10 Commits

Author SHA1 Message Date
znetsixe
4b5ec33c1d fixed bugs for rotating machine execSequence 2025-11-05 17:15:47 +01:00
znetsixe
51f966cfb9 Added sanitizing of input for handleInput for rotating machine 2025-11-05 15:47:39 +01:00
znetsixe
4ae6beba37 updated measurement node to match selected units from user and convert it properly 2025-10-31 18:35:40 +01:00
znetsixe
d2a0274eb3 changed colours and icon based on s88 2025-10-14 13:52:39 +02:00
znetsixe
2073207df1 removed old readme 2025-10-07 18:10:45 +02:00
Rene De ren
bc916c0165 log updates 2025-10-03 15:41:53 +02:00
znetsixe
5357290b41 Several fixes, especially measurement and pressure updates and triggers where flawed 2025-10-02 17:09:24 +02:00
znetsixe
000bee7190 changed some old comment 2025-09-23 15:51:16 +02:00
znetsixe
b0c18e7bae added warning when model is not specified so user knows. 2025-09-23 15:11:06 +02:00
znetsixe
38408c7bc3 updates 2025-09-22 16:06:18 +02:00
3 changed files with 141 additions and 119 deletions

View File

@@ -1,3 +1,13 @@
<!--
| S88-niveau | Primair (blokkleur) | Tekstkleur |
| ---------------------- | ------------------- | ---------- |
| **Area** | `#0f52a5` | wit |
| **Process Cell** | `#0c99d9` | wit |
| **Unit** | `#50a8d9` | zwart |
| **Equipment (Module)** | `#86bbdd` | zwart |
| **Control Module** | `#a9daee` | zwart |
-->
<!-- Load the dynamic menu & config endpoints --> <!-- Load the dynamic menu & config endpoints -->
<script src="/rotatingMachine/menu.js"></script> <script src="/rotatingMachine/menu.js"></script>
<script src="/rotatingMachine/configData.js"></script> <script src="/rotatingMachine/configData.js"></script>
@@ -5,10 +15,8 @@
<script> <script>
RED.nodes.registerType("rotatingMachine", { RED.nodes.registerType("rotatingMachine", {
category: "EVOLV", category: "EVOLV",
color: "#4f8582", color: "#86bbdd",
defaults: { defaults: {
// Define default properties
name: { value: ""}, // use asset category as name ?
// Define specific properties // Define specific properties
speed: { value: 1, required: true }, speed: { value: 1, required: true },
@@ -43,7 +51,7 @@
outputs: 3, outputs: 3,
inputLabels: ["Input"], inputLabels: ["Input"],
outputLabels: ["process", "dbase", "parent"], outputLabels: ["process", "dbase", "parent"],
icon: "font-awesome/fa-tachometer", icon: "font-awesome/fa-cog",
label: function () { label: function () {
return this.positionIcon + " " + this.category.slice(0, -1) || "Machine"; return this.positionIcon + " " + this.category.slice(0, -1) || "Machine";
@@ -70,6 +78,7 @@
}, },
oneditsave: function() { oneditsave: function() {
const node = this; const node = this;
// save asset fields // save asset fields
if (window.EVOLV?.nodes?.rotatingMachine?.assetMenu?.saveEditor) { if (window.EVOLV?.nodes?.rotatingMachine?.assetMenu?.saveEditor) {
window.EVOLV.nodes.rotatingMachine.assetMenu.saveEditor(this); window.EVOLV.nodes.rotatingMachine.assetMenu.saveEditor(this);

View File

@@ -45,7 +45,6 @@ class nodeClass {
// Merge UI config over defaults // Merge UI config over defaults
this.config = { this.config = {
general: { general: {
name: uiConfig.name,
id: node.id, // node.id is for the child registration process id: node.id, // node.id is for the child registration process
unit: uiConfig.unit, // add converter options later to convert to default units (need like a model that defines this which units we are going to use and then conver to those standards) unit: uiConfig.unit, // add converter options later to convert to default units (need like a model that defines this which units we are going to use and then conver to those standards)
logging: { logging: {
@@ -63,7 +62,7 @@ class nodeClass {
unit: uiConfig.unit unit: uiConfig.unit
}, },
