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Perceived feasibility of computer-generated auralization in concert halls

Garrido, José Antonio; Zamarreño García, Teófilo; Girón Borrero, Sara; Ruiz-Padillo, Diego P.

Abstract

Over the years auralization has become a useful tool for simulating and evaluating the listening experience in virtual environments. Psychoacoustic phenomena, embodied by the human hearing system, highly determine the accuracy of sound-field recreation that is required for seemingly feasible auralization. In this scenario, the main aim of this study is to assess the suitability of computer-generated room impulse responses when used for auralizing spaces. To this purpose, simulated and experimentally measured binaural room impulse responses (BRIRs) have been convolved with iconic musical excerpts for various representative seats within a medium-sized concert hall. Listening tests have been thereby conducted and their results will be shown, analyzed and discussed

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In e na ional Semina on Vi ual Acous ics VALENCIA, No embe 24-25, 2011 153 PERCEIVED FEASIBILITY OF COMPUTER-GENERATED AURALIZATION IN CONCERT HALLS Re e ence PACS: 43.55.Gx , 43.55.Hy, 43.55.Ka Ga ido, José A.1; Zama eño, Teó ilo2; Gi ón, Sa a2; Ruiz-Padillo, Diego P.1 1Dp o. de Física Aplicada, Uni e sidad de G anada, Facul ad de Ciencias, A da. Fuen e Nue a s/n, 18071-G anada (SPAIN) Tel.: +34 958244161. Fax: +34 958243214. 2Dp o. de Física Aplicada II, Uni e sidad de Se illa, ETS de A qui ec u a, IUACC, A da. de la Reina Me cedes 2, 41012-Se illa (SPAIN) Tel.: + 34 954556612. Fax: +34 954557892 [email p o ec ed], [email p o ec ed], [email p o ec ed], [email p o ec ed] ABSTRACT O e he yea s au aliza ion has become a use ul ool o simula ing and e alua ing he lis ening expe ience in i ual en i onmen s. Psychoacous ic phenomena, embodied by he human hea ing sys em, highly de e mine he accu acy o sound- ield ec ea ion ha is equi ed o seemingly easible au aliza ion. In his scena io, he main aim o his s udy is o assess he sui abili y o compu e -gene a ed oom impulse esponses when used o au alizing spaces. To his pu pose, simula ed and expe imen ally measu ed binau al oom impulse esponses (BRIRs) ha e been con ol ed wi h iconic musical exce p s o a ious ep esen a i e sea s wi hin a medium-sized conce hall. Lis ening es s ha e been he eby conduc ed and hei esul s will be shown, analyzed and discussed. RESUMEN En es os úl imos años, la au alización se ha con e ido en una he amien a ú il pa a la simulación y e aluación de la expe iencia del oyen e en en o nos i uales. En es e ámbi o, son de especial impo ancia los aspec os psicológicos y pe cep i os, de i ados del uncionamien o del sis ema audi i o y del ce eb o humanos, que de e minan la p ecisión que se equie e pa a una ec eación apa en emen e c eíble del campo sono o. En es e con ex o, el p incipal obje i o de es e es udio es e alua la alidez de espues as al impulso de la sala gene adas po o denado pa a su u ilización en la au alización de espacios. Con es e p opósi o, pa a algunas localidades ep esen a i as de una sala de concie os de amaño medio, se han con olucionado a ias espues as al impulso binau ales (BRIRs), simuladas y medidas expe imen almen e, con agmen os musicales conocidos. Con los da os ob enidos, se han lle ado a cabo p uebas de audición, cuyos esul ados se p esen an, analizan y discu en en es a comunicación. 