Dynamic Rate Limiting & Circuit Breakers for Resilient Identity APIs in Go
Blog post from Didit
Implementing dynamic rate limiting and circuit breakers is vital for protecting identity verification APIs from abuse and ensuring their stability and reliability, with Go being an ideal language for such resilient microservices due to its concurrency and performance. The identity verification APIs are crucial for business processes like user onboarding and financial transactions, making their reliability paramount. Didit offers a globally distributed identity verification platform that simplifies resilience by integrating built-in features such as rate limiting and fault tolerance, allowing developers to focus on their core business logic. The dynamic rate limiting adapts based on client reputation and current load, while the circuit breakers prevent cascading failures by managing service requests based on their success or failure rates. These mechanisms, along with effective integration and monitoring using tools like Prometheus and Grafana, help maintain system responsiveness and user trust. Didit's services are designed to handle complex identity verification tasks efficiently, offering a modular architecture with AI-native processing for speed and accuracy, thereby reducing the need for intricate client-side resilience logic.
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