Cost-optimized probabilistic maintenance for condition monitoring of wind turbines with rare failures
Viktor Begun, Ulrich Schlickewei

TL;DR
This paper introduces a cost-optimized probabilistic maintenance method for wind turbines with rare failures, using a novel failure threshold sampling based on profit, and demonstrates its effectiveness through a case study showing significant savings over traditional approaches.
Contribution
The paper presents a new probabilistic maintenance model that incorporates profit-based failure thresholds and accounts for component influence, improving cost predictions and maintenance strategies for wind turbines.
Findings
Considering turbine component influence is more critical than seasonality.
Random maintenance can outperform reactive maintenance in profitability.
The proposed model achieves substantial cost savings over competitors.
Abstract
We propose a method, a model, and a form of presenting model results for condition monitoring of a small set of wind turbines with rare failures. The main new ingredient of the method is to sample failure thresholds according to the profit they give to an operating company. The model is a multiple linear regression with seasonal components and external regressors, representing all sensor components except for the selected one. To overcome the scarcity of the training data, we use the median sensor values from all available turbines in their healthy state. The cumulated deviation from the normal behavior model obtained for this median turbine is calibrated for each turbine at the beginning of the test period and after known failures. The proposed form of presenting results is to set a scale for possible costs, control for random maintenance, and show a whole distribution of costs…
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Taxonomy
TopicsMachine Fault Diagnosis Techniques · Structural Health Monitoring Techniques · Probabilistic and Robust Engineering Design
MethodsSparse Evolutionary Training · Linear Regression
