modify Topology.cs to properly display missing/unreachable devices (mayor rewrite)
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@ -1,8 +1,6 @@
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using System.Diagnostics;
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using System.Diagnostics.CodeAnalysis;
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using InnovEnergy.App.SaliMax.Ess;
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using InnovEnergy.Lib.Devices.Battery48TL;
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using InnovEnergy.Lib.StatusApi.Connections;
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using InnovEnergy.Lib.Units;
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using InnovEnergy.Lib.Units.Power;
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using InnovEnergy.Lib.Utils;
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@ -10,185 +8,351 @@ using Ac3Bus = InnovEnergy.Lib.Units.Composite.Ac3Bus;
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namespace InnovEnergy.App.SaliMax;
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// ┌────┐ ┌────┐
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// │ Pv │ │ Pv │ ┌────┐
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// └────┘ └────┘ │ Pv │
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// V V └────┘
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// V V V
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// (b) 0 W (e) 0 W V
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// V V (i) 13.2 kW ┌────────────┐
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// V V V │ Battery │
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// ┌─────────┐ ┌──────────┐ ┌────────────┐ ┌─────────┐ V ├────────────┤
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// │ Grid │ │ Grid Bus │ │ Island Bus │ │ AC/DC │ ┌────────┐ ┌───────┐ │ 52.3 V │
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// ├─────────┤ -10.3 kW ├──────────┤ -11.7 kW ├────────────┤ -11.7 kW ├─────────┤ -11.7 kW │ Dc Bus │ 1008 W │ DC/DC │ 1008 W │ 99.1 % │
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// │ -3205 W │<<<<<<<<<<│ 244 V │<<<<<<<<<<│ 244 V │<<<<<<<<<<│ -6646 W │<<<<<<<<<<├────────┤>>>>>>>>>>├───────┤>>>>>>>>>>│ 490 mA │
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// │ -3507 W │ (a) │ 244 V │ (d) │ 244 V │ (g) │ -5071 W │ (h) │ 776 V │ (k) │ 56 V │ (l) │ 250 °C │
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// │ -3605 W │ K1 │ 246 V │ K2 │ 246 V │ K3 └─────────┘ └────────┘ └───────┘ │ 445 A │
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// └─────────┘ └──────────┘ └────────────┘ V │ 0 Warnings │
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// V V V │ 0 Alarms │
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// V V (j) 0 W └────────────┘
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// (c) 1400 W (f) 0 W V
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// V V V
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// V V ┌──────┐
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// ┌──────┐ ┌──────┐ │ Load │
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// │ Load │ │ Load │ └──────┘
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// └──────┘ └──────┘
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public static class Topology
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{
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public static TextBlock CreateTopology(this StatusRecord status)
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{
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var islandTopology = status.CreateIslandTopology();
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// AC side
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// a + b - c - d = 0 [eq1]
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// d + e - f - g = 0 [eq2]
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//
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// c & d are not measured!
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//
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// d = f + g - e [eq2]
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// c = a + b - d [eq1]
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//
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// DC side
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// h + i - j - k = 0 [eq3]
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//
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// g = h assuming no losses in ACDC
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// k = l assuming no losses in DCDC
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// j = h + i - k [eq3]
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var a = status.GridMeter?.Ac.Power.Active;
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var b = status.PvOnAcGrid?.Power.Active;
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var e = status.PvOnAcIsland?.Power.Active;
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var f = status.LoadOnAcIsland?.Ac.Power.Active;
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var g = status.AcDc.Ac.Power.Active;
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var h = g;
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var i = status.PvOnDc?.Dc.Power;
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var k = status.DcDc.Dc.Link.Power;
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var l = k;
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var j = Sum(h, i, -k);
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var d = Sum(f, g, -e);
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var c = Sum(a, b, -d);
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// TODO: check ACDCs if AC is available and synced to find out if grid meter OR grid is unavailable
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/////////////////////////////
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var grid = status.CreateGridColumn(a);
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var gridBus = status.CreateGridBusColumn(b, c, d);
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var islandBus = status.CreateIslandBusColumn(e, f, g);
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var inverter = status.CreateInverterColumn(h);
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var dcBus = status.CreateDcBusColumn(i, j, k);
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var dcDc = status.CreateDcDcColumn(l);
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var batteries = status.CreateBatteryColumn();
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if (status.GridMeter is null) // no grid meter?
