Author
Abstract
The operationalization of machine learning models at scale remains a central challenge for data-driven enterprises due to complexities in deployment automation, governance, and post-deployment performance management. This article presents a structured MLOps framework leveraging Databricks pipelines to enable scalable, secure, and continuously monitored machine learning model deployment in cloud environments. The proposed approach integrates Delta Lake and Delta Live Tables for reliable data ingestion and transformation, MLflow for experiment tracking and model lifecycle management, and Databricks Model Serving for real-time and batch inference. The study demonstrates how automated pipelines support end-to-end orchestration of data preprocessing, distributed model training, hyperparameter optimization, deployment, and continuous performance monitoring. Built-in observability mechanisms and drift detection techniques are employed to ensure sustained model accuracy and reliability in production. By utilizing cloud-native infrastructure across AWS and Azure, the framework enhances scalability, fault tolerance, and operational efficiency while reducing manual intervention. The results highlight measurable improvements in deployment speed, model governance, and system reliability, underscoring the effectiveness of Databricks-based MLOps pipelines for enterprise-grade machine learning systems.
Suggested Citation
Uttama Reddy Sanepalli, 2024.
"Operationalizing MLOps with Databricks Pipelines: Scalable Machine Learning in Cloud Environments,"
International Journal of Scientific Research in Computer Science, Engineering and Information Technology, International Journal of Scientific Research in Computer Science, Engineering and Information Technology, vol. 10(6), pages 2544-2552, November.
Handle:
RePEc:jbh:ijsrcs:v10:y2024:i6:id:1795
DOI: 10.32628/CSEIT25113573
Note: Article URL: https://ijsrcseit.com/home/article/view/CSEIT25113573
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