functionality: { functionality: {
positionVsParent: uiConfig.positionVsParent || 'atEquipment', // Default to 'atEquipment' if not specified positionVsParent: uiConfig.positionVsParent
} }
}; };
@@ -115,8 +114,8 @@ class nodeClass {
try { try {
const mode = m.currentMode; const mode = m.currentMode;
const state = m.state.getCurrentState(); const state = m.state.getCurrentState();
const flow = Math.round(m.measurements.type("flow").variant("predicted").position('downstream').getCurrentValue()); const flow = Math.round(m.measurements.type("flow").variant("predicted").position('downstream').getCurrentValue('m3/h'));
const power = Math.round(m.measurements.type("power").variant("predicted").position('upstream').getCurrentValue()); const power = Math.round(m.measurements.type("power").variant("predicted").position('atequipment').getCurrentValue('kW'));
let symbolState; let symbolState;
switch(state){ switch(state){
case "off": case "off":
@@ -146,6 +145,9 @@ class nodeClass {
case "decelerating": case "decelerating":
symbolState = "⏪"; symbolState = "⏪";
break; break;
case "maintenance":
symbolState = "🔧";
break;
} }
const position = m.state.getCurrentPosition(); const position = m.state.getCurrentPosition();
const roundedPosition = Math.round(position * 100) / 100; const roundedPosition = Math.round(position * 100) / 100;

View File

@@ -1,50 +1,6 @@
/**
* @file machine.js
*
* Permission is hereby granted to any person obtaining a copy of this software
* and associated documentation files (the "Software"), to use it for personal
* or non-commercial purposes, with the following restrictions:
*
* 1. **No Copying or Redistribution**: The Software or any of its parts may not
* be copied, merged, distributed, sublicensed, or sold without explicit
* prior written permission from the author.
*
* 2. **Commercial Use**: Any use of the Software for commercial purposes requires
* a valid license, obtainable only with the explicit consent of the author.
*
* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
* FITNESS FOR A PARTICULAR PURPOSE, AND NONINFRINGEMENT. IN NO EVENT SHALL THE
* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES, OR OTHER
* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT, OR OTHERWISE, ARISING FROM,
* OUT OF, OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
* SOFTWARE.
*
* Ownership of this code remains solely with the original author. Unauthorized
* use of this Software is strictly prohibited.
*
* @summary A class to interact and manipulate machines with a non-euclidian curve
* @description A class to interact and manipulate machines with a non-euclidian curve
* @module machine
* @exports machine
* @version 0.1.0
* @since 0.1.0
*
* Author:
* - Rene De Ren
* Email:
* - r.de.ren@brabantsedelta.nl
*
* Add functionality later
// -------- Operational Metrics -------- //
maintenanceAlert: this.state.checkMaintenanceStatus()
*/
//load local dependencies
const EventEmitter = require('events'); const EventEmitter = require('events');
const {loadCurve,logger,configUtils,configManager,state, nrmse, MeasurementContainer, predict, interpolation , childRegistrationUtils} = require('generalFunctions'); const {loadCurve,logger,configUtils,configManager,state, nrmse, MeasurementContainer, predict, interpolation , childRegistrationUtils} = require('generalFunctions');
const { name } = require('../../generalFunctions/src/convert/lodash/lodash._shimkeys');
class Machine { class Machine {
@@ -65,9 +21,12 @@ class Machine {
//Init config and check if it is valid //Init config and check if it is valid
this.config = this.configUtils.initConfig(machineConfig); this.config = this.configUtils.initConfig(machineConfig);
//add unique name for this node.