1. INTRODUCTION Al hough au aliza ion has been p o ed an impo an ool o mul iple applica ions in ields as di e se as A chi ec u e, Telecommunica ions, Psychology o Vi ual Reali y, e y li le is s ill known abou he accu acy o he ou pu audio iles gene a ed by he comme cial compu e p og ammes ea u ing his abili y ha a e cu en ly a ailable in he ma ke . T ying o e alua e he quali y o he pe o mance achie ed by some o hese pieces o p edic ion so wa e when con on ed wi h in si u measu emen s, h ee ound- obin es s ha e been held in his o y [1][2][3][4]. Howe e , none o hem emb aced au aliza ion wi hin i s scope. When i comes o au aliza ion, physical accu acy does no cons i u e he only co ne s one o his kind o so wa e, bu achie ing co ec ness in he lis ening expe ience e en ually c ea ed In e na ional Semina on Vi ual Acous ics VALENCIA, No embe 24-25, 2011 154 also plays a decisi e pa [5]. The e o e, Psychoacous ics ough o ake o e he ask o d awing he uzzy line ha de e mines whe he he sound ield c ea ed wi h his so wa e is p ecise enough o gene a e audi o y e en s deemed co ec by a majo i y o lis ene s. In o de o shed some ligh on he easibili y o compu e -aided au aliza ion, a h ee-dimension geome ic model o a 1,311-sea conce hall, whose acous ic pe o mance had al eady been alida ed o he mos common pa ame e s, was simula ed o ob ain impulse esponses a a ious loca ions sp ead o e he audience a ea. Expe imen al measu emen s p e iously done a analogous posi ions in he ac ual oom had al eady ga he ed equi alen da a. Finally, au alized audio iles co esponding o impulse esponses om bo h sou ces ha e been p oduced and subjec ed o compa ison wi h he assessmen o a panel o un ained indi iduals, who will ul ima ely look o di e ences be ween s imuli h oughou lis ening es s. Likewise, au aliza ions coming om simula ing he conce hall unde changing acous ical condi ions because o e u bishmen wo ks ha e been judged agains hose a ained in he o me s a e. In his case, an e en ual s a emen will go in he necessi y o he unde aking. 2. MANUEL DE FALLA AUDITORIUM Fi s inaugu a ed on June 10, 1978, Manuel de Falla Audi o ium in G anada (Spain) could be p oudly coun ed amongs a selec ed g oup o Spanish conce halls wi h ema kable acous ic quali ies. The audi o ium is loca ed a La Sabika hill beside he ca men once inhabi ed by he Gadi an compose a e whom he edi ice was named, and wi hin he a ea o in luence o La Alhamb a, a wo ld-wide admi ed landma k. Se illian a chi ec José Ma ía de Pa edes along wi h enowned Ge man acous ician Lo ha C eme accoun espec i ely o he a chi ec u al design and acous ical consul ancy owa ds he execu ed bluep in s o he building6. As illus a ed by he pho og aph in Figu e 1(a), he oom ea u es a o und bila e al symme y on whose axis he s age is disposed a nea ly wo- hi ds o he way, p o iding an uncommon a angemen o he audience in o wo main a eas, A and B –labelling sea s in on o and behind he s age in ha o de -. One o he main ad an ages de i ed om his unusual plan lays on he adap abili y o he enue o spec acles o a ious kinds. Changeable capaci y and olume allow o se e al con igu a ions and, he eo , a iable acous ics. As shown in he g ound plan o he audi o ium displayed in Figu e 1(b), h ee sea s wi hin he oom ha e been ca e ully chosen o ca y ou his wo k. I mus be said ha ecei e loca ions close o ei he he sou ce o la ge e lec ing su aces ha e been uled ou since expe imen al measu emen s a such in ica e posi ions usually yield de ec i e esul s. To p ope ly sample he oom, wo o hem -no ed A-1 and A-2- ha e been placed in on o he s age whe eas only one –namely B- has been loca ed in he backs age. In ecen imes, e u bishmen wo ks