Updated Operating Procedure (markdown)
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@ -109,6 +109,24 @@ Charge level mode attempts to maintain a level of charge in the induction matrix
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Generation rate mode attempts to produce a set amount of MFE/t from the assigned reactors. The first stage of this control loop is ramping to the estimated target based on the number of turbine blades available to each unit. These counts **MUST** be the same for all assigned reactors, otherwise the burn rate to generation rate conversion factors will mismatch and control will be unstable. After ramping is complete, the [rate PID controller](https://github.com/MikaylaFischler/cc-mek-scada/wiki/Process-Control-Closed-Loop-Controller#generation-rate-pid-w-feed-forward-controller) takes over and adjusts the burn rates until the exact target is reached. This should take around a minute, as it was tuned to be slower and steadier to ensure it doesn't become unstable on the wide variety of reactors it'll have to work with.
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Generation rate mode attempts to produce a set amount of MFE/t from the assigned reactors. The first stage of this control loop is ramping to the estimated target based on the number of turbine blades available to each unit. These counts **MUST** be the same for all assigned reactors, otherwise the burn rate to generation rate conversion factors will mismatch and control will be unstable. After ramping is complete, the [rate PID controller](https://github.com/MikaylaFischler/cc-mek-scada/wiki/Process-Control-Closed-Loop-Controller#generation-rate-pid-w-feed-forward-controller) takes over and adjusts the burn rates until the exact target is reached. This should take around a minute, as it was tuned to be slower and steadier to ensure it doesn't become unstable on the wide variety of reactors it'll have to work with.
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### Automatic Facility Safety Checks
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### Automatic Safety Checks
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#### Facility Safety Checks
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At a facility level, the process control system monitors for the following alarm conditions and takes the listed actions:
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* [Critical level unit alarm](https://github.com/MikaylaFischler/cc-mek-scada/wiki/Alarms#critical-alarms) -> assigned unit SCRAM, no automatic resume
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* Facility radiation detected (≥ 10 µSv/hr) -> assigned unit SCRAM, no automatic resume
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* Induction matrix disconnection -> assigned unit SCRAM until it is reconnected, then RESET and resume
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* Induction matrix high charge (100%) -> assigned unit SCRAM until charge lowers below re-activation threshold (< 95%), then RESET and resume
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* Generation fault (assigned units in generation mode become not ready/degraded) -> SCRAM then RESET assigned reactors, wait for all units to be ready again, then fully restart generation mode (starting with ramp)
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#### Unit Safety Checks
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Each unit that is running in automatic mode (whether in standby or active) performs the following alarm checks and SCRAMs if any are tripped:
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* Check for [urgent and higher priority level alarms](https://github.com/MikaylaFischler/cc-mek-scada/wiki/Alarms#urgent-alarms) -> SCRAM, once condition is no longer met, facility process control will be responsible for RPS RESET
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#### Emergency Coolant Control
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### Automatic Unit Safety Checks
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