this.config = this.configUtils.updateConfig(this.config, {general:{name: this.config.functionality?.softwareType + "_" + machineConfig.general.id}}); // add unique name if not present
if (!this.model || !this.curve) { if (!this.model || !this.curve) {
this.logger.warn(`${!this.model ? 'Model not specified' : 'Curve not found for model ' + this.model} in machineConfig. Cannot make predictions.`); this.logger.error(`${!this.model ? 'Model not specified' : 'Curve not found for model ' + this.model} in machineConfig. Cannot make predictions.`);
// Set prediction objects to null to prevent method calls // Set prediction objects to null to prevent method calls
this.predictFlow = null; this.predictFlow = null;
this.predictPower = null; this.predictPower = null;
@@ -89,7 +48,17 @@ class Machine {
this.errorMetrics = new nrmse(errorMetricsConfig, this.logger); this.errorMetrics = new nrmse(errorMetricsConfig, this.logger);
// Initialize measurements // Initialize measurements
this.measurements = new MeasurementContainer(); this.measurements = new MeasurementContainer({
autoConvert: true,
windowSize: 50,
defaultUnits: {
pressure: 'mbar',
flow: this.config.general.unit,
power: 'kW',
temperature: 'C'
}
});
this.interpolation = new interpolation(); this.interpolation = new interpolation();
this.flowDrift = null; this.flowDrift = null;
@@ -109,25 +78,44 @@ class Machine {
this.updatePosition(); this.updatePosition();
}); });
//When state changes look if we need to do other updates
this.state.emitter.on("stateChange", (newState) => {
this.logger.debug(`State change detected: ${newState}`);
this._updateState();
});
this.child = {}; // object to hold child information so we know on what to subscribe this.child = {}; // object to hold child information so we know on what to subscribe
this.childRegistrationUtils = new childRegistrationUtils(this); // Child registration utility this.childRegistrationUtils = new childRegistrationUtils(this); // Child registration utility
} }
_updateState(){
const isOperational = this._isOperationalState();
if(!isOperational){
//overrule the last prediction this should be 0 now
this.measurements.type("flow").variant("predicted").position("downstream").value(0);
}
}
/*------------------- Register child events -------------------*/ /*------------------- Register child events -------------------*/
registerChild(child, softwareType) { registerChild(child, softwareType) {
this.logger.debug('Setting up child event listeners'); this.logger.debug('Setting up child event for softwaretype ' + softwareType);
if(softwareType === "measurement"){ if(softwareType === "measurement"){
const position = child.config.functionality.positionVsParent; const position = child.config.functionality.positionVsParent;
const distance = child.config.functionality.distanceVsParent || 0;
const measurementType = child.config.asset.type; const measurementType = child.config.asset.type;
const key = `${measurementType}_${position}`; const key = `${measurementType}_${position}`;
//rebuild to measurementype.variant no position and then switch based on values not strings or names.
const eventName = `${measurementType}.measured.${position}`; const eventName = `${measurementType}.measured.${position}`;
this.logger.debug(`Setting up listener for ${eventName} from child ${child.config.general.name}`);
// Register event listener for measurement updates // Register event listener for measurement updates
child.measurements.emitter.on(eventName, (eventData) => { child.measurements.emitter.on(eventName, (eventData) => {
this.logger.debug(`🔄 ${position} ${measurementType} from ${eventData.childName}: ${eventData.value} ${eventData.unit}`); this.logger.debug(`🔄 ${position} ${measurementType} from ${eventData.childName}: ${eventData.value} ${eventData.unit}`);
console.log(` Emitting... ${eventName} with data:`);
// Store directly in parent's measurement container // Store directly in parent's measurement container
this.measurements this.measurements
.type(measurementType) .type(measurementType)
@@ -201,46 +189,71 @@ _callMeasurementHandler(measurementType, value, position, context) {
// -------- Mode and Input Management -------- // // -------- Mode and Input Management -------- //
isValidSourceForMode(source, mode) { isValidSourceForMode(source, mode) {
const allowedSourcesSet = this.config.mode.allowedSources[mode] || []; const allowedSourcesSet = this.config.mode.allowedSources[mode] || [];
return allowedSourcesSet.has(source); const allowed = allowedSourcesSet.has(source);
allowed?
