A variety of Oracle databases remain on premises even though many organizations have mandates to move their mission-critical Oracle workloads to the cloud for financial...
The Oracle database is widely used around the globe for mission-critical applications and migrating Oracle workloads to the public cloud requires significant planning and testing. This blog examines the 5 challenges of migrating Oracle database workloads to Microsoft Azure and how to solve them.
For more information on how to use the Silk Platform for fast, resilient, and cost-efficient Oracle workloads on Azure, download Silk for Oracle.
Mission-critical applications on Oracle are data intensive and performance is paramount. The nature of the public cloud as a shared, virtualized environment means that data performance can be unpredictable, with cloud providers setting throttles to place upper limits on speed and volume of data. There is a risk of overpaying for cloud resources to achieve performance. Mission-critical workloads require high throughput and low latency in the cloud to meet user experience and SLA requirements.
Oracle’s database licensing model is complex, requiring customers to tread carefully to avoid unexpected costs. When migrating to the public cloud, an enterprise will likely need additional database licenses because:
If you are using Oracle Exadata and Hybrid Columnar Compression (HCC) for data compression, there are a couple of items to note when migrating to the public cloud:
One alternative is to use Oracle’s Advanced Compression Option instead, but this incurs further database licensing costs. The additional database server CPU power required to perform these compression operations results in customers deploying larger VMs, with more vCPUs, requiring more database licenses.
Database clones are used for development, testing, analytics, and production. Oracle customers using Exadata Snap Clones may be surprised to find that creating writeable clones in the public cloud requires the creation of full clones that take up capacity and are time-consuming to manage.
Data must be secure and resilient. Many Oracle customers use Real Application Clusters (RAC) to run highly available applications across nodes. Oracle RAC is only supported in the Oracle cloud, and a migration to Azure requires different methods to architect for resilience.
Silk’s inline data reduction technology uses resources on the data layer to compress and deduplicate your database without exposure to additional licensing costs. This takes place without the need for user intervention and has no effect on performance, offering customers a considerably more cost-efficient solution.
For more information on how to use the Silk Platform for fast, resilient, and cost-efficient Oracle workloads on Azure, download Silk for Oracle.
A variety of Oracle databases remain on premises even though many organizations have mandates to move their mission-critical Oracle workloads to the cloud for financial...
Years ago, when it came to data platforms, there was a pretty consistent and direct correlation between the size of a company (in employees or revenue) and the size of...