A Thermal Rating Calculation Approach for Wind Power Grid-Integrated Overhead Lines
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Summary
A decision model is proposed for the thermal ratings of WPIOLs, which regards the minimized wind power curtailment as objective and introduces permissible cumulative LOTS and sag of the conductor as constraints and can be decided to ensure the expected service life of theuctor and safe clearance.
- Type
- article
- Published
- 2018-06-12
- Cited by
- 3
- References
- 24
- Access
- Open access
- OpenAlex
- https://openalex.org/W2808010458
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:59447721
Keywords
Wind power, Electric power transmission, Overhead (engineering), Ampacity, Power (physics)
References
- Robust Corrective Control Measures in Power Systems With Dynamic Line Rating
- Impact From Dynamic Line Rating on Wind Power Integration
- The Loss of Tensile Strength of Hard-Drawn Conductors by Annealing in Servicec
- Guidelines for the selection and operation of bare ACSR conductors with regard to current-carrying capacity
- Effect of elevated temperature operation on the tensile strength of overhead conductors
- A practical approach for increasing the thermal capabilities of transmission lines
- Potential of improved wind integration by dynamic thermal rating of overhead lines
- Statistically determined static thermal ratings of overhead high voltage transmission lines in the Rocky Mountain region
- Probabilistic assessment of the reduction in tensile strength of an overhead transmission line's conductor with reference to climatic data
- A new thermal rating approach: The real time thermal rating system for strategic overhead conductor transmission lines -- Part I: General description and justification of the real time thermal rating system
- Dynamic thermal rating application to facilitate wind energy integration
- Increasing thermal rating by risk analysis
- Comparison between IEEE and CIGRE Thermal Behaviour Standards and Measured Temperature on a 132-kV Overhead Power Line
- Real-Time Overhead Transmission-Line Monitoring for Dynamic Rating
- Reliability Impact of Dynamic Thermal Rating System in Wind Power Integrated Network
- Source-Grid Coordinated Dispatch Method for Transmission Constrained Grid with Surplus Wind Generators
- Autonomous-Synergic Voltage Control Technology Supporting Large-scale Wind Power Integration
- Key Problems and Solutions of Wind Power Accommodation
- Analysis on Provincial System Available Capability of Accommodating Wind Power Considering Peak Load Dispatch and Transmission Constraints
- Applicability of Dynamic Thermal Line Rating for Long Lines
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