MultiEval

SCPI Commands :

CONFigure:NRSub:MEASurement<Instance>:MEValuation:PFORmat
CONFigure:NRSub:MEASurement<Instance>:MEValuation:TOUT
CONFigure:NRSub:MEASurement<Instance>:MEValuation:DMODe
CONFigure:NRSub:MEASurement<Instance>:MEValuation:SCSPacing
CONFigure:NRSub:MEASurement<Instance>:MEValuation:CBANdwidth
CONFigure:NRSub:MEASurement<Instance>:MEValuation:DFTPrecoding
CONFigure:NRSub:MEASurement<Instance>:MEValuation:MSCHeme
CONFigure:NRSub:MEASurement<Instance>:MEValuation:CPRefix
CONFigure:NRSub:MEASurement<Instance>:MEValuation:NSValue
CONFigure:NRSub:MEASurement<Instance>:MEValuation:PLCid
CONFigure:NRSub:MEASurement<Instance>:MEValuation:CTYPe
CONFigure:NRSub:MEASurement<Instance>:MEValuation:PUSChconfig
CONFigure:NRSub:MEASurement<Instance>:MEValuation:MAPType
CONFigure:NRSub:MEASurement<Instance>:MEValuation:REPetition
CONFigure:NRSub:MEASurement<Instance>:MEValuation:SCONdition
CONFigure:NRSub:MEASurement<Instance>:MEValuation:MMODe
CONFigure:NRSub:MEASurement<Instance>:MEValuation:MOEXception
CONFigure:NRSub:MEASurement<Instance>:MEValuation:NVFilter
CONFigure:NRSub:MEASurement<Instance>:MEValuation:CTVFilter
CONFigure:NRSub:MEASurement<Instance>:MEValuation:NSUBframes
CONFigure:NRSub:MEASurement<Instance>:MEValuation:FSTRucture
CONFigure:NRSub:MEASurement<Instance>:MEValuation:DSSPusch
CONFigure:NRSub:MEASurement<Instance>:MEValuation:GHOPping
Commands in total: 152
Subgroups: 16
Direct child commands: 23
class PuschConfigStruct[source]

Structure for setting input parameters. Fields:

  • Mod_Scheme: enums.ModulationScheme: No parameter help available

  • Mapping_Type: enums.MappingType: No parameter help available

  • Nrb_Auto: bool: No parameter help available

  • No_Rb: int: No parameter help available

  • Start_Rb: int: No parameter help available

  • No_Symbols: int: No parameter help available

  • Start_Symbol: int: No parameter help available

  • Config_Type: enums.ConfigType: No parameter help available

  • Max_Length: enums.MaxLength: No parameter help available

  • Add_Position: int: No parameter help available

  • Lzero: int: No parameter help available

get_cbandwidth() ChannelBwidth[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:CBANdwidth
value: enums.ChannelBwidth = driver.configure.nrSubMeas.multiEval.get_cbandwidth()

No help available

get_cprefix() CyclicPrefix[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:CPRefix
value: enums.CyclicPrefix = driver.configure.nrSubMeas.multiEval.get_cprefix()

No help available

get_ctv_filter() ChannelTypeB[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:CTVFilter
value: enums.ChannelTypeB = driver.configure.nrSubMeas.multiEval.get_ctv_filter()

No help available

get_ctype() ChannelTypeA[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:CTYPe
value: enums.ChannelTypeA = driver.configure.nrSubMeas.multiEval.get_ctype()

No help available

get_dft_precoding() bool[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:DFTPrecoding
value: bool = driver.configure.nrSubMeas.multiEval.get_dft_precoding()

No help available

get_dmode() DuplexModeB[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:DMODe
value: enums.DuplexModeB = driver.configure.nrSubMeas.multiEval.get_dmode()

Selects the duplex mode of the signal: FDD or TDD.