in ol ing oo eno a ion, hea ing, en ila ion and ai condi ioning sys em emodelling, es i u ion o de e io a ed inishes and eplacemen o Figu e 11. Manuel de Falla Audi o ium, in G anada (Spain): (a) gene al iew o he oom a e he ecen comple ion o e u bishmen wo ks –on he le -, and (b) g ound plan showing he placemen o he sou ce (in blue) and h ee ecei e s (in ed) conside ed in his s udy –on he igh -. A chi ec : J. M. Ga cía de Pa edes. In e na ional Semina on Vi ual Acous ics VALENCIA, No embe 24-25, 2011 155 audience sea ing ha e been unde aken in he g and conce hall. A e hei comple ion, he Manuel de Falla Audi o ium eopened o he gene al public in Sep embe , 2010. 3. EXPERIMENTAL MEASUREMENTS Ex ensi e on-si e measu emen s we e pe o med in he audi o ium unde emp y- oom and clea ed-s age condi ions, in a endance o wha es ablished in he ISO 3382-1 [7] in e na ional s anda d. Tempe a u e and humidi y we e moni o ed du ing he measu emen campaign wi h a digi al he mo-hyg ome e . Tempe a u e anged om 19.6 °C o 20 °C, whe eas ela i e humidi y exhibi ed alues wi hin he 49% o 50% in e al. Binau al oom impulse esponses (BRIRs) o each ecei e loca ion ha e been ob ained by means o 30-second sine sweep signals co e ing he en i e audible equency ange, gene a ed and subsequen ly analyzed in WinMLS 2004, h ough he Digig am VX Pocke 2 soundca d. The audio signal so-p oduced was sen – ia an INTER-1000 ampli ie - o a 01-dB S ell AVM DO12 dodecahed al loudspeake –omnidi ec ional sound sou ce- placed ons age a a cen al posi ion, 1.5 me es high abo e he s age le el. Head Acous ics head and o so simula o Type HSU III (Code 1323) has been used o eco ding BRIRs a he h ee sea s o choice, alloca ing bo h en ances o he ea canals a a 1.2-me e heigh abo e he loo . Monau al oom impulse esponses (RIRs) ha e been measu ed as well, allowing o he calcula ion o widely-known acous ic pa ame e s. Rega ding he p e iously-desc ibed se -up, a couple o addi ional mic ophones –namely, B&K 4190 ½” omnidi ec ional and Audio-Technica AT4050/CM5 mul i-pa e n condense mic ophones- wi h sui able 01dB-S ell p e-ampli ie s ha e been u ilized ins ead o he head and o so simula o o his pu pose. 4. COMPUTER SIMULATION CATT TUCT 1.0 was he piece o oom acous ics p edic ion so wa e chosen o ca y ou he simula ions whose esul s a e he eby p esen ed. TUCT –ac onym o The Uni e sal Cone T ace - was ecen ly bo n as a CATT-Acous ic-dependen ba e calcula ion engine capable o pe o ming acous ic simula ion and au aliza ion o i ual en i onmen s. Howe e , CATT- Acous ic keeps on being necessa y o build up he h ee-dimension geome ical model o he oom and la e de ine he acous ic ea u es o enclosing su aces. Fo he ime being, h ee dis inc algo i hms ha e been implemen ed in TUCT o he gene a ion o echog ams and impulse esponses o any gi en sou ce- ecei e combina ion speci ied in he digi al model [8]. Di e ences among hemsel es mainly a ec he way di use e lec ions a e handled. The h ee o hem deal wi h di ec sound and 1s o de specula e lec ions de e minis ically. So do hey wi h 1s o de di use e lec ion by means o he so- called andom spli -up, a b and-new echnique made g adually ex ensi e o highe o de s o di use e lec ion in algo i hms 2 and 3. I is o ha eason ha un- o- un a iabili y adi ionally associa ed o compu e -aided acous ic simula ion due o he usage o Lambe ’s law [9] accoun ing o sca e ing phenomena has been signi ican ly educed. TUCT’s algo i hm 2 has been he one o choice o a aining he da a u ilized in his wo k. I mus be no iced ha TUCT p edic ions o he mos common acous ic pa ame e