution



Project Information


Project Location: Munich / GERMANY
PV Panel: 350 Wp Monocrystalline
Inverter: GW30K-MT GoodWe three phase commercial inverter
Installed DC Capacity: 288 pcs x 0.35 kWp = 100,8 kWp
Installed Rated AC Capacity: 3 pcs x 30 kW = 90 kW
DC / AC Ratio: 1.12

* The GoodWe SMT series inverter features a 30-50% DC oversizing capability. In that project 12% DC oversizing applied considering the strong level of irradiation of Germany.


Project Components


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PV Panel Main Features




Cabling & Connections Diagram





* Connection diagram. Each string is connected with 16 PV Panels. The total capacity is 6 string x 16 = 96 pcs.




* The GoodWe Ezlogger Pro features 3 communication inputs per inverter. Each communication port can support up to 20 inverters. In total, 60 inverters can be connected. (The GoodWe monitoring box SCB1000 is also available).
* The Max. effective RS485 distance is 1000m for EzloggerPro.
* EzloggerPro is able to perform string level monitoring.



PV System Efficiency Report



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* This report illustrates how the DC oversizing of this installation contributes to increase the total production. If we had followed a 1:1 DC/AC ratio arrangement, the total production would have been 10% lower.




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1MWp Solar Power Plant Solution


Project Information


Project Location: Munich / GERMANY
PV Panel: 350 Wp Monocrystalline
Inverter: GW80K-MT GoodWe three phase commercial inverter
Installed DC Capacity: 2880 pcs x 0.35 kWp = 1008 kWp
Installed Rated AC Capacity: 12 pcs x 80 kW = 960 kW
DC / AC Ratio: 1.05

* The GoodWe MT series inverter features a 30-50% DC oversizing capability. In that project 5% DC oversizing applied considering the strong level of irradiation of Germany.


Project Components


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PV Panel Main Features



Cabling & Connections Diagram






* Connection diagram. Each string is connected with 20 PV Panels. Total project size: 12 string x 20 = 240 pcs. To reach a higher voltage, we left one DC input on each MPPT unused, instead, more PV panels are connected to the remaining 3 DC inputs.





Communication (RS485) connection diagram.



* The GoodWe Ezlogger Pro features 3 communication inputs per inverter. Each communication port can support up to 20 inverters, achieving a total capacity of 60 inverters that can be connected. (There is also another monitoring box which is called SCB1000).
* The Max. effective RS485 distance is 1000m for EzloggerPro.
* EzloggerPro can perform string level monitoring.


PV System Efficiency Report



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*This report shows the total energy produced after all cumulative losses have been subtracted. This project achieved 5% of DC oversizing.
* The GW80K-MT can support 50% DC oversizing.





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5MWp Solar Power Plant Solution


Project Information


Project Location: Munich / GERMANY
PV Panel: 350 Wp Monocrystalline / Bifacial Panel
Inverter: GW80K-MT GoodWe three phase commercial inverter (540V Output)
Installed DC Capacity: 17.880 pcs x 0.35 kWp = 6258 kWp
Installed Rated AC Capacity: 60 pcs x 80 kW = 4800 kW
DC / AC Ratio: 1.30

* GoodWe MT series inverter has 30-50% DC oversizing ability. In that project 30% DC oversizing applied considering the strong level of irradiation of Germany.


Project Components


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PV Panel Main Features



Cabling & Connections Diagram






* Illustration of connection diagram. To achieve higher yield we implies 19 pcs of PV panels to first 10 strings, and 18 pcs of PV panels to the rest 8 strings. There are 298 PV panels installed in total per inverter. DC input power is 104.3 kWp. DC/AC ratio is 1.3.





* There are Ezlogger Pro and PLC board located inside of SCB2000 box. This communication box can support up to 30 inverters. For using more than 30 inverters, we can connect all SCB2000 boxes with Optical Fibre.


PV System Efficiency Report



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* This report shows that bifacial PV panels produce more energy under good irradiation, and has higher PR (Performance Ratio) than traditional systems.
* GW80KHV-MT can support 50% DC oversizing.





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Smart Energy Management System


The Smart Energy Management System (SEMS) of GoodWe is an open protocol monitoring platform. It is designed to help operators to monitor a diverse range of PV plants operating at different locations simultaneously. SEMS carries extensive data processing, including the production of customized charts. Its system of notifications and maintenance functions helps the operators of PV assets to manage the generation of energy efficiently and comfortably, contributing to higher system yields.


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Additional Benefits

Deviation Analysis of Inverters

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The high deviation rate indicates problems of the PV system. SEMS is able to select inverters with high deviation rate. Then by diagnosing the current of each string, users can check the corresponding panels and related installation components to find the root cause of the deviation.


