### eval/ (scenario-based evaluation)
Complements the unit tests under test/basic. Scenarios fluctuate inputs
over simulated time, record every tick to JSONL, print a summary
table + event log, and check expectations. Complementary to unit
tests — these answer "how does the system respond to this input
profile" rather than "is this function correct".
- eval/run.js — driver; monkey-patches Date.now so the
volume integrator ticks at 1 s/iter
regardless of wall-clock
- eval/scenarios/ — one file per scenario
- levelbased-steady.js — constant inflow, demand converges
- levelbased-storm.js — inflow surge, demand saturates
- safety-dry-run-trip.js — manual mode, empty basin, safety trips
- eval/formatters/table.js — ASCII summary of sampled ticks
- eval/logs/ — per-scenario JSONL output (one line per tick)
- eval/README.md — usage + scenario file shape + how to pipe
into InfluxDB/Grafana
All three starter scenarios PASS with their expectations.
### wiki/modes/ (tier template pages)
The levelbased page templated Tier-1 modes (static transfer function).
Added worked examples for the other two tiers so all mode pages share
a common skeleton and new modes have something concrete to imitate:
- flowbased.md — Tier 2 (PID on measured outflow)
- powerbased.md — Tier 2 (levelbased curve clipped by grid power budget)
- mpc.md — Tier 3 (optimisation + forecast; block diagram +
scenario time-series instead of a fixed curve)
- modes/README.md — updated with the three-tier classification table
and diagram-type-per-tier guidance
Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
61 lines
2.5 KiB
JavaScript
61 lines
2.5 KiB
JavaScript
// Steady sewer inflow, level-based control, pumps should settle.
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//
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// Expectation: with a stable inflow of 0.008 m³/s and a pump bank with
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// max capacity 0.012 m³/s, the level settles in the RAMP zone (between
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// startLevel and maxLevel) at roughly the point where demand matches
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// inflow. No safety trips should fire.
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module.exports = {
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name: 'levelbased-steady',
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description: 'Constant sewer inflow below pump capacity; level converges inside the RAMP zone with demand matching inflow.',
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durationSec: 1200,
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config: {
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general: { name: 'EvalSteady', id: 'eval-steady', unit: 'm3/h',
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logging: { enabled: false, logLevel: 'error' } },
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functionality: { softwareType: 'pumpingStation', role: 'stationcontroller', positionVsParent: 'atEquipment' },
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basin: { volume: 50, height: 5, inflowLevel: 3, outflowLevel: 0.2, overflowLevel: 4.5 },
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hydraulics: { refHeight: 'NAP', basinBottomRef: 0, minHeightBasedOn: 'outlet' },
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control: {
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mode: 'levelbased',
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allowedModes: new Set(['levelbased']),
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levelbased: { minLevel: 1, startLevel: 2, maxLevel: 4 },
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},
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safety: {
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enableDryRunProtection: true,
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dryRunThresholdPercent: 2,
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enableOverfillProtection: true,
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overfillThresholdPercent: 98,
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timeleftToFullOrEmptyThresholdSeconds: 0,
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},
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},
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setup: async (ps) => {
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// Stub MGC: its pumps collectively deliver (demand/100) × MAX_OUTFLOW.
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const MAX_OUTFLOW = 0.012; // m³/s
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ps.machineGroups['mgc1'] = {
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config: { general: { name: 'mgc1' } },
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turnOffAllMachines: () => {
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ps.measurements.type('flow').variant('predicted').position('out').child('mgc1').value(0, Date.now(), 'm3/s');
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},
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handleInput: async (_source, demand) => {
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const d = Math.max(0, Math.min(100, Number(demand) || 0));
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const outflow = (d / 100) * MAX_OUTFLOW;
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ps.measurements.type('flow').variant('predicted').position('out').child('mgc1').value(outflow, Date.now(), 'm3/s');
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},
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};
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ps.calibratePredictedLevel(2.0); // start at the bottom of the RAMP zone
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},
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inputs: (t, ps) => {
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ps.setManualInflow(0.008, Date.now(), 'm3/s'); // ≈ 29 m³/h
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},
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expectations: [
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{ name: 'no safety trips', type: 'safety_trips_eq', value: 0 },
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{ name: 'level stays below overflow', type: 'max_level_bounded', value: 4.5 },
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{ name: 'level stays above outflow', type: 'min_level_bounded', value: 0.2 },
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{ name: 'no threshold issues on init', type: 'threshold_issues_eq', value: 0 },
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],
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};
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