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return islandTopology; // we're done
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var gridTopology = status.CreateGridTopology();
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return status.ConnectGridToIslandTopology(gridTopology, islandTopology);
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return TextBlock.AlignCenterVertical
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(
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grid,
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gridBus,
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islandBus,
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inverter,
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dcBus,
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dcDc,
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batteries
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);
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// 730 V
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}
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private static TextBlock ConnectGridToIslandTopology(this StatusRecord status, TextBlock gridTopology, TextBlock islandTopology)
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private static TextBlock CreateGridColumn(this StatusRecord status, ActivePower? a)
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{
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var inverterPower = status.AcDc.Ac.Power.Active;
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var islandLoadPower = status.LoadOnAcIsland is not null
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? status.LoadOnAcIsland.Ac.Power.Active
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: 0; // TODO
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// ┌─────────┐
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// │ Grid │
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// ├─────────┤ -10.3 kW
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// │ -3205 W │<<<<<<<<<<
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// │ -3507 W │ (a)
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// │ -3605 W │ K1
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// └─────────┘
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ActivePower islandToGridBusPower = inverterPower + islandLoadPower;
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var gridMeterAc = status.GridMeter?.Ac;
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var k1 = status.Relays?.K1GridBusIsConnectedToGrid;
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var gridBox = PhasePowersActive(gridMeterAc).TitleBox("Grid");
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var gridFlow = SwitchedFlow(k1, a);
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return TextBlock.AlignCenterVertical(gridBox, gridFlow);
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}
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private static TextBlock CreateGridBusColumn(this StatusRecord status,
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ActivePower? b,
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ActivePower? c,
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ActivePower? d)
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{
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// ┌────┐
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// │ Pv │
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// └────┘
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// V
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// V
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// (b) 0 W
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// V
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// V
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// ┌──────────┐
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// │ Grid Bus │
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// ├──────────┤ -11.7 kW
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// │ 244 V │<<<<<<<<<<
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// │ 244 V │ (d)
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// │ 246 V │ K2
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// └──────────┘
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// V
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// V
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// (c) 1400 W
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// V
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// V
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// ┌──────┐
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// │ Load │
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// └──────┘
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////////////// top //////////////
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var pvBox = TextBlock.FromString("PV").Box();
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var pvFlow = Flow.Vertical(b);
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////////////// center //////////////
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// on IslandBus show voltages measured by inverter
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// on GridBus show voltages measured by grid meter
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// ought to be approx the same
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var gridMeterAc = status.GridMeter?.Ac;
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var k2 = status.Relays?.K2IslandBusIsConnectedToGridBus;
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var gridToIslandConnection = SwitchedFlow(k2, islandToGridBusPower);
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var busBox = PhaseVoltages(gridMeterAc).TitleBox("Grid Bus");
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var busFlow = SwitchedFlow(k2, d);
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////////////// bottom //////////////
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var loadFlow = Flow.Vertical(c);
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var loadBox = TextBlock.FromString("Load").Box();
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////////////// assemble //////////////
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return TextBlock.AlignCenterVertical
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(
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gridTopology,
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gridToIslandConnection,
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islandTopology
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);
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TextBlock.AlignCenterHorizontal(pvBox, pvFlow, busBox, loadFlow, loadBox),
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busFlow
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);
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}
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private static TextBlock CreateGridTopology(this StatusRecord status)
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{
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Debug.Assert(status.GridMeter is not null);
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var gridBusColumn = status.CreateGridBusColumn();
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var gridBox = status.GridMeter.CreateGridBox();
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var k1 = status.Relays?.K1GridBusIsConnectedToGrid;
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var gridPower = status.GridMeter.Ac.Power.Active;
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var gridFlow = SwitchedFlow(k1, gridPower);
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return TextBlock
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.AlignCenterVertical
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(
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gridBox,
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gridFlow,
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gridBusColumn
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);
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}
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private static TextBlock SwitchedFlow(Boolean? switchClosed, ActivePower power)
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private static TextBlock CreateIslandBusColumn(this StatusRecord status,
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ActivePower? e,
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ActivePower? f,
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ActivePower? g)
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{
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return switchClosed is null ? TextBlock.FromString("??????????")