s a e based on he p e ious calcula ion o ei he echog ams o impulse esponses, which gi es ise o sligh ly di e en esul s coming om ene gy (E) o p essu e (h) analyses espec i ely. Since he Figu e 12. Geome ical model o he acous ic simula ion o he Manuel de Falla Audi o ium. Audience a ea is shaded in g ey colou . In e na ional Semina on Vi ual Acous ics VALENCIA, No embe 24-25, 2011 156 ou come o he la e ollows a p ocedu e ha is iden ical o ha ins i u ed by he in e na ional s anda d ISO 3382-1 [7] o expe imen al measu emen s –successi e oc a e equency-band il e ing, squa ing and p essu e- unc ion ime in eg a ion-, a good ag eemen o in si u measu ed desc ip o s and hei IR-based simula ed coun e pa s is o be expec ed, p o iding as well clea e idence o simila i y be ween eco ded and p edic ed impulse esponses. Addi ionally, BRIRs a he speci ied loca ions can be gene a ed and expo ed in o sui able o ma s making i possible hei la e usage o au aliza ion. In o de o simula e he acous ical beha iou o he Manuel de Falla Audi o ium, a h ee- dimension geome ic model o he oom –illus a ed in Figu e 2- has been implemen ed, in acco dance o he guidelines supplied by he de elope s o p edic ion so wa e [10] and s a ed in he li e a u e [11]. Acous ic cha ac e is ics o he ma e ials in he model we e i s es ima ed and de ined wi h sca e ing and abso p ion coe icien s [11][12], which ha e been subsequen ly ine- uned by means o an i e a i e calib a ion p ocess based on achie ing a ma ch in he compa ison be ween measu ed and simula ed e e be a ion imes a a ious inne loca ions [13]. Finally, he model esul ing om such a p ocedu e has been alida ed o he es o con en ionally-accep ed oom acous ics pa ame e s in e ms o jus no iceable di e ences (JNDs) as p oposed by Bo k [3][4]. Mo eo e , s a ing om his o me model, ano he one has been de eloped in an a emp o mimic he changed acous ic ea u es wi hin he conce hall due o a ecen ly inished e u bishmen . Bo h models ha e been acous ically simula ed, main desc ip o s calcula ed, and BRIRs p oduced. As o he ini ial p edic ion se ings adop ed in he compu e so wa e, 26,611,576 cones –in applica ion o he o mula sugges ed by Vo lände [11]- ha e been aced. T unca ion ime o he calcula ion o impulse esponses and echog ams was se a 3 seconds coun ed om he a i al o di ec sound – hus, beyond expe imen ally-measu ed e e be a ion imes, as ecommended by some au ho s [10][11]. 5. AURALIZATION Au aliza ion is he echnique ha allows o he c ea ion o sound iles sui able o ep oduc ion om me e nume ical da a ob ained by simula ion, measu e o syn hesis [11]. Physically speaking, such a ask equi es he de ini ion o he so-called binau al oom impulse esponse, h( ), empo al unc ion based on a h ee-dimension sound p opaga ion model whose calcula ion in ol es he compu a ional echnique p e iously explained. BRIRs can be also depic ed as ac ual il e s, ( ), inco po a ing addi ional componen s, o wi : sou ce di ec i i y, head- ela ed ans e unc ion (HRTF) and exac equaliza ion o he sound- ep oduc ion sys em o choice. The con olu ion o inpu sound signals eco ded in anechoic en i onmen s, s( ), wi h il e impulse esponses, ( ), o p oduce ou pu audio iles as hea d by he lis ene s a any gi en loca ion, g( ), is he basis o signal p ocessing o au aliza ion, and can be ma hema ically w i en as he ollowing linea - ime in a ian sys em: !"#$ %&!'#(!")'