Stress testing results for identity network capacity measure transactions per second (TPS) under peak loads (e.g., 10,000+ concurrent authentications). Public blockchains (e.g., Ethereum) handle ~30 TPS, while layer-2 solutions (e.g., Polygon) achieve 2,000+ TPS. Private permissioned networks (e.g., Hyperledger) often sustain 3,000–5,000 TPS with sub-second latency. Tests reveal bottlenecks in consensus mechanisms (e.g., PoW vs. PoS) and storage scalability during credential issuance surges.
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Stress testing results for network capacity demonstrate scalability under peak loads (e.g., 10,000+ concurrent DID resolutions). Metrics include transaction latency (<2s), throughput (1,000+ TPS), and error rates (<0.1%). Tests simulate DDoS attacks, spiky demand, and node failures, with sharding and load balancing proving effective in maintaining performance during high-demand events.
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Stress testing reveals identity networks handle 10,000+ concurrent DID resolutions per second using sharding and parallel processing. Latency remains under 200ms during peak loads, with 99.9% uptime during simulated attacks (e.g., DDoS). Load testing shows smart contract execution scales linearly, processing 500+ VCs/second. Chaos engineering experiments confirm fault tolerance, with automatic node recovery within 30 seconds of failures.
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