Build Scalable Multi-Tenant SaaS Video Platform on AWS for Global Fitness Media

Enabling high-throughput video uploads and cost-optimized multi-tenant delivery across global user bases

30% Reduction in cloud operating costs

through automated lifecycle and serverless optimization

3x Improvement in upload handling capacity

during peak global traffic periods

About the Client

The client is a global leader in on-demand fitness content, delivering personalized digital workout programs accessible anytime and anywhere. The platform supports both structured training and flexible wellness experiences through a seamless, high-quality digital experience.

Industry

Wellness and Fitness

Years in business

14+ Years

Employee count

50+

Presence

USA, Europe, and Australia

“Forgeahead helped us modernize our cloud infrastructure in a way that improved scalability, reliability, and overall efficiency for our research platform.”

Dr. Michael Harrington

Chief Information Officer

the need

The client operated a global fitness media platform delivering on-demand video content across consumer and enterprise environments. As usage expanded internationally, the platform began facing increasing strain during peak upload periods, particularly when multiple regions generated simultaneous high-volume ingestion requests.


The existing infrastructure struggled with elasticity, resulting in inconsistent performance under burst traffic conditions. Video uploads became a critical bottleneck, impacting user experience and delaying content availability across devices and regions.


Operational overhead also increased as infrastructure scaling and maintenance required continuous engineering intervention. The system lacked fine-grained cost governance and was not optimized for variable workload patterns typical of media-heavy SaaS platforms.


The objective was to redesign the architecture into a fully scalable, multi-tenant SaaS platform capable of handling unpredictable upload spikes while improving cost efficiency, automation, and global performance consistency.

the solution

A multi-tenant architecture was designed to enable shared infrastructure usage across multiple customer environments while maintaining strict logical isolation. This approach improved resource efficiency and reduced duplication across tenant workloads.


To manage unpredictable upload spikes, a serverless ingestion pipeline was introduced using event-driven processing. Upload requests were decoupled from processing workflows, allowing the system to absorb high concurrency without performance degradation.


Cost optimization was addressed through an automated storage lifecycle strategy that shifted inactive video assets to lower-cost storage tiers. This ensured active content remained highly accessible while long-term storage costs were significantly reduced.


Global consistency was improved by implementing a distributed delivery and access layer that optimized performance across regions and device types. This ensured stable upload and retrieval experiences for both web and API-based consumers.


System resilience was strengthened by introducing an event-driven orchestration model that separated upload, processing, and storage functions. This decoupling prevented cascading failures and allowed each component to scale independently based on demand.

The Impact

Higher Upload Throughput

The platform supported significantly higher concurrent upload volumes without degradation in performance.

Cost Efficiency Gains

Storage lifecycle automation and serverless processing reduced overall infrastructure spending.

Improved System Resilience

Decoupled event-driven architecture minimized failure propagation during peak traffic events.

Operational Simplification

Reduced manual intervention through automated scaling and workflow orchestration.

Global Performance Consistency

Users experienced stable upload and playback performance across regions and devices.

Role of AWS

AWS enabled the platform to transition into a highly scalable and event-driven architecture. Serverless compute and event orchestration services handled ingestion workloads dynamically, while durable object storage ensured reliable media persistence and lifecycle-based cost optimization.


AWS also provided the foundation for global delivery, observability, and secure access management. Monitoring, identity, and edge distribution services ensured consistent performance, secure authentication, and real-time system visibility across distributed user environments.

Tech Stack

The platform leveraged a modern web-based architecture for video upload and content management, supporting browser and API-based access across global user bases. Media processing workflows were optimized for large file ingestion and asynchronous processing.


The cloud infrastructure was built on AWS services covering serverless compute, object storage, event-driven messaging, CDN-based delivery, and managed database systems to ensure scalability, resilience, and cost efficiency.


DevOps and operational tooling included automated deployment pipelines, infrastructure-as-code practices, and centralized monitoring systems to ensure reliability, observability, and controlled release cycles.

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