#*' + ,+ A li le s and-alone piece o so wa e called Mul iVol e WCP included in CATT-Acous ic package has been used o ca ying ou he au aliza ions o be la e on p esen ed o he assesso s. Mul iVol e is in ended as a lexible mul ichannel con ol e o mul iple applica ions whose pu pose is o con ol e inpu WAV- iles in o ou pu WAV- iles [14]. A mono o binau al con igu a ion –one o wo channels-, making use o p e iously measu ed and simula ed ini e binau al impulse esponse il e s, has been aken up in his wo k. Th ee sho , d y, solois classical-music samples di e ing om one ano he in hy hmical pa e n, equency spec um and, abo e all, imb e ha e been chosen as inpu signal o au aliza ion: In e na ional Semina on Vi ual Acous ics VALENCIA, No embe 24-25, 2011 157 C. Webe : Theme; o cello [15]. F. Chopin: P elude, Op. 28, No. 12 in G-sha p mino ; o piano [16]. B uckne : Symphony No. 8 in C mino , I. Alleg o mode a o; o imbales [17]. I mus be no ed ha , in o de o ha e au aliza ions om impulse esponse il e s o di e se na u e sui able o compa ison, he gain in dB applied o each o he h ee inpu audio iles in ei he case was he esul o a p io calib a ion p ocess aimed o yield a ma ch in e ms o a e age loudness moni o ed a he closes loca ion o he sound sou ce. 6. LISTENING TESTS Twen y-se en people ha e been subjec ed o lis ening es s in o de o disc imina e whe he he e a e senso y di e ences be ween audio s imuli. A iangle- es s uc u e [18] has been deemed well i ed o de e mine bo h whe he : A signi ican di e ence exis s be ween au aliza ions ob ained om measu ed and simula ed BRIRs in he Manuel de Falla Audi o ium. Such a di e ence can be s a ed be ween au aliza ions om simula ed BRIRs be o e and a e he comple ion o some e u bishmen wo ks wi hin he conce hall. To his pu pose, a panel o un ained assesso s consis ing o Spanish uni e si y s uden s wi h no mal-hea ing be ween ages eigh een o wen y-eigh was ga he ed. The campaign o lis ening es s was ca ied ou in a quie , windowless oom, ee om bias. In his en i onmen , acous ical s imuli we e adminis e ed o he panellis s ia an ASUS Xona Essence ST in e nal sound ca d and Sennheise HD 600 o e -ea headphones. A pic u e o one o he indi iduals unde going he lis ening es s imme se in his se up is shown o be e illus a ion in Figu e 3(a). The es s ha e been designed o igu e ou answe s o wo ques ions: Is he e a di e ence be ween he pai o s imuli unde compa ison? And we e ha he case, wha is he na u e o his di e ence? To ind ou , assesso s we e p esen ed wi h h ee o hem and old ha wo a e iden ical and one is di e en . Acco ding o a iangle- es design, six possible o de s o sample p esen a ion ha e been conside ed: AAB, ABA, BAA, BBA, BAB, and ABB. The use o naï e assesso s made i ad iso y o use a o ced-choice mode in he expe imen s. Panellis s we e asked o ca e ully lis en o he samples in he o de o supply and single he odd one ou . A e hea ing each se o h ee s imuli o he i s ime, assesso s we e no pe mi ed o e-lis en o he samples. To do so, panellis s could use all a ailable in o ma ion wi hou any es ain s. In addi ion o his, hey ha e been ques ioned abou he na u e o he di e ence no iced. To acili a e o a panel o un ained indi iduals o answe o such an inqui y, ou key acous ical ea u es –colo a ion, spaciousness, e e be ance and loudness- we e sugges ed. Ha ing been easily de ined o e e y assesso a he beginning o he expe imen al session, om none o all o hem could be ma ked in he pop-up window displayed in Figu e 3(b), which u ned up a e he p esen a ion o each se . Figu e 13. On he le , one o he olun a y assesso s unde going he es s is being subjec ed o he expe imen s (a). On he igh , he sho ques ionnai e -in Spanish- o be answe ed in a window en i onmen a e lis ening o e e y ain o s imuli is shown (b). In e na ional Semina on Vi ual Acous ics VALENCIA, No embe 24-25, 2011 158 Up o eigh een so-con o med se s o h ee s imuli ha e been adminis e ed in andom a angemen o e e y assesso , ega ding h ee ecei e loca ions, h ee musical exce p s, and wo dis inc expe imen s wi h he same s uc u e. P io o he commencemen o he ac ual lis ening es s, a ial un wi h wo di e en samples was p esen ed wice o he panellis s, as o p o ide a b ie explana ion on he so o a ia ions ha migh be encoun e ed be ween s imuli h oughou he expe imen s. 7. RESULTS AND DISCUSSION Acco ding o plan, he campaign o lis ening es s aimed o unea h signi ican di e ences be ween he au alized samples in he cases s udied has been conduc ed. The o al numbe o esponses co ec ly iden i ying he une en s imulus has been coun ed, and he collec ed da a ega ding each expe imen has been summa ized in he e ical ba cha s shown in Figu e 4. Fo a panel con o med o wen y-se en assesso s and a a disc e iona y signi icance le el o 5%, he minimum numbe o co ec answe s equi ed be o e concluding a signi ican di e ence om ei he expe imen is 14 –ma ked by he ho izon al line plo ed wi h dashed ace in he diag ams-. A ha le el o signi icance, he amoun o igh esponses mus hence exceed his c i ical alue o a posi i e s a emen . Fo he sake o cla i y, he analysis o he esul s o he wo expe imen s p esen ed in his wo k will be epo ed sepa a ely. 7.1. Measu ed-BRIRs Au aliza ion e sus Simula ed-BRIRs Au aliza ion. In iew o he da a coming om he iangle es s o he i s expe imen , i can be s a ed ha a signi ican di e ence exis s be ween au aliza ions om ield-measu ed BRIRs and hei simula ed equi alen s in he conce hall unde in es iga ion. Only one ou o nine possible combina ions o ecei e placemen and musical exce p does no yield such a conclusion, o wi , piano sample a he sea loca ed behind he s age. Ne e heless, i is also wo h poin ing ou ha he di e ence be ween he pai s o audio signals unde compa ison u ned ou o be less no iceable in au aliza ions o he piano anechoic eco ding han in he es o assessed cases. By con as , using a pe cussion sample –i.e. imbales- seems o ha e made i he easies o he assesso s o ell he di e ence be ween au alized iles om measu ed IRs and hei simula ed coun e pa s. Looking a acous ic spec og ams o he o iginal e e be a ion- ee musical exce p s o be au alized illus a ed in Figu e 5, i is o no wonde he s iking dependence ound be ween he deg ee o di icul y encoun e ed by he assesso s when making hei judgmen s and he na u e o he musical sample ha was being adminis e ed in his i s expe imen . F equency spec a Figu e 14. Numbe o co ec iden i ica ions o he odd sample collec ed om he wo expe imen s conduc ed, classi ied by ecei e loca ion and na u e o he inpu signal. On he le : measu ed s. simula ed-IR au aliza ion (a). On he igh : be o e- s. a e - e u bish au aliza ion (b). Recei e A-1 A-2 B Numbe o co ec esponses 0 5 10 15 20 25 30 Cello Piano Timbals Recei e A-1 A-2 B Numbe o co ec esponses 0 5 10 15 20 25 30 Cello Piano Timbals In e na ional Semina on Vi ual Acous ics VALENCIA, No embe 24-25, 2011 159 (FFT) e sus ime in e ms o A-weighed sound p essu e le el show an i egula ene ge ic dis ibu ion in he equency ange o analysis o he anechoic inpu signals in use. Whe eas he piece o piano music goes wi h undamen al equencies alling wi hin he 500-he z-cen ed oc a e band, cello and imbales e eal g ea e amoun s o ene gy wi hin he 250 and 125-he z oc a e bands co espondingly. On he o he hand, i is well known ha some acous ic pa ame e s a e closely ela ed o ce ain subjec i e ea u