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: !switchClosed.Value ? Switch.Open("K1")
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: Flow.Horizontal(power);
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}
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private static TextBlock CreateIslandTopology(this StatusRecord status)
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{
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var dcBatteryPower = status.DcDc.Dc.Battery.Power;
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var dcdcPower = status.DcDc.Dc.Link.Power;
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var inverterPower = status.AcDc.Ac.Power.Active;
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var islandLoadPower = status.LoadOnAcIsland is not null
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? status.LoadOnAcIsland.Ac.Power.Active
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: 0; // TODO
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var batteries = status.CreateBatteryColumn();
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var dcBusColumn = status.CreateDcBusColumn();
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var islandBusColumn = status.CreateIslandBusColumn(islandLoadPower);
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var inverterBox = status.CreateInverterBox();
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var dcDcBox = status.CreateDcDcBox();
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return TextBlock
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.AlignCenterVertical
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(
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islandBusColumn, status.InverterToIslandBusConnection(),
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inverterBox , Flow.Horizontal(inverterPower), // inverter to DC bus
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dcBusColumn , Flow.Horizontal(dcdcPower),
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dcDcBox , Flow.Horizontal(dcBatteryPower),
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batteries
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);
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// ┌────┐
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// │ Pv │
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// └────┘
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// V
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// V
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// (e) 0 W
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// V
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// V
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// ┌────────────┐
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// │ Island Bus │
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// ├────────────┤ -11.7 kW
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// │ 244 V │<<<<<<<<<<
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// │ 244 V │ (g)
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// │ 246 V │ K3
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// └────────────┘
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// V
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// V
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// (f) 0 W
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// V
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// V
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// ┌──────┐
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// │ Load │
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// └──────┘
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////////////// top //////////////
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var pvBox = TextBlock.FromString("PV").Box();
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var pvFlow = Flow.Vertical(e);
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////////////// center //////////////
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// on IslandBus show voltages measured by inverter
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// on GridBus show voltages measured by grid meter
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// ought to be approx the same
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var inverterAc = status.AcDc.Ac;
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var busBox = PhaseVoltages(inverterAc).TitleBox("Island Bus");
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var busFlow = status.IslandBusToInverterConnection(g);
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////////////// bottom //////////////
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var loadFlow = Flow.Vertical(f);
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var loadBox = TextBlock.FromString("Load").Box();
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////////////// assemble //////////////
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return TextBlock.AlignCenterVertical
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(
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TextBlock.AlignCenterHorizontal(pvBox, pvFlow, busBox, loadFlow, loadBox),
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busFlow
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);
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}
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private static TextBlock CreateInverterColumn(this StatusRecord status, ActivePower? h)
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{
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// ┌─────────┐
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// │ AC/DC │
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// ├─────────┤ -11.7 kW
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// │ -6646 W │<<<<<<<<<<
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// │ -5071 W │ (h)
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// └─────────┘
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var inverterBox = status
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.AcDc
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.Devices
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.Select(d => d.Status.Ac.Power)
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.Apply(TextBlock.AlignLeft)
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.TitleBox("AC/DC");
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var gridFlow = Flow.Horizontal(h);
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return TextBlock.AlignCenterVertical(inverterBox, gridFlow);
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}
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[SuppressMessage("ReSharper", "PossibleMultipleEnumeration")]
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private static TextBlock InverterToIslandBusConnection(this StatusRecord status)
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private static TextBlock IslandBusToInverterConnection(this StatusRecord status, ActivePower? g)
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{
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if (status.Relays is null)
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return TextBlock.FromString("????????");
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var nInverters = status.AcDc.Devices.Count;
