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(informative)

Mapping to IEEE Std 1547-2018


This annex maps various parameters in IEEE Std 2030.5-2018 to those needed by IEEE Std 1547-2018. The contents of this annex are not considered to be normative and are provided for reference.


Table E.1—Nameplate information


Parameter

Description

IEEE 2030.5-2018 parameter

Active power rating at unity power factor (nameplate active power

rating)

Active power rating in watts at unity power factor

DERCapability::rtgMaxW

Active power rating at specified

over-excited power factor

Active power rating in watts at

specified over-excited power factor

DERCapability::rtgOverExcitedW

Specified over-excited power factor

Over-excited power factor

DERCapability::rtgOverExcitedPF

Active power rating at specified under-excited power factor

Active power rating in watts at specified under-excited power

factor

DERCapability::rtgUnderExcitedW

Specified under-excited power

factor

Under-excited power factor

DERCapability::rtgUnderExcitedPF

Apparent power maximum rating

Maximum apparent power rating in

voltamperes

DERCapability::rtgMaxVA

Normal operating performance

category

Indication of reactive power and

voltage/power control capability

DERCapability::rtgNormalCategory

Abnormal operating performance category

Indication of voltage and frequency ride-through capability category I,

II, or III

DERCapability::rtgAbnormalCategory

Reactive power injected maximum

rating

Maximum injected reactive power

rating in vars

DERCapability::rtgMaxVar

Ractive power absorbed maximum

rating

Maximum absorbed reactive power

rating in vars

DERCapability::rtgMaxVarNeg

Active power charge maximum

rating

Maximum active power charge

rating in watts

DERCapability::rtgMaxChargeRateW

Apprarent power charge maximum rating

Maximum apparent power charge rating in voltamperes; may differ from the apparent power maximum rating

DERCapability::rtgMaxChargeRateVA

AC voltage nominal rating

Nominal ac voltage rating in rms

volts

DERCapability::rtgVNom

AC voltage maximum rating

Maximum ac voltage rating in rms

volts

DERCapability::rtgMaxV

AC voltage minimum rating

Minimum ac voltage rating in rms

volts

DERCapability::rtgMinV

Supported control mode functions

Indication of support for each

control mode function

DERCapability::modesSupported

Reactive susceptance that remains

connected to the Area EPS in the cease to energize and trip state

Reactive susceptance that remains

connected to the Area EPS in the cease to energize and trip state

DERCapability::rtgReactiveSusceptance

Manufacturer

Manufacturer

DeviceInformation::mfID

Model

Model

DeviceInformation::mfModel

Serial number

Serial number

DeviceInformation::mfSerNum

Version

Version

DeviceInformation::mfHwVer DeviceInformation::swVer


Table E.2—Monitoring information


Parameter

Description

IEEE 2030.5-2018 parameter

Active power

Active power in watts

ReadingType::accumulationBehaviour

= 12

ReadingType::commodity = 1

ReadingType::flowDirection = 19

ReadingType::kind = 37

ReadingType::uom = 38

Reactive power

Reactive power in vars

ReadingType::accumulationBehaviour

= 12

ReadingType::commodity = 1

ReadingType::flowDirection = 19

ReadingType::kind = 37

ReadingType::uom = 63

Voltage

Voltage(s) in volts (one parameter for single phase systems and three parameters for three phase systems)

ReadingType::accumulationBehaviour

= 12

ReadingType::commodity = 1

ReadingType::flowDirection = 1

ReadingType::phase = {phase} ReadingType::uom = 29

Frequency

Frequency in hertz

ReadingType::accumulationBehaviour

= 12

ReadingType::commodity = 1

ReadingType::flowDirection = 1

ReadingType::uom = 33

Operational state

Operational state of the DER. The operational state should represent the current state of the DER. The minimum supported states are on and

off but additional states may also be supported.