this.logger.debug(`source is allowed proceeding with ${source} for mode ${mode}`) :
this.logger.warn(`${source} is not allowed in mode ${mode}`);
return allowed;
} }
isValidActionForMode(action, mode) { isValidActionForMode(action, mode) {
const allowedActionsSet = this.config.mode.allowedActions[mode] || []; const allowedActionsSet = this.config.mode.allowedActions[mode] || [];
return allowedActionsSet.has(action); const allowed = allowedActionsSet.has(action);
allowed ?
this.logger.debug(`Action is allowed proceeding with ${action} for mode ${mode}`) :
this.logger.warn(`${action} is not allowed in mode ${mode}`);
return allowed;
} }
async handleInput(source, action, parameter) { async handleInput(source, action, parameter) {
if (!this.isValidSourceForMode(source, this.currentMode)) {
let warningTxt = `Source '${source}' is not valid for mode '${this.currentMode}'.`;
this.logger.warn(warningTxt);
return {status : false , feedback: warningTxt};
}
this.logger.debug("hello");
//sanitize input
if( typeof action !== 'string'){this.logger.error(`Action must be string`); return;}
//convert to lower case to avoid to many mistakes in commands
action = action.toLowerCase();
// check for validity of the request
if(!this.isValidActionForMode(action,this.currentMode)){return ;}
if (!this.isValidSourceForMode(source, this.currentMode)) {return ;}
this.logger.debug("hello2");
this.logger.info(`Handling input from source '${source}' with action '${action}' in mode '${this.currentMode}'.`); this.logger.info(`Handling input from source '${source}' with action '${action}' in mode '${this.currentMode}'.`);
try { try {
switch (action) { switch (action) {
case "execSequence":
await this.executeSequence(parameter); case "execsequence":
//recalc flow and power return await this.executeSequence(parameter);
this.updatePosition();
break; case "execmovement":
case "execMovement": return await this.setpoint(parameter);
await this.setpoint(parameter);
break; case "entermaintenance":
case "flowMovement":
return await this.executeSequence(parameter);
case "exitmaintenance":
return await this.executeSequence(parameter);
case "flowmovement":
// Calculate the control value for a desired flow // Calculate the control value for a desired flow
const pos = this.calcCtrl(parameter); const pos = this.calcCtrl(parameter);
// Move to the desired setpoint // Move to the desired setpoint
await this.setpoint(pos); return await this.setpoint(pos);
break;
case "emergencyStop": case "emergencystop":
this.logger.warn(`Emergency stop activated by '${source}'.`); this.logger.warn(`Emergency stop activated by '${source}'.`);
await this.executeSequence("emergencyStop"); return await this.executeSequence("emergencyStop");
break;
case "statusCheck": case "statuscheck":
this.logger.info(`Status Check: Mode = '${this.currentMode}', Source = '${source}'.`); this.logger.info(`Status Check: Mode = '${this.currentMode}', Source = '${source}'.`);
break; break;
default: default:
this.logger.warn(`Action '${action}' is not implemented.`); this.logger.warn(`Action '${action}' is not implemented.`);
break; break;
@@ -250,6 +263,13 @@ _callMeasurementHandler(measurementType, value, position, context) {
} catch (error) { } catch (error) {
this.logger.error(`Error handling input: ${error}`); this.logger.error(`Error handling input: ${error}`);
} }
}
abortMovement(reason = "group override") {
if (this.state?.abortCurrentMovement) {
this.state.abortCurrentMovement(reason);
}
} }
setMode(newMode) { setMode(newMode) {
@@ -290,6 +310,9 @@ _callMeasurementHandler(measurementType, value, position, context) {
break; // Exit sequence execution on error break; // Exit sequence execution on error
} }
} }
//recalc flow and power
this.updatePosition();
} }
async setpoint(setpoint) { async setpoint(setpoint) {
@@ -337,20 +360,20 @@ _callMeasurementHandler(measurementType, value, position, context) {
calcPower(x) { calcPower(x) {
if(this.hasCurve) { if(this.hasCurve) {
if (!this._isOperationalState()) { if (!this._isOperationalState()) {
