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<feed xmlns="http://www.w3.org/2005/Atom"><title>CodeNinja Research</title><link href="https://muhammadumar89.github.io/codeninja-research/"/><link rel="self" href="https://muhammadumar89.github.io/codeninja-research/feed.xml"/><id>https://muhammadumar89.github.io/codeninja-research/</id><updated>2026-10-03T00:00:00Z</updated>
  <entry><title>Sovereign HSE Watch: A Reference Architecture for Predictive Health, Safety and Environment Intelligence in Pakistan&#x27;s Oil and Gas Operations</title><link href="https://muhammadumar89.github.io/codeninja-research/sovereign-hse-pakistan/"/><id>https://muhammadumar89.github.io/codeninja-research/sovereign-hse-pakistan/</id><updated>2026-10-03T00:00:00Z</updated><summary>An open reference architecture for a sovereign, air-gapped HSE platform for an oil and gas operator in Pakistan: eight source systems, a twelve-object ontology, six self-hosted open-weight models on one GPU node, and a three-year cost comparison against cloud.</summary></entry>
  <entry><title>Terminal Pulse: Predicted Truck Turn Time and Live Yard Sight for a Container Terminal</title><link href="https://muhammadumar89.github.io/codeninja-research/truck-turn-container-terminal-us/"/><id>https://muhammadumar89.github.io/codeninja-research/truck-turn-container-terminal-us/</id><updated>2026-10-03T00:00:00Z</updated><summary>An open reference architecture for predicting truck turn time two hours out and seeing yard congestion live at a container terminal in the United States: eleven source systems, a twelve-object ontology, edge vision at the yard and gate, a frontier model on the operator&#x27;s own hardware, and a three-year cost comparison against cloud.</summary></entry>
  <entry><title>Feeder Firewatch: Live Ignition and Outage Risk for Every Distribution Feeder</title><link href="https://muhammadumar89.github.io/codeninja-research/wildfire-risk-distribution-us/"/><id>https://muhammadumar89.github.io/codeninja-research/wildfire-risk-distribution-us/</id><updated>2026-10-03T00:00:00Z</updated><summary>An open reference architecture for live wildfire ignition and outage risk at an electric distribution cooperative in the United States: twelve source systems, a fourteen-object ontology, self-hosted open-weight models on the cooperative&#x27;s own hardware, every de-energisation approved by a named operator, and a three-year cost comparison against cloud.</summary></entry>
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