Returns:

mode: FDD | TDD

get_dss_pusch() int[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:DSSPusch
value: int = driver.configure.nrSubMeas.multiEval.get_dss_pusch()

No help available

get_fstructure() ConfigType[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:FSTRucture
value: enums.ConfigType = driver.configure.nrSubMeas.multiEval.get_fstructure()

No help available

get_ghopping() bool[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:GHOPping
value: bool = driver.configure.nrSubMeas.multiEval.get_ghopping()

No help available

get_map_type() MappingType[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:MAPType
value: enums.MappingType = driver.configure.nrSubMeas.multiEval.get_map_type()

No help available

get_mmode() MeasurementMode[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:MMODe
value: enums.MeasurementMode = driver.configure.nrSubMeas.multiEval.get_mmode()

Selects the measurement mode.

Returns:

measurement_mode: NORMal: normal mode MELMode: multi-evaluation list mode For a setting command, only NORMal is allowed (disables the list mode) . A query can also return MELM.

get_mo_exception() bool[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:MOEXception
value: bool = driver.configure.nrSubMeas.multiEval.get_mo_exception()

Specifies whether measurement results identified as faulty or inaccurate are rejected.

Returns:

meas_on_exception: OFF: Faulty results are rejected. ON: Results are never rejected.

get_mscheme() ModulationScheme[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:MSCHeme
value: enums.ModulationScheme = driver.configure.nrSubMeas.multiEval.get_mscheme()

No help available

get_ns_value() NetworkSigVal[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:NSValue
value: enums.NetworkSigVal = driver.configure.nrSubMeas.multiEval.get_ns_value()

Selects the ‘network signaled value’.

Returns:

value: Value NS_01 to NS_100, NS_03U, NS_05U, NS_43U

get_nsub_frames() int[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:NSUBframes
value: int = driver.configure.nrSubMeas.multiEval.get_nsub_frames()

Specifies the number of subframes to be evaluated.

Returns:

no_subframe: decimal

get_nvfilter() int | bool[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:NVFilter
value: int | bool = driver.configure.nrSubMeas.multiEval.get_nvfilter()

Specifies, enables or disables the number of resource blocks (NRB) view filter. If the filter is active, only slots with a matching number of allocated resource blocks are measured.

Returns:

nrb_view_filter: (integer or boolean) Number of allocated resource blocks The allowed values depend on the SC spacing and on the channel bandwidth, see ‘Resource elements, grids and blocks’.

get_pformat() PucchFormat[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:PFORmat
value: enums.PucchFormat = driver.configure.nrSubMeas.multiEval.get_pformat()

No help available

get_plc_id() int[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:PLCid
value: int = driver.configure.nrSubMeas.multiEval.get_plc_id()

No help available

get_pusch_config() PuschConfigStruct[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:PUSChconfig
value: PuschConfigStruct = driver.configure.nrSubMeas.multiEval.get_pusch_config()

No help available

Returns:

structure: for return value, see the help for PuschConfigStruct structure arguments.

get_repetition() Repeat[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:REPetition
value: enums.Repeat = driver.configure.nrSubMeas.multiEval.get_repetition()

Specifies the repetition mode of the measurement. The repetition mode specifies whether the measurement is stopped after a single shot or repeated continuously. Use the CONFigure:…:MEAS<i>:…:SCOunt commands to specify the number of measurement intervals per single shot.

Returns:

repetition: SINGleshot: Single-shot measurement CONTinuous: Continuous measurement

get_sc_spacing() SubCarrSpacing[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:SCSPacing
value: enums.SubCarrSpacing = driver.configure.nrSubMeas.multiEval.get_sc_spacing()

No help available

get_scondition() StopCondition[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:SCONdition
value: enums.StopCondition = driver.configure.nrSubMeas.multiEval.get_scondition()

Qualifies whether the measurement is stopped after a failed limit check or continued. With SLFail, the measurement is stopped and reaches the RDY state when one of the results exceeds the limits.