this.measurements.type("power").variant("predicted").position('upstream').value(0); this.measurements.type("power").variant("predicted").position('atEquipment').value(0);
this.logger.debug(`Machine is not operational. Setting predicted power to 0.`); this.logger.debug(`Machine is not operational. Setting predicted power to 0.`);
return 0; return 0;
} }
//this.predictPower.currentX = x; Decrepated //this.predictPower.currentX = x; Decrepated
const cPower = this.predictPower.y(x); const cPower = this.predictPower.y(x);
this.measurements.type("power").variant("predicted").position('upstream').value(cPower); this.measurements.type("power").variant("predicted").position('atEquipment').value(cPower);
//this.logger.debug(`Calculated power: ${cPower} for pressure: ${this.getMeasuredPressure()} and position: ${x}`); //this.logger.debug(`Calculated power: ${cPower} for pressure: ${this.getMeasuredPressure()} and position: ${x}`);
return cPower; return cPower;
} }
// If no curve data is available, log a warning and return 0 // If no curve data is available, log a warning and return 0
this.logger.warn(`No curve data available for power calculation. Returning 0.`); this.logger.warn(`No curve data available for power calculation. Returning 0.`);
this.measurements.type("power").variant("predicted").position('upstream').value(0); this.measurements.type("power").variant("predicted").position('atEquipment').value(0);
return 0; return 0;
} }
@@ -368,7 +391,7 @@ _callMeasurementHandler(measurementType, value, position, context) {
// If no curve data is available, log a warning and return 0 // If no curve data is available, log a warning and return 0
this.logger.warn(`No curve data available for power calculation. Returning 0.`); this.logger.warn(`No curve data available for power calculation. Returning 0.`);
this.measurements.type("power").variant("predicted").position('upstream').value(0); this.measurements.type("power").variant("predicted").position('atEquipment').value(0);
return 0; return 0;
} }
@@ -378,14 +401,14 @@ _callMeasurementHandler(measurementType, value, position, context) {
if(this.hasCurve) { if(this.hasCurve) {
this.predictCtrl.currentX = x; this.predictCtrl.currentX = x;
const cCtrl = this.predictCtrl.y(x); const cCtrl = this.predictCtrl.y(x);
this.measurements.type("ctrl").variant("predicted").position('upstream').value(cCtrl); this.measurements.type("ctrl").variant("predicted").position('atEquipment').value(cCtrl);
//this.logger.debug(`Calculated ctrl: ${cCtrl} for pressure: ${this.getMeasuredPressure()} and position: ${x}`); //this.logger.debug(`Calculated ctrl: ${cCtrl} for pressure: ${this.getMeasuredPressure()} and position: ${x}`);
return cCtrl; return cCtrl;
} }
// If no curve data is available, log a warning and return 0 // If no curve data is available, log a warning and return 0
this.logger.warn(`No curve data available for control calculation. Returning 0.`); this.logger.warn(`No curve data available for control calculation. Returning 0.`);
this.measurements.type("ctrl").variant("predicted").position('upstream').value(0); this.measurements.type("ctrl").variant("predicted").position('atEquipment').value(0);
return 0; return 0;
} }
@@ -394,9 +417,9 @@ _callMeasurementHandler(measurementType, value, position, context) {
// this will be either the differential pressure, downstream or upstream pressure // this will be either the differential pressure, downstream or upstream pressure
getMeasuredPressure() { getMeasuredPressure() {
const pressureDiff = this.measurements.type('pressure').variant('measured').difference(); const pressureDiff = this.measurements.type('pressure').variant('measured').difference();
// Both upstream & downstream => differential // Both upstream & downstream => differential
if (pressureDiff != null) { if (pressureDiff) {
this.logger.debug(`Pressure differential: ${pressureDiff.value}`); this.logger.debug(`Pressure differential: ${pressureDiff.value}`);
this.predictFlow.fDimension = pressureDiff.value; this.predictFlow.fDimension = pressureDiff.value;