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Carousel Display of All Power Plants


Dynamic carousel display of all the plants under your account.


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Smart Report Generation


Report Generation & Customized Data Analysis
Precise and comprehensive detection & evaluation of plant data
The content and design of the reports can be adjusted to suit individual requirements. In addition to the standard report, a report generator is also available.


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Multilingual System

SEMS portal is a multilingual site. It offers as many as nine languages, including English, Germany, Dutch, Spanish, Portuguese, Czech, Turkish, Korean and Arabic. With the popularity of GoodWe inverters all around the world, more language versions of SEMS will be available.


Intelligent Warning and Troubleshooting



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Optical Fiber Ring Solution


Maintaining a stable data transfer across long distances ranks high among the priorities. GoodWe has come up with a solution based on the integration of an optical fiber ring, in which the data transfer process and its speed remains undisrupted and reliable even when a communication node is broken. All these benefits make this an optimal solution for C&I scenarios.

Advantages

• Provides the most solid basis for a reliable communication
• Long distance data transfer
• Economical


Solution Elements

The integration of the ring solution is possible only with inverters featuring RS485 or Power Line Communications (PLC). This solution is executed through the GoodWe Smart Communication Box 1000 (SCB1000) or Solar Communication Box 2000 (SCB 2000).

Solution Design


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The SCB1000 communicates with the inverter through RS485. Meanwhile, the SCB2000 establishes communication with the inverter through the PLC.






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Multi-scenario Monitoring Solution


There are many ways of monitoring a PV system and displaying the data generated. This kind of information helps users to gain a better understanding of the operation of their solar plants. The compatibility of the GoodWe inverters with multiple standard protocols such as SUNSPEC, IEC 104 and Modbus RTU and their adaptability to third-party monitoring and control platform such as SCADA, are one of the many reasons that make them a perfect fit for a great number of C&I scenarios.

Advantages

• Stable data transfer
• Compatible with third party devices & platforms
• Enhanced data security

Solution Design


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Remote Shutdown Solution


The remote shutdown function is a critical protection primarily aimed at ensuring the integrity of the PV system under situations of extreme emergency, such as fire hazards. In Commercial & Industrial PV systems, it helps operators to enhance and consolidate the system control and maintain the comprehensive safety under challenging environments and conditions. GoodWe is pleased to introduce its Remote Shutdown Solution.

Key Advantages

• Easy Installation
• 1km Range
• Swift Response (≤500ms)

Solution Design


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Solar + Diesel Generator Solution


GoodWe is pleased to introduce the Solar + Diesel Generator Solution. In the occurrence of grid failure, a diesel generator can be utilized as an alternative source of energy, supplying the power missing from the public grid and allowing the grid-connected PV systems to keep powering the loads of the system. The addition of a diesel generator brings the extra benefit of maximizing the use of the solar energy, helping as well to effectively reduce the electricity costs. This is an optimal solution for environments characterized by an unreliable grid operation.

Advantages

• Automatic Switch
• Quick Recovery
• Smooth Operation


DEIF Controller Integration

For this kind of scenario, the C&I inverter of the GoodWe MT Series can be configured to coordinate with the DEIF Smart Power Controller Solution in order to automatically switch on/off the diesel generator according to the local circumstances and the user requirements.

Solution Elements


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Solar + DG Integration Scenario

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Please approach GoodWe for all questions related to the compatibility of this arrangement with other series of GoodWe inverters. For specific questions related to the controller integration on this scenario, please liaise directly with the manufacturer DEIF.






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Export Power Limit Solution


The Export Power Limit function is a critical tool of modern PV systems and its purpose is to help users to enhance and optimize self-consumption, helping them as well to comply with the local grid regulations. GoodWe has made an Export Power Limit Solution available to its customers, suitable for Commercial & Industrial projects of maximum capacity of 4.8MW.

Key Advantages

• Convenient installation
• Easy configuration
• Customizable export power limit to either zero or designated value


Solution Elements

SEC1000

This solution requires the utilization of a GoodWe Smart Energy Controller 1000 (SEC1000). This device executes real-time data collection and analysis. In addition, it also helps to achieve an optimal allocation of the PV system resources.


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Additional Benefits

This solution supports the smooth operation of additional functions such as load consumption monitoring. The data generated by the system is accessible free of charge at the GoodWe Smart Energy Management System Portal (SEMS).

Solution Design


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A single SEC1000 device can perform the export power limit function of as many as 60 inverters. The maximum communication coverage reaches up to 1000 meters.



Spec Download

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