Returns:

stop_condition: NONE: Continue measurement irrespective of the limit check. SLFail: Stop measurement on limit failure.

get_timeout() float[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:TOUT
value: float = driver.configure.nrSubMeas.multiEval.get_timeout()

Defines a timeout for the measurement. The timer is started when the measurement is initiated via a READ or INIT command. It is not started if the measurement is initiated manually. When the measurement has completed the first measurement cycle (first single shot) , the statistical depth is reached and the timer is reset. If the first measurement cycle has not been completed when the timer expires, the measurement is stopped. The measurement state changes to RDY. The reliability indicator is set to 1, indicating that a measurement timeout occurred. Still running READ, FETCh or CALCulate commands are completed, returning the available results. At least for some results, there are no values at all or the statistical depth has not been reached. A timeout of 0 s corresponds to an infinite measurement timeout.

Returns:

timeout: numeric

set_cbandwidth(channel_bw: ChannelBwidth) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:CBANdwidth
driver.configure.nrSubMeas.multiEval.set_cbandwidth(channel_bw = enums.ChannelBwidth.B003)

No help available

set_cprefix(cyclic_prefix: CyclicPrefix) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:CPRefix
driver.configure.nrSubMeas.multiEval.set_cprefix(cyclic_prefix = enums.CyclicPrefix.EXTended)

No help available

set_ctv_filter(channel_type: ChannelTypeB) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:CTVFilter
driver.configure.nrSubMeas.multiEval.set_ctv_filter(channel_type = enums.ChannelTypeB.OFF)

No help available

set_ctype(channel_type: ChannelTypeA) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:CTYPe
driver.configure.nrSubMeas.multiEval.set_ctype(channel_type = enums.ChannelTypeA.PUCCh)

No help available

set_dft_precoding(on_off: bool) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:DFTPrecoding
driver.configure.nrSubMeas.multiEval.set_dft_precoding(on_off = False)

No help available

set_dmode(mode: DuplexModeB) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:DMODe
driver.configure.nrSubMeas.multiEval.set_dmode(mode = enums.DuplexModeB.FDD)

Selects the duplex mode of the signal: FDD or TDD.

Parameters:

mode – FDD | TDD

set_dss_pusch(delta_seq_sh_pusch: int) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:DSSPusch
driver.configure.nrSubMeas.multiEval.set_dss_pusch(delta_seq_sh_pusch = 1)

No help available

set_ghopping(value: bool) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:GHOPping
driver.configure.nrSubMeas.multiEval.set_ghopping(value = False)

No help available

set_map_type(mapping_type: MappingType) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:MAPType
driver.configure.nrSubMeas.multiEval.set_map_type(mapping_type = enums.MappingType.A)

No help available

set_mmode(measurement_mode: MeasurementMode) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:MMODe
driver.configure.nrSubMeas.multiEval.set_mmode(measurement_mode = enums.MeasurementMode.MELMode)

Selects the measurement mode.

Parameters:

measurement_mode – NORMal: normal mode MELMode: multi-evaluation list mode For a setting command, only NORMal is allowed (disables the list mode) . A query can also return MELM.

set_mo_exception(meas_on_exception: bool) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:MOEXception
driver.configure.nrSubMeas.multiEval.set_mo_exception(meas_on_exception = False)

Specifies whether measurement results identified as faulty or inaccurate are rejected.

Parameters:

meas_on_exception – OFF: Faulty results are rejected. ON: Results are never rejected.

set_mscheme(mod_scheme: ModulationScheme) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:MSCHeme
driver.configure.nrSubMeas.multiEval.set_mscheme(mod_scheme = enums.ModulationScheme.AUTO)

No help available

set_ns_value(value: NetworkSigVal) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:NSValue
driver.configure.nrSubMeas.multiEval.set_ns_value(value = enums.NetworkSigVal.NS01)

Selects the ‘network signaled value’.

Parameters:

value – Value NS_01 to NS_100, NS_03U, NS_05U, NS_43U

set_nsub_frames(no_subframe: int) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:NSUBframes
driver.configure.nrSubMeas.multiEval.set_nsub_frames(no_subframe = 1)

Specifies the number of subframes to be evaluated.

Parameters:

no_subframe – decimal

set_nvfilter(nrb_view_filter: int | bool) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:NVFilter
driver.configure.nrSubMeas.multiEval.set_nvfilter(nrb_view_filter = 1)

Specifies, enables or disables the number of resource blocks (NRB) view filter. If the filter is active, only slots with a matching number of allocated resource blocks are measured.

Parameters:

nrb_view_filter – (integer or boolean) Number of allocated resource blocks The allowed values depend on the SC spacing and on the channel bandwidth, see ‘Resource elements, grids and blocks’.

set_pformat(pucch_format: PucchFormat) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:PFORmat
driver.configure.nrSubMeas.multiEval.set_pformat(pucch_format = enums.PucchFormat.F0)

No help available

set_plc_id(phs_layer_cell_id: int) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:PLCid
driver.configure.nrSubMeas.multiEval.set_plc_id(phs_layer_cell_id = 1)

No help available

set_pusch_config(value: PuschConfigStruct) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:PUSChconfig
structure = driver.configure.nrSubMeas.multiEval.PuschConfigStruct()
structure.Mod_Scheme: enums.ModulationScheme = enums.ModulationScheme.AUTO
structure.Mapping_Type: enums.MappingType = enums.MappingType.A
structure.Nrb_Auto: bool = False
structure.No_Rb: int = 1
structure.Start_Rb: int = 1
structure.No_Symbols: int = 1
structure.Start_Symbol: int = 1
structure.Config_Type: enums.ConfigType = enums.ConfigType.T1
structure.Max_Length: enums.MaxLength = enums.MaxLength.DOUBle
structure.Add_Position: int = 1
structure.Lzero: int = 1
driver.configure.nrSubMeas.multiEval.set_pusch_config(value = structure)

No help available

Parameters:

value – see the help for PuschConfigStruct structure arguments.

set_repetition(repetition: Repeat) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:REPetition
driver.configure.nrSubMeas.multiEval.set_repetition(repetition = enums.Repeat.CONTinuous)

Specifies the repetition mode of the measurement. The repetition mode specifies whether the measurement is stopped after a single shot or repeated continuously. Use the CONFigure:…:MEAS<i>:…:SCOunt commands to specify the number of measurement intervals per single shot.

Parameters:

repetition – SINGleshot: Single-shot measurement CONTinuous: Continuous measurement

set_sc_spacing(sub_carr_spacing: SubCarrSpacing) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:SCSPacing
driver.configure.nrSubMeas.multiEval.set_sc_spacing(sub_carr_spacing = enums.SubCarrSpacing.S15K)

No help available

set_scondition(stop_condition: StopCondition) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:SCONdition
driver.configure.nrSubMeas.multiEval.set_scondition(stop_condition = enums.StopCondition.NONE)

Qualifies whether the measurement is stopped after a failed limit check or continued. With SLFail, the measurement is stopped and reaches the RDY state when one of the results exceeds the limits.

Parameters:

stop_condition – NONE: Continue measurement irrespective of the limit check. SLFail: Stop measurement on limit failure.

set_timeout(timeout: float) None[source]
# CONFigure:NRSub:MEASurement<Instance>:MEValuation:TOUT
driver.configure.nrSubMeas.multiEval.set_timeout(timeout = 1.0)

Defines a timeout for the measurement. The timer is started when the measurement is initiated via a READ or INIT command. It is not started if the measurement is initiated manually. When the measurement has completed the first measurement cycle (first single shot) , the statistical depth is reached and the timer is reset. If the first measurement cycle has not been completed when the timer expires, the measurement is stopped. The measurement state changes to RDY. The reliability indicator is set to 1, indicating that a measurement timeout occurred. Still running READ, FETCh or CALCulate commands are completed, returning the available results. At least for some results, there are no values at all or the statistical depth has not been reached. A timeout of 0 s corresponds to an infinite measurement timeout.

Parameters:

timeout – numeric

Cloning the Group

# Create a copy of the original group, that exists independently
multiEval_copy = driver.configure.nrSubMeas.multiEval.clone()

Subgroups