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var k3S = status
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.Relays
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.K3InverterIsConnectedToIslandBus
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.Take(status.AcDc.Devices.Count);
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.Take(nInverters);
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if (k3S.All(s => s))
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{
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var inverterPower = status.AcDc.Ac.Power.Active;
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return Flow.Horizontal(inverterPower);
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}
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if (k3S.Prepend(true).All(s => s)) // TODO: display when no ACDC present
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return Flow.Horizontal(g);
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return Switch.Open("K3");
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}
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private static TextBlock CreateGridBox(this IAc3Connection gridMeter)
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{
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return gridMeter
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.Ac
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.PhasePowersActive()
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.TitleBox("Grid");
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}
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private static TextBlock CreateDcDcBox(this StatusRecord status)
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private static TextBlock CreateDcDcColumn(this StatusRecord status, ActivePower? l)
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{
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var dc48Voltage = status.DcDc.Dc.Battery.Voltage.ToDisplayString();
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var busBox = TextBlock
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.AlignLeft(dc48Voltage)
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.TitleBox("DC/DC");
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var busFlow = Flow.Horizontal(l);
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return TextBlock
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.AlignLeft(dc48Voltage)
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.TitleBox("DC/DC");
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return TextBlock.AlignCenterVertical(busBox, busFlow);
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}
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private static TextBlock CreateInverterBox(this StatusRecord status)
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private static TextBlock CreateDcBusColumn(this StatusRecord status,
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ActivePower? i,
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ActivePower? j,
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ActivePower? k)
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{
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var inverterAcPhases = status
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.AcDc
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.Devices
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.Select(d => d.Status.Ac.Power)
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.ToReadOnlyList();
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return TextBlock
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.AlignLeft(inverterAcPhases)
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.TitleBox("AC/DC");
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}
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private static TextBlock CreateGridBusColumn(this StatusRecord status)
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{
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Debug.Assert(status.GridMeter is not null);
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var gridLoadPower = status.LoadOnAcGrid is not null
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? status.LoadOnAcGrid.Power.Active
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: 0; // TODO: show that LoadOnAcGrid is actually not available and not 0
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return CreateTopologyColumn
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(
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"PV" , 0,
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"Grid Bus", status.GridMeter.Ac.PhaseVoltages(),
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"Load" , gridLoadPower
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);
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}
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private static TextBlock CreateIslandBusColumn(this StatusRecord status, ActivePower islandLoadPower)
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{
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var islandBusPv = 0.W(); // TODO
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// ┌────┐
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// │ Pv │
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// └────┘
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// V
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// V
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// (i) 13.2 kW
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// V
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// V
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// ┌────────┐
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// │ Dc Bus │ 1008 W
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// ├────────┤>>>>>>>>>>
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// │ 776 V │ (k)
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// └────────┘
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// V
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// V
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// (j) 0 W
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// V
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// V
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// ┌──────┐
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// │ Load │
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// └──────┘
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//
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return CreateTopologyColumn
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(
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"PV" , islandBusPv,
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"Island Bus", status.AcDc.Ac.PhaseVoltages(),
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"Load" , islandLoadPower
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);
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}
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/////////////////// top ///////////////////
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private static TextBlock CreateDcBusColumn(this StatusRecord status)
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{
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var dcBusLoad = 0.W(); // TODO
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var pvOnDcPower = status.PvOnDc.Dc!.Power; // TODO !