DERStatus::operationalModeStatus

Connection status

Power-connected status of the DER

DERStatus::genConnectStatus

DERStatus::storConnectStatus

Alarm status

Active alarm status

DERStatus::alarmStatus

Operational state of charge

0% to 100% of operational energy

storage capacity

DERStatus::stateOfChargeStatus


Table E.3—Constant Power Factor mode parameters


Parameter

Description

IEEE 2030.5-2018 parameter

Constant Power Factor mode

enable

Enable Constant Power Factor

mode

Active Event

Constant power factor

Constant power factor setting

DERControl::opModFixedPFInjectW

Constant power factor excitation

Constant power factor excitation

setting

DERControl::opModFixedPFInjectW.excitation


Table E.4—Voltage-reactive power mode parameters


Parameter

Description

IEEE 2030.5-2018 parameter

Voltage-reactive power mode

enable

Enable voltage-reactive power

mode

Active Event

VRef

Reference voltage

DERCurve::vRef

Autonomous VRef adjustment enable

Enable/disable autonomous VRef adjustment

DERCurve::autonomousVRefEnable

VRef adjustment time constant

Adjustment range for VRef time constant

DERCurve::autonomousVRefTimeConstant

V/Q curve points

Voltage-reactive power curve

points

DERControl::opModVoltVar::CurveData

Open loop response time

Time to ramp up to 90% of the

new reactive power target in response to the change in voltage

DERControl::opModVoltVar::openLoopTms


Table E.5—Active power-reactive power mode parameters


Parameter

Description

IEEE 2030.5-2018 parameter

Active power-reactive power mode enable

Enable active power-reactive power mode

Active Event

P/Q curve points

Active power-reactive power curve

points

DERControl::opModWattVar::CurveData


Table E.6—Constant reactive power mode parameters


Parameter

Description

IEEE 2030.5-2018 parameter

Constant reactive power mode enable

Enable constant reactive power mode

Active Event

Constant reactive power

Constant reactive power setting

DERControl::opModFixedVar

DERControl::opModTargetVar


Table E.7—Voltage-active power mode parameters


Parameter

Description

IEEE 2030.5-2018 parameter

Voltage-Active Power mode

enable

Enable Voltage-Active Power

mode

Active Event

V/P curve points

Voltage-active power curve

points

DERControl::opModVoltWatt::CurveData

Open loop response time

Time to ramp up to 90% of the new active power target in response to the change in voltage

DERControl::opModVoltWatt::openLoopTms


Table E.8—Voltage trip parameters


Parameter

Description

IEEE 2030.5-2018 parameter

High voltage (HV) trip curve

points

High voltage shall trip curve

points

DERControl::opModHVRTMustTrip::CurveData

Low voltage (LV) trip curve

points

Low voltage shall trip curve

points

DERControl::opModLVRTMustTrip::CurveData


Table E.9—Momentary cessation parameters


Parameter

Description

IEEE 2030.5-2018 parameter

HV momentary cessation

curve points

High voltage momentary

cessation curve points

DERControl::opModHVRTMomentaryCessation::CurveData

LV momentary cessation

curve points

Low voltage momentary

cessation curve points

DERControl::opModLVRTMomentaryCessation::CurveData


Table E.10—Frequency parameters


Parameter

Description

IEEE 2030.5-2018 parameter

High frequency (HF) trip curve

points

High frequency shall trip curve

points

DERControl::opModHFRTMustTrip::CurveData

Low frequency (LF) trip curve points

Low frequency shall trip curve points

DERControl::opModLFRTMustTrip::CurveData


Table E.11—Frequency droop parameters


Parameter

Description

IEEE 2030.5-2018 parameter

Over-frequency droop DBOF

Frequency droop dead band for

over-frequency conditions

DERControl::opModFreqDroop::dBOF

Under-frequency droop DBUF

Frequency droop dead band for

under-frequency conditions

DERControl::opModFreqDroop::dBUF

Over-frequency droop KOF

Frequency droop per-unit frequency change for over- frequency conditions corresponding to one per-unit

power output change

DERControl::opModFreqDroop::kOF

Under-frequency droop KUF

Frequency droop per-unit frequency change for under- frequency conditions

corresponding to one per-unit power output change

DERControl::opModFreqDroop::kUF

Open loop response time

The duration from a step change in control signal input until the output changes by 90% of its final change, before any overshoot

DERControl::opModFreqDroop::openLoopTms


Table E.12—Enter service after trip parameters


Parameter

Description

IEEE 2030.5-2018 parameter

Permit service

Able to enter or stay in service

DERControl::opModEnergize

Enter service (ES) voltage high

Enter service voltage high

DERSettings::setESHighVolt

DefaultDERControl::setESHighVolt

ES voltage low

Enter service voltage low

DERSettings::setESLowVolt

DefaultDERControl::setESLowVolt

ES frequency high

Enter service frequency high

DERSettings::setESHighFreq

DefaultDERControl::setESHighFreq

ES frequency low

Enter service frequency low

DERSettings::setESLowFreq

DefaultDERControl::setESLowFreq

ES delay

Enter service delay

DERSettings::setESDelay

DefaultDERControl::setESDelay

ES randomized delay

Enter service randomized delay

DERSettings::setESRandomDelay

DefaultDERControl::setESRandomDelay

ES ramp rate

Enter service ramp rate

DERSettings::setESRampTms

DefaultDERControl::setESRampTms


Table E.13—Limit maximum active power parameters


Parameter

Description

IEEE 2030.5-2018 parameter

Limit active power enable

Enable mode

Active Event

Maximum active power

Maximum active power setting

DERControl::opModMaxLimW