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Homepage>BS Standards>27 ENERGY AND HEAT TRANSFER ENGINEERING>27.160 Solar energy engineering>PD IEC TS 63102:2021 Grid code compliance assessment methods for grid connection of wind and PV power plants
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PD IEC TS 63102:2021 Grid code compliance assessment methods for grid connection of wind and PV power plants

PD IEC TS 63102:2021

Grid code compliance assessment methods for grid connection of wind and PV power plants

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Standard number:PD IEC TS 63102:2021
Pages:42
Released:2021-09-27
ISBN:978 0 580 97386 4
Status:Standard
PD IEC TS 63102:2021 - Grid Code Compliance Assessment Methods for Grid Connection of Wind and PV Power Plants

PD IEC TS 63102:2021 - Grid Code Compliance Assessment Methods for Grid Connection of Wind and PV Power Plants

Standard Number: PD IEC TS 63102:2021

Pages: 42

Released: 2021-09-27

ISBN: 978 0 580 97386 4

Name: Grid code compliance assessment methods for grid connection of wind and PV power plants

Status: Standard

Overview

The PD IEC TS 63102:2021 is a comprehensive technical standard that provides detailed methods for assessing grid code compliance for the connection of wind and photovoltaic (PV) power plants to the electrical grid. This standard is essential for ensuring that renewable energy sources are integrated into the grid in a manner that is both efficient and reliable.

Key Features

  • Comprehensive Guidelines: This standard offers a thorough set of guidelines for evaluating the compliance of wind and PV power plants with grid codes, ensuring that all necessary criteria are met.
  • Up-to-Date Information: Released on September 27, 2021, this standard includes the latest information and methodologies, making it a current and relevant resource for professionals in the field.
  • Detailed Assessment Methods: The document spans 42 pages, providing in-depth methods and procedures for conducting compliance assessments, ensuring that no detail is overlooked.
  • International Standard: As an IEC technical specification, this standard is recognized and utilized globally, making it a valuable resource for international projects and collaborations.

Benefits

Adopting the PD IEC TS 63102:2021 standard offers numerous benefits, including:

  • Enhanced Reliability: By following the prescribed assessment methods, power plants can ensure that they meet grid code requirements, leading to more reliable and stable grid operations.
  • Improved Efficiency: The standard provides clear and concise methods for compliance assessment, reducing the time and effort required to achieve grid code compliance.
  • Global Acceptance: As an internationally recognized standard, compliance with PD IEC TS 63102:2021 can facilitate smoother project approvals and collaborations across different regions and countries.
  • Future-Proofing: Staying up-to-date with the latest standards ensures that power plants are prepared for future regulatory changes and advancements in technology.

Who Should Use This Standard?

This standard is designed for a wide range of professionals and organizations involved in the renewable energy sector, including:

  • Power Plant Developers: Ensure that new wind and PV power plants are designed and constructed to meet grid code requirements from the outset.
  • Grid Operators: Use the standard to assess the compliance of power plants seeking connection to the grid, ensuring that they meet all necessary criteria.
  • Regulatory Bodies: Reference the standard when developing and enforcing grid codes and compliance requirements for renewable energy sources.
  • Consultants and Engineers: Utilize the detailed assessment methods provided in the standard to conduct thorough and accurate compliance evaluations.

Content Highlights

The PD IEC TS 63102:2021 standard covers a wide range of topics related to grid code compliance assessment, including:

  • Introduction to Grid Codes: An overview of the purpose and importance of grid codes in the integration of renewable energy sources.
  • Assessment Methodologies: Detailed procedures and methodologies for evaluating the compliance of wind and PV power plants with grid codes.
  • Technical Requirements: Specific technical criteria that power plants must meet to achieve grid code compliance.
  • Case Studies: Real-world examples and case studies illustrating the application of the assessment methods in various scenarios.
  • Future Trends: Insights into emerging trends and future developments in grid code compliance and renewable energy integration.

Conclusion

The PD IEC TS 63102:2021 standard is an invaluable resource for anyone involved in the development, operation, and regulation of wind and PV power plants. By providing comprehensive and up-to-date methods for assessing grid code compliance, this standard helps ensure that renewable energy sources are integrated into the grid in a manner that is both efficient and reliable. Whether you are a power plant developer, grid operator, regulatory body, or consultant, this standard offers the guidance and tools you need to achieve and maintain grid code compliance.

DESCRIPTION

PD IEC TS 63102:2021


This standard PD IEC TS 63102:2021 Grid code compliance assessment methods for grid connection of wind and PV power plants is classified in these ICS categories:
  • 27.160 Solar energy engineering
  • 27.180 Wind turbine energy systems

This technical specification highlights recommended technical methods of grid code compliance assessment for grid connection of wind and PV power plants as the basic components of grid connection evaluation. The electrical behaviour of wind and PV power plants in this technical specification includes frequency and voltage range, reactive power capability, control performance including active power based control and reactive power based control, fault ride through capability and power quality.

Compliance assessment is the process of determining whether the electrical behaviour of wind and PV power plants meets specific technical requirements in grid codes or technical regulations. The assessment methods include compliance testing, compliance simulation and compliance monitoring. The input for compliance assessment includes relevant supporting documents, testing results and validated simulation models, and continuous monitoring data. The scope of this technical specification only covers assessment methods from a technical aspect; processes related to certification are not included.

This technical specification is applicable to wind and PV power plants connected to the electrical power grid.