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var dcLinkVoltage = status.DcDc.Dc.Link.Voltage.ToDisplayString();
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var mppt = status.PvOnDc;
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return CreateTopologyColumn
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var nStrings = mppt is not null
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? "x" + mppt.Strings.Count
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: "?";
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var pvBox = TextBlock.FromString($"PV {nStrings}").Box();
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var pvToBus = Flow.Vertical(i);
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/////////////////// center ///////////////////
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var dcBusVoltage = status.DcDc.Dc.Link.Voltage;
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var dcBusBox = dcBusVoltage
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.ToDisplayString()
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.Apply(TextBlock.FromString)
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.TitleBox("DC Bus ");
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var busFlow = Flow.Horizontal(k);
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/////////////////// bottom ///////////////////
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var busToLoad = Flow.Vertical(j);
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var loadBox = TextBlock.FromString("DC Load").Box();
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////////////// assemble //////////////
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return TextBlock.AlignCenterVertical
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(
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"PV" , pvOnDcPower,
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"DC Bus ", dcLinkVoltage,
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"DC Load", dcBusLoad
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TextBlock.AlignCenterHorizontal(pvBox, pvToBus, dcBusBox, busToLoad, loadBox),
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busFlow
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);
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}
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||||
|
@ -242,23 +406,23 @@ public static class Topology
|
|||
.TitleBox($"Battery x{nBatteries}");
|
||||
}
|
||||
|
||||
private static TextBlock PhaseVoltages(this Ac3Bus ac)
|
||||
private static TextBlock PhaseVoltages(Ac3Bus? ac)
|
||||
{
|
||||
return TextBlock.AlignLeft
|
||||
(
|
||||
ac.L1.Voltage.ToDisplayString(),
|
||||
ac.L2.Voltage.ToDisplayString(),
|
||||
ac.L3.Voltage.ToDisplayString()
|
||||
ac?.L1.Voltage.ToDisplayString() ?? "???",
|
||||
ac?.L2.Voltage.ToDisplayString() ?? "???",
|
||||
ac?.L3.Voltage.ToDisplayString() ?? "???"
|
||||
);
|
||||
}
|
||||
|
||||
private static TextBlock PhasePowersActive(this Ac3Bus ac)
|
||||
private static TextBlock PhasePowersActive(Ac3Bus? ac)
|
||||
{
|
||||
return TextBlock.AlignLeft
|
||||
(
|
||||
ac.L1.Power.Active.ToDisplayString(),
|
||||
ac.L2.Power.Active.ToDisplayString(),
|
||||
ac.L3.Power.Active.ToDisplayString()
|
||||
ac?.L1.Power.Active.ToDisplayString() ?? "???",
|
||||
ac?.L2.Power.Active.ToDisplayString() ?? "???",
|
||||
ac?.L3.Power.Active.ToDisplayString() ?? "???"
|
||||
);
|
||||
}
|
||||
|
||||
|
@ -285,17 +449,20 @@ public static class Topology
|
|||
return TextBlock.AlignCenterVertical(flow, box);
|
||||
}
|
||||
|
||||
[SuppressMessage("ReSharper", "SuggestBaseTypeForParameter")]
|
||||
private static TextBlock CreateTopologyColumn(String pvTitle , ActivePower pvPower,
|
||||
String busTitle , Object busData,
|
||||
String loadTitle, ActivePower loadPower)
|
||||
|
||||
private static ActivePower? Sum(ActivePower? e, ActivePower? f, ActivePower? g)
|
||||
{
|
||||
var pvBox = TextBlock.FromString(pvTitle).Box();
|
||||
var pvToBus = Flow.Vertical(pvPower);
|
||||
var busBox = TextBlock.AlignLeft(busData).TitleBox(busTitle);
|
||||
var busToLoad = Flow.Vertical(loadPower);
|
||||
var loadBox = TextBlock.FromString(loadTitle).Box();
|
||||
|
||||
return TextBlock.AlignCenterHorizontal(pvBox, pvToBus, busBox, busToLoad, loadBox);
|
||||
if (e is null || f is null || g is null)
|
||||
return null;
|
||||
|
||||
return f + g + e;
|
||||
}
|
||||
|
||||
private static TextBlock SwitchedFlow(Boolean? switchClosed, ActivePower? power)
|
||||
{
|
||||
return switchClosed is null ? TextBlock.FromString("??????????")
|
||||
: !switchClosed.Value ? Switch.Open("K1")
|
||||
: power is null ? TextBlock.FromString("??????????")
|
||||
: Flow.Horizontal(power);
|
||||
}
|
||||
}
|
||||
|
|
Loading…
Reference in New Issue