this.predictPower.fDimension = pressureDiff.value; this.predictPower.fDimension = pressureDiff.value;
@@ -416,7 +439,7 @@ _callMeasurementHandler(measurementType, value, position, context) {
// Only downstream => use it, warn that it's partial // Only downstream => use it, warn that it's partial
if (downstreamPressure != null) { if (downstreamPressure != null) {
this.logger.warn(`Using downstream pressure only for prediction: ${downstreamPressure} `); this.logger.warn(`Using downstream pressure only for prediction: ${downstreamPressure} This is less acurate!!`);
this.predictFlow.fDimension = downstreamPressure; this.predictFlow.fDimension = downstreamPressure;
this.predictPower.fDimension = downstreamPressure; this.predictPower.fDimension = downstreamPressure;
this.predictCtrl.fDimension = downstreamPressure; this.predictCtrl.fDimension = downstreamPressure;
@@ -498,18 +521,12 @@ _callMeasurementHandler(measurementType, value, position, context) {
} }
} }
// ENHANCED: Your existing handler but with rich context // context handler for pressure updates
updateMeasuredPressure(value, position, context = {}) { updateMeasuredPressure(value, position, context = {}) {
// Your existing operational check
if (!this._isOperationalState()) {
this.logger.warn(`Machine not operational, skipping pressure update from ${context.childName || 'unknown'}`);
return;
}
// Enhanced logging with child context
this.logger.debug(`Pressure update: ${value} at ${position} from ${context.childName || 'child'} (${context.childId || 'unknown-id'})`); this.logger.debug(`Pressure update: ${value} at ${position} from ${context.childName || 'child'} (${context.childId || 'unknown-id'})`);
// Store in parent's measurement container (your existing logic) // Store in parent's measurement container
this.measurements.type("pressure").variant("measured").position(position).value(value, context.timestamp, context.unit); this.measurements.type("pressure").variant("measured").position(position).value(value, context.timestamp, context.unit);
// Determine what kind of value to use as pressure (upstream , downstream or difference) // Determine what kind of value to use as pressure (upstream , downstream or difference)
@@ -519,7 +536,7 @@ _callMeasurementHandler(measurementType, value, position, context) {
this.logger.debug(`Using pressure: ${pressure} for calculations`); this.logger.debug(`Using pressure: ${pressure} for calculations`);
} }
// NEW: Flow handler (following your pattern) // NEW: Flow handler
updateMeasuredFlow(value, position, context = {}) { updateMeasuredFlow(value, position, context = {}) {
if (!this._isOperationalState()) { if (!this._isOperationalState()) {
this.logger.warn(`Machine not operational, skipping flow update from ${context.childName || 'unknown'}`); this.logger.warn(`Machine not operational, skipping flow update from ${context.childName || 'unknown'}`);
@@ -533,18 +550,20 @@ _callMeasurementHandler(measurementType, value, position, context) {
// Update predicted flow if you have prediction capability // Update predicted flow if you have prediction capability
if (this.predictFlow) { if (this.predictFlow) {
this.measurements.type("flow").variant("predicted").position("atEquipment").value(this.predictFlow.outputY || 0); this.measurements.type("flow").variant("predicted").position("downstream").value(this.predictFlow.outputY || 0);
} }
} }
// Helper method for operational state check // Helper method for operational state check
_isOperationalState() { _isOperationalState() {
const state = this.state.getCurrentState(); const state = this.state.getCurrentState();
this.logger.debug(`Checking operational state ${this.state.getCurrentState()} ? ${["operational", "accelerating", "decelerating"].includes(state)}`);
return ["operational", "accelerating", "decelerating"].includes(state); return ["operational", "accelerating", "decelerating"].includes(state);
} }
//what is the internal functions that need updating when something changes that has influence on this. //what is the internal functions that need updating when something changes that has influence on this.
updatePosition() { updatePosition() {
if (this._isOperationalState()) { if (this._isOperationalState()) {
const currentPosition = this.state.getCurrentPosition(); const currentPosition = this.state.getCurrentPosition();
@@ -562,6 +581,9 @@ _callMeasurementHandler(measurementType, value, position, context) {
this.calcDistanceBEP(efficiency,cog,minEfficiency); this.calcDistanceBEP(efficiency,cog,minEfficiency);
} }
} }
calcDistanceFromPeak(currentEfficiency,peakEfficiency){ calcDistanceFromPeak(currentEfficiency,peakEfficiency){
@@ -592,7 +614,6 @@ _callMeasurementHandler(measurementType, value, position, context) {
}; };
} }
// Calculate the center of gravity for current pressure // Calculate the center of gravity for current pressure
calcCog() { calcCog() {
@@ -656,12 +677,12 @@ _callMeasurementHandler(measurementType, value, position, context) {
if (power != 0 && flow != 0) { if (power != 0 && flow != 0) {
// Calculate efficiency after measurements update // Calculate efficiency after measurements update
this.measurements.type("efficiency").variant(variant).position('downstream').value((flow / power)); this.measurements.type("efficiency").variant(variant).position('atEquipment').value((flow / power));
} else { } else {
this.measurements.type("efficiency").variant(variant).position('downstream').value(null); this.measurements.type("efficiency").variant(variant).position('atEquipment').value(null);
} }
return this.measurements.type("efficiency").variant(variant).position('downstream').getCurrentValue(); return this.measurements.type("efficiency").variant(variant).position('atEquipment').getCurrentValue();
} }
@@ -708,23 +729,12 @@ _callMeasurementHandler(measurementType, value, position, context) {
// Improved output object generation // Improved output object generation
const output = {}; const output = {};
//build the output object
this.measurements.getTypes().forEach(type => {
this.measurements.getVariants(type).forEach(variant => {
const downstreamVal = this.measurements.type(type).variant(variant).position("downstream").getCurrentValue(); Object.entries(this.measurements.measurements).forEach(([type, variants]) => {
const upstreamVal = this.measurements.type(type).variant(variant).position("upstream").getCurrentValue(); Object.entries(variants).forEach(([variant, positions]) => {
Object.entries(positions).forEach(([position, measurement]) => {
if (downstreamVal != null) { output[`${type}.${variant}.${position}`] = measurement.getCurrentValue();
output[`downstream_${variant}_${type}`] = downstreamVal; });
}
if (upstreamVal != null) {
output[`upstream_${variant}_${type}`] = upstreamVal;
}
if (downstreamVal != null && upstreamVal != null) {
const diffVal = this.measurements.type(type).variant(variant).difference().value;
output[`differential_${variant}_${type}`] = diffVal;
}
}); });
}); });
@@ -737,6 +747,7 @@ _callMeasurementHandler(measurementType, value, position, context) {
output["cog"] = this.cog; // flow / power efficiency output["cog"] = this.cog; // flow / power efficiency
output["NCog"] = this.NCog; // normalized cog output["NCog"] = this.NCog; // normalized cog
output["NCogPercent"] = Math.round(this.NCog * 100 * 100) / 100 ; output["NCogPercent"] = Math.round(this.NCog * 100 * 100) / 100 ;
output["maintenanceTime"] = this.state.getMaintenanceTimeHours();
if(this.flowDrift != null){ if(this.flowDrift != null){
const flowDrift = this.flowDrift; const flowDrift = this.flowDrift;