195 lines
6.2 KiB
C++
195 lines
6.2 KiB
C++
/* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * *
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*
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* Copyright 2013 - 2021, nymea GmbH
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* Contact: contact@nymea.io
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*
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* This fileDescriptor is part of nymea.
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* This project including source code and documentation is protected by
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* copyright law, and remains the property of nymea GmbH. All rights, including
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* reproduction, publication, editing and translation, are reserved. The use of
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* this project is subject to the terms of a license agreement to be concluded
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* with nymea GmbH in accordance with the terms of use of nymea GmbH, available
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* under https://nymea.io/license
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*
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* GNU Lesser General Public License Usage
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* Alternatively, this project may be redistributed and/or modified under the
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* terms of the GNU Lesser General Public License as published by the Free
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* Software Foundation; version 3. This project is distributed in the hope that
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* it will be useful, but WITHOUT ANY WARRANTY; without even the implied
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* warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public License
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* along with this project. If not, see <https://www.gnu.org/licenses/>.
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*
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* For any further details and any questions please contact us under
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* contact@nymea.io or see our FAQ/Licensing Information on
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* https://nymea.io/license/faq
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*
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* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
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#ifndef SUNSPECSTATUSMODEL_H
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#define SUNSPECSTATUSMODEL_H
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#include <QObject>
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#include "sunspecmodel.h"
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class SunSpecConnection;
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class SunSpecStatusModel : public SunSpecModel
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{
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Q_OBJECT
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public:
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enum Pvconn {
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PvconnConnected = 0x1,
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PvconnAvailable = 0x2,
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PvconnOperating = 0x4,
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PvconnTest = 0x8
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};
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Q_DECLARE_FLAGS(PvconnFlags, Pvconn)
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Q_FLAG(Pvconn)
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enum Storconn {
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StorconnConnected = 0x1,
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StorconnAvailable = 0x2,
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StorconnOperating = 0x4,
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StorconnTest = 0x8
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};
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Q_DECLARE_FLAGS(StorconnFlags, Storconn)
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Q_FLAG(Storconn)
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enum Ecpconn {
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EcpconnConnected = 0x1
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};
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Q_DECLARE_FLAGS(EcpconnFlags, Ecpconn)
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Q_FLAG(Ecpconn)
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enum Stsetlimmsk {
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StsetlimmskWMax = 0x1,
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StsetlimmskVaMax = 0x2,
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StsetlimmskVArAval = 0x4,
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StsetlimmskVArMaxQ1 = 0x8,
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StsetlimmskVArMaxQ2 = 0x10,
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StsetlimmskVArMaxQ3 = 0x20,
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StsetlimmskVArMaxQ4 = 0x40,
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StsetlimmskPfMinQ1 = 0x80,
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StsetlimmskPfMinQ2 = 0x100,
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StsetlimmskPfMinQ3 = 0x200,
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StsetlimmskPfMinQ4 = 0x400
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};
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Q_DECLARE_FLAGS(StsetlimmskFlags, Stsetlimmsk)
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Q_FLAG(Stsetlimmsk)
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enum Stactctl {
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StactctlFixedW = 0x1,
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StactctlFixedVar = 0x2,
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StactctlFixedPf = 0x4,
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StactctlVoltVAr = 0x8,
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StactctlFreqWattParam = 0x10,
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StactctlFreqWattCurve = 0x20,
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StactctlDynReactiveCurrent = 0x40,
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StactctlLvrt = 0x80,
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StactctlHvrt = 0x100,
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StactctlWattPf = 0x200,
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StactctlVoltWatt = 0x400,
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StactctlScheduled = 0x1000,
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StactctlLfrt = 0x2000,
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StactctlHfrt = 0x4000
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};
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Q_DECLARE_FLAGS(StactctlFlags, Stactctl)
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Q_FLAG(Stactctl)
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enum Rtst {
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RtstLvrtActive = 0x1,
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RtstHvrtActive = 0x2,
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RtstLfrtActive = 0x4,
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RtstHfrtActive = 0x8
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};
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Q_DECLARE_FLAGS(RtstFlags, Rtst)
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Q_FLAG(Rtst)
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explicit SunSpecStatusModel(SunSpecConnection *connection, quint16 modbusStartRegister, quint16 modelLength, SunSpecDataPoint::ByteOrder byteOrder, QObject *parent = nullptr);
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~SunSpecStatusModel() override;
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QString name() const override;
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QString description() const override;
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QString label() const override;
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/* PV inverter present/available status. Enumerated value. */
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PvconnFlags pvConn() const;
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/* Storage inverter present/available status. Enumerated value. */
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StorconnFlags storConn() const;
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/* ECP connection status: disconnected=0 connected=1. */
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EcpconnFlags ecpConn() const;
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/* AC lifetime active (real) energy output. [Wh] */
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quint64 actWh() const;
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/* AC lifetime apparent energy output. [VAh] */
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quint64 actVAh() const;
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/* AC lifetime reactive energy output in quadrant 1. [varh] */
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quint64 actVArhQ1() const;
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/* AC lifetime reactive energy output in quadrant 2. [varh] */
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quint64 actVArhQ2() const;
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/* AC lifetime negative energy output in quadrant 3. [varh] */
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quint64 actVArhQ3() const;
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/* AC lifetime reactive energy output in quadrant 4. [varh] */
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quint64 actVArhQ4() const;
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/* Amount of VARs available without impacting watts output. [var] */
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float vArAval() const;
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/* Scale factor for available VARs. */
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qint16 vArAvalSf() const;
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/* Amount of Watts available. [var] */
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float wAval() const;
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/* Scale factor for available Watts. */
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qint16 wAvalSf() const;
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/* Bit Mask indicating setpoint limit(s) reached. */
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StsetlimmskFlags stSetLimMsk() const;
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/* Bit Mask indicating which inverter controls are currently active. */
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StactctlFlags stActCtl() const;
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/* Source of time synchronization. */
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QString tmSrc() const;
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/* Seconds since 01-01-2000 00:00 UTC [Secs] */
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quint32 tms() const;
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/* Bit Mask indicating active ride-through status. */
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RtstFlags rtSt() const;
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/* Isolation resistance. [ohms] */
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float ris() const;
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/* Scale factor for isolation resistance. */
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qint16 risSf() const;
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protected:
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quint16 m_fixedBlockLength = 44;
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void initDataPoints();
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void processBlockData() override;
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private:
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PvconnFlags m_pvConn;
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StorconnFlags m_storConn;
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EcpconnFlags m_ecpConn;
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quint64 m_actWh = 0;
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quint64 m_actVAh = 0;
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quint64 m_actVArhQ1 = 0;
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quint64 m_actVArhQ2 = 0;
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quint64 m_actVArhQ3 = 0;
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quint64 m_actVArhQ4 = 0;
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float m_vArAval = 0;
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qint16 m_vArAvalSf = 0;
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float m_wAval = 0;
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qint16 m_wAvalSf = 0;
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StsetlimmskFlags m_stSetLimMsk;
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StactctlFlags m_stActCtl;
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QString m_tmSrc;
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quint32 m_tms = 0;
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RtstFlags m_rtSt;
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float m_ris = 0;
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qint16 m_risSf = 0;
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};
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QDebug operator<<(QDebug debug, SunSpecStatusModel *model);
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#endif // SUNSPECSTATUSMODEL_H
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