Spatial

EAW Spatial Owner's manual

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SpatialEqualizationABetterWaytoTuneSoundSystems
5/11/2017
Introduction
ThisdocumentdescribesSpatialEqualization,anewfeatureforEAWAdaptiveSystems.SpatialEqualization
requiresEAWResolution2.3.0.123andAnnafirmware1.0.18.0orAnyafirmware1.0.44.1orhigher.Spatial
EqualizationisavailableonlyonAnnaandAnyaandthroughtheuseofEAWResolutionsoftwareforprediction,
controlandmonitoring.
Spatial
EqualizationallowsAdaptiveSystemsuserstosimplyselectapartoftheaudiencewhereatonalchangeis
desiredandapplythetargetEQ.AdaptiveSystemsthendeterminethechangesnecessarytoimplementitanddo
soinrealtime.Forthefirsttime,userscantrulyEQtheroom
insteadofthesoundsystem.
TheCaseforSpatialEQ:
ABetterWaythan‘TurningKnobs’
Itisalmostalwaysthecasethatonceasystemisinstalled(temporarilyorpermanently)inavenue,adjustments
mustbemadetoequalizationincertainpartsoftheaudiencerelativetoothers.Thisisnecessarytocompensate
forphenomenonsuchaslowfrequencybuildupduetotheproximityofthe
soundsystemtonearbysurfaces,local
resonances(i.e.underabalcony),atmosphericairlossoverdistanceandotherphenomena.Itisafactoflifeinthe
worldofthesystemengineerordesignerandtheprocessof‘tuning’asystemcanbeverytimeconsuming,in
largepartbecause
itisnotsimplyaquestionofwhattoadjust,butalsohowtoadjustit.Itisoftenthe“how”that
takesthemosttime.
Itisgenerallynotachallengetoestablishwhere,inagivenvenue,afrequencyresponseanomalyexists.This
evaluationisoftenbysimplywalking
thevenueorbyusingameasurementsystemandmovingacalibrated
microphonearound.However,evenaftertheuseridentifiestheadjustmenttheywanttomake,traditional
mechanicallyarticulatedlinearraysystemsofferlimitedoptionstomakethoseadjustments.Itisnecessaryfor
systemengineerstodeterminewhatpartof
thesystemiscontributingmosttothatarea,attempttoisolateit
(whichmayormaynotbepossibledependingonsplay,frequencyandamplification),makeadjustmentsandthen
determine:
a) Whethertheadjustmentshavebeeneffectiveinthetargetedareaand
b) Iftheadjustmentshavehadnegativeeffectselsewhere.
c) If(b)isfoundtobetrue,whatfurtheradjustmentscanbemadetoreducenegativeeffects.
Additionally,withmechanicallyarticulatedlinearraysystemsthe‘spatialresolution’ofthesystemisverycoarse.
Eachmodulecoversalargesectionofaudience,andsoeveniftheoperatorisable
tocontroleacharraymodule
individually,theaffectedareaislarge.
EvenacompactAdaptivearrayincludesnearly50highfrequencycells,allowingforverypreciseaimingacross
avenue.Eachcellthereforeaddressesaverysmallareaofthevenue,allowingveryprecisecontrol:
Whereaswithatraditionalmechanicallyarticulatedlinearray,onlyasmallernumberofcells(equalto
the
quantityofarraymodules)mustbedistributedacrosstheentireseatingcrosssection.Thearrayaddressedby
eachcell,therefore,isverylarge:
Anotherproblemwiththisapproachisthat,becauseatraditionalarrayhasrelativelyfewcells,theadjustmentto
eachmoduleislarge,andsothedifference
inprocessingfromonemoduletoanotherislarge(onemodulemay
havenoequalizationadjustment,whereasthenexthastheadjustment.Thereisno‘inbetween’state).This
opensup‘seams’asthelistenermovesfromthecoverageofonemoduletothatofthenextinthearraybecause
oftheamplitudeandphasedifferencesasthelistenertransitionsfromtheareaservedbyonemoduleversus
another,asshownbelow:
Overall,applyingdifferentprocessingtodifferentpartsofatraditionallinearraywillalwaystradefavorable
resultsinsomeplacesandunfavorableresultsinothers.
Seam
between
zones
TheProcesswithSpatialEQ:SelectAudienceArea,SpecifyDesiredChange,Done.
TheintroductionofSpatialEqualizationdrasticallysimplifiestheprocessthatusersundergotomakeadjustments
totheirsystem.Userssimplyselectacolumncoveringtheportionofaudiencetheywishtoapplytheadjustment
to,specifya‘start’and‘end’tothezone,andapplyaparametricequalizationfilter.Resolutionwill,
basedonthe
user’sinput,determinewhatpartofthearrayisservingtheindicatedzoneandapplyfilteringinsuchawaythat
onlythatzoneisaffected.
Resolutionwill,basedonthearray’scoverageandaudiencegeometry,alsoautomaticallyindicatetheareathat
willactuallybeaffectedby
theirchange,inrealtime.Thishelpsusersquicklyunderstandthesmallestzonethey
canaffectbasedonthevenuegeometry,arraysizeandallocation.
Below,thetraditionalandnewprocessesarecompared:
Step TraditionalSystem AdaptiveSystemwithSpatialEQ
1 Installsystem. Installsystem.
2
Surveyvenue(byearorwith
measurementtool).Identifyproblem
areas.
Surveyvenue(byearorwith
measurementtool).Identifyproblem
areas.
3
Determinewhatpartofsoundsystem
servesproblemareas.
Notnecessary.
4
Basedonsystemdesign,isolatepartof
systemservingproblemarea.
Notnecessary.
5
Makeadjustmenttopartofthesystem
servingproblemarea.
Selectareaandmakeadjustment.
6
Resurveyvenuetoidentifyifproblem
iscorrected,orifnewproblemsexist.
Notnecessary.
7
Ifcorrectionhascausednewproblems,
gobacktostep3andmakefurther
adjustments.
Notnecessary.
8 Usesystem. Usesystem.
UsingSpatialEQ,theusercanboth:
a) Achieveamuchbetterresultthanwouldbepossiblywithatraditionalsystem
b) Accomplishthisgoalmuchmorequicklythanwouldotherwisebepossible.
HowtoUseSpatialEqualization
TheSpatialEQwindowfunctionslikeanormalequalizerwindow,exceptthattheusercanspecifytheboundsof
theareatheywishtoaffect.“Start”and“Stop”functionjustlikecoverage,inthattheyspecifytheaudienceareas
bytheirxaxisvalue(movingtowardsorawayfromthearray).
Theusercanalsousethe‘Zoverride’functionto
limittheaffectedareabasedontheirzvalue(height)inthevenue;thiscanbeusefulinselectingabalconyorfloor
belowabalconythatarethesamehorizontaldistanceawayfromthearea.
Oncetheareahas
beenspecifiedandthefilter,gainandbandwidthentered,theusercanviewtheresultant
affectedareaintheVenueview.Thetargetareaisindicatedasasolidline,whiletheanticipatedaffectedareais
indicatedbyadashedline.
Thedifferencebetweenthetargetareaandtheexpanded
areaisdeterminedbythearraysize,desired
equalizationfrequency,andallocationofarrayresourceswithinthevenue.ThisisvisibleinboththeSideView
andFreeView.Thisfeedbackstepiscrucialinhelpingtheusertodecidewhatequalizationtoapply.UsingSpatial
EQhowever,thechangeis
notonlymoreprecisewithrespecttoaffectedarea,buttheusercanalsoidentifythe
totalaffectedareainadvanceofmakingthechange.Thissavesthetimeconsumingstepsofremeasuring,
makingfurtheradjustments,etc.aswouldberequiredforatraditionallinearray.
Zoneparameters
EQparameters
Oncetheuserhasselectedtheirzoneandenteredtheequalizationparameters,thechangewillbelive.Ifonline
withasystem,theequalizationwillbeappliedtotheoutputofthesystem.Noparameteruploadoradditional
calculationsarenecessary.Additionally,theeffectoftheSpatialEQonthe
audienceareaSPLandfrequency
responsewillberecalculatedanddisplayed.
Generally,highertrimheightsandlongerarrayswillresultingreaterprecisionandtheabilitytoapplySpatialEQ
tosmalleraudienceareas.Thesizeoftheaffectedareawilladjustautomaticallywhenthefrequencyofthefilteris
adjusted.Asonemightexpect,lowerfrequencyadjustmentswillaffectagreaterareaoftheaudience.Inall
cases,Resolutionwilldeterminetheidealparameteradjustmentstominimizetheaffectedareaoutsidethe
targetzone.
TargetZone
AffectedArea
FrequentlyAskedQuestionsaboutSpatialEqualization
WillSpatialEQaffectthecoverageofthearray?
No.Unlikethetraditionalapproachwherestandardparametricequalizationisappliedonlytospecificmodulesin
thearrayinatrialanderrorfashion,SpatialEQanalyzesandappliesprocessingsuchthatthechangesbetween
cellsareverysmall.Additionally,thefilter
implementationusedtoapplySpatialEQwasselectedspecificallywith
considerationtophaselinearity.Thus,thecoveragepatternisunaffected.Itwouldnotbepossibletoaccomplish
thisinanyotherway.
HowlongdoesSpatialEQtaketocalculate?
Noacousticalmodelrecalculationisnecessary.Thus,thecalculationtakesonlysecondstocompleteandupload
tothearray(ifonlinewithasystem).
What’sthesmallestareaIcanaffect?
Thisdependsonthevenuegeometryandarraysize.Withmoremodules,theminimumareathatcanbeaffected
getssmallerbecausetheareathateachmodulecoversgets
smaller.Inallcases,Resolutionwillalwaysindicate
theexpectedaffectedareabasedontheuser’stargetzonestartandstop.Ataglance,userswillknowtheimpact
oftheadjustmenttheyaremakingwithoutneedingtoremeasureandverify.
Whydoesmyaffectedareachangewithfrequency?
Asafundamentallawofacoustics,wavelengthdictateseverything.Lowerfrequencies,withtheirlarger
wavelengths,makethesmallestareainwhichaSpatialEQchangeispossiblelargerthanhigherfrequencieswith
smallerassociatedwavelengths.Asarraylengthgrows,theaffectedareaforagivenzoneandfrequencywill
become
smaller.
WhatdocurrentAdaptivesystemownersneedtodotogetSpatialEQ?
FirstupgradeResolution.Afirmwareupdateisrequired,andthisisperformedthroughtheFirmwareManagerin
Resolution.Noadditionaldownloadsarenecessary.
OnwhatproductsisSpatialEQavailable?
SpatialEQisavailableonAnya
andAnna.
WhatistherangeoffrequenciesoverwhichSpatialEqualizationcanbeapplied?
SpatialEQfiltersareavailablefrom1kHzandhigher.Filtergainscanrangefrom+6to‐6dB,butitisexpected
thatinalmostallcases,therangeofadjustmentneededbyuserswillbemuchlessthan+/‐6dB.
CanIsegmentanarraymyselfandapplyequalization?Willitbethesame?
No!SpatialEQfiltersarenottraditionalEQfiltersandarenotappliedtraditionally.Manuallyapplying
equalizationtodifferentpartsofanAdaptivearraywilladverselyaffectthe
performanceofthearrayandwillnot
yieldthesameresults.
DoanyotherproductsonthemarketofferanythinglikeSpatialEQ?
No.ThistechnologyisuniquetoEAW,andtoAdaptiveSystems.Itisonlypossiblethroughthecombinationof
manydisciplinesincludingsoftware,acoustics,mechanicalandelectronicsworkingtogetherforthebest
possibleresult.
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