Update aggregate data naming and calculation
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@ -101,7 +101,7 @@ public static class Aggregator
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// Get all CSV files in the specified directory
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// Get all CSV files in the specified directory
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var csvFiles = Directory.GetFiles(myDirectory, "*.csv");
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var csvFiles = Directory.GetFiles(myDirectory, "*.csv");
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var batterySoc = new List<Double>();
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var batterySoc = new List<Double>();
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var pvPowerAverage = new List<Double>();
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var pvPowerSum = new List<Double>();
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var heatingPower = new List<Double>();
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var heatingPower = new List<Double>();
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var gridPowerImport = new List<Double>();
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var gridPowerImport = new List<Double>();
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var gridPowerExport = new List<Double>();
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var gridPowerExport = new List<Double>();
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@ -143,7 +143,7 @@ public static class Aggregator
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break;
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break;
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case "/PvOnDc/DcWh" :
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case "/PvOnDc/DcWh" :
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pvPowerAverage.Add(value);
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pvPowerSum.Add(value);
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break;
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break;
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case "/Battery/Dc/Power":
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case "/Battery/Dc/Power":
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@ -163,7 +163,6 @@ public static class Aggregator
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// we are using different register to check which value from the grid meter we need to use
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// we are using different register to check which value from the grid meter we need to use
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gridPowerExport.Add(value);
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gridPowerExport.Add(value);
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break;
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break;
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case "/GridMeter/ActivePowerImportT2":
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case "/GridMeter/ActivePowerImportT2":
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gridPowerImport.Add(value);
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gridPowerImport.Add(value);
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break;
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break;
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@ -203,35 +202,35 @@ public static class Aggregator
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var dischargingEnergy = (batteryDischargePower.Any() ? batteryDischargePower.Average() : 0.0) / 3600;
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var dischargingEnergy = (batteryDischargePower.Any() ? batteryDischargePower.Average() : 0.0) / 3600;
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var chargingEnergy = (batteryChargePower.Any() ? batteryChargePower.Average() : 0.0) / 3600;
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var chargingEnergy = (batteryChargePower.Any() ? batteryChargePower.Average() : 0.0) / 3600;
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var heatingPowerAvg = (heatingPower.Any() ? heatingPower.Average() : 0.0) / 3600;
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var heatingPowerAvg = (heatingPower.Any() ? heatingPower.Average() : 0.0) / 3600;
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var dMaxSoc = batterySoc.Any() ? batterySoc.Max() : 0.0;
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var dMaxSoc = batterySoc.Any() ? batterySoc.Max() : 0.0;
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var dMinSoc = batterySoc.Any() ? batterySoc.Min() : 0.0;
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var dMinSoc = batterySoc.Any() ? batterySoc.Min() : 0.0;
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var dSumGridExportPower = gridPowerExport.Any() ? (gridPowerExport.Max() - gridPowerExport.Min()) / 1000 : 0.0;
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var dSumGridExportPower = gridPowerExport.Any() ? gridPowerExport.Max() : 0.0;
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var dSumGridImportPower = gridPowerImport.Any() ? (gridPowerImport.Max() - gridPowerImport.Min()) / 1000 : 0.0;
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var dSumGridImportPower = gridPowerImport.Any() ? gridPowerImport.Max() : 0.0;
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var dSumPvPower = pvPowerAverage.Any() ? pvPowerAverage.Average() /1000 : 0.0;
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var dSumPvPower = pvPowerSum.Any() ? pvPowerSum.Max() : 0.0;
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AggregatedData aggregatedData = new AggregatedData
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AggregatedData aggregatedData = new AggregatedData
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{
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{
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MaxSoc = dMaxSoc,
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MaxSoc = dMaxSoc,
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MinSoc = dMinSoc,
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MinSoc = dMinSoc,
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SumDischargingBatteryPower = dischargingEnergy,
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DischargingBatteryPower = dischargingEnergy,
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SumChargingBatteryPower = chargingEnergy,
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ChargingBatteryPower = chargingEnergy,
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SumGridExportPower = dSumGridExportPower,
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GridExportPower = dSumGridExportPower,
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SumGridImportPower = dSumGridImportPower,
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GridImportPower = dSumGridImportPower,
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SumPvPower = dSumPvPower,
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PvPower = dSumPvPower,
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HeatingPowerAvg = heatingPowerAvg
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HeatingPower = heatingPowerAvg
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};
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};
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// Print the stored CSV data for verification
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// Print the stored CSV data for verification
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Console.WriteLine($"Max SOC: {aggregatedData.MaxSoc}");
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Console.WriteLine($"Max SOC: {aggregatedData.MaxSoc}");
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Console.WriteLine($"Min SOC: {aggregatedData.MinSoc}");
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Console.WriteLine($"Min SOC: {aggregatedData.MinSoc}");
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Console.WriteLine($"ChargingBatteryPower: {aggregatedData.SumDischargingBatteryPower}");
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Console.WriteLine($"ChargingBatteryPower: {aggregatedData.DischargingBatteryPower}");
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Console.WriteLine($"DischargingBatteryBattery: {aggregatedData.SumChargingBatteryPower}");
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Console.WriteLine($"DischargingBatteryBattery: {aggregatedData.ChargingBatteryPower}");
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Console.WriteLine($"SumGridExportPower: {aggregatedData.SumGridExportPower}");
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Console.WriteLine($"SumGridExportPower: {aggregatedData.GridExportPower}");
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Console.WriteLine($"SumGridImportPower: {aggregatedData.SumGridImportPower}");
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Console.WriteLine($"SumGridImportPower: {aggregatedData.GridImportPower}");
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Console.WriteLine($"Min SOC: {aggregatedData.MinSoc}");
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Console.WriteLine($"Min SOC: {aggregatedData.MinSoc}");
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@ -247,7 +246,7 @@ public static class Aggregator
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// Get all CSV files in the specified directory
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// Get all CSV files in the specified directory
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var csvFiles = Directory.GetFiles(myDirectory, "*.csv");
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var csvFiles = Directory.GetFiles(myDirectory, "*.csv");
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var batterySoc = new List<Double>();
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var batterySoc = new List<Double>();
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var pvPowerAverage = new List<Double>();
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var pvPower = new List<Double>();
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var gridPowerImport = new List<Double>();
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var gridPowerImport = new List<Double>();
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var gridPowerExport = new List<Double>();
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var gridPowerExport = new List<Double>();
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var batteryDischargePower = new List<Double>();
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var batteryDischargePower = new List<Double>();
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@ -289,7 +288,7 @@ public static class Aggregator
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break;
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break;
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case "/SumPvPower":
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case "/SumPvPower":
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pvPowerAverage.Add(value);
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pvPower.Add(value);
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break;
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break;
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case "/SumDischargingBatteryPower" :
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case "/SumDischargingBatteryPower" :
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@ -336,25 +335,25 @@ public static class Aggregator
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AggregatedData aggregatedData = new AggregatedData
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AggregatedData aggregatedData = new AggregatedData
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{
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{
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MaxSoc = batterySoc.Any() ? batterySoc.Max() : 0.0,
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MaxSoc = batterySoc.Any() ? batterySoc.Max() : 0.0,
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MinSoc = batterySoc.Any() ? batterySoc.Min() : 0.0,
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MinSoc = batterySoc.Any() ? batterySoc.Min() : 0.0,
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SumDischargingBatteryPower = batteryDischargePower.Any() ? batteryDischargePower.Average(): 0.0,
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DischargingBatteryPower = batteryDischargePower.Any() ? batteryDischargePower.Average(): 0.0,
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SumChargingBatteryPower = batteryChargePower.Any() ? batteryChargePower.Average() : 0.0,
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ChargingBatteryPower = batteryChargePower.Any() ? batteryChargePower.Average() : 0.0,
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SumGridExportPower = gridPowerExport.Any() ? gridPowerExport.Average() : 0.0,
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GridExportPower = gridPowerExport.Any() ? gridPowerExport.Max() : 0.0,
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SumGridImportPower = gridPowerImport.Any() ? gridPowerImport.Average() : 0.0,
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GridImportPower = gridPowerImport.Any() ? gridPowerImport.Max() : 0.0,
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SumPvPower = pvPowerAverage.Any() ? pvPowerAverage.Average() : 0.0,
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PvPower = pvPower.Any() ? pvPower.Max() : 0.0,
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HeatingPowerAvg = heatingPowerAvg.Any() ? heatingPowerAvg.Average() : 0.0,
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HeatingPower = heatingPowerAvg.Any() ? heatingPowerAvg.Average() : 0.0,
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};
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};
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// Print the stored CSV data for verification
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// Print the stored CSV data for verification
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Console.WriteLine($"Max SOC: {aggregatedData.MaxSoc}");
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Console.WriteLine($"Max SOC: {aggregatedData.MaxSoc}");
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Console.WriteLine($"Min SOC: {aggregatedData.MinSoc}");
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Console.WriteLine($"Min SOC: {aggregatedData.MinSoc}");
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Console.WriteLine($"ChargingBatteryPower: {aggregatedData.SumDischargingBatteryPower}");
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Console.WriteLine($"ChargingBatteryPower: {aggregatedData.DischargingBatteryPower}");
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Console.WriteLine($"DischargingBatteryBattery: {aggregatedData.SumChargingBatteryPower}");
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Console.WriteLine($"DischargingBatteryBattery: {aggregatedData.ChargingBatteryPower}");
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Console.WriteLine($"SumGridExportPower: {aggregatedData.SumGridExportPower}");
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Console.WriteLine($"SumGridExportPower: {aggregatedData.GridExportPower}");
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Console.WriteLine($"SumGridImportPower: {aggregatedData.SumGridImportPower}");
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Console.WriteLine($"SumGridImportPower: {aggregatedData.GridImportPower}");
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Console.WriteLine($"Min SOC: {aggregatedData.MinSoc}");
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Console.WriteLine($"Min SOC: {aggregatedData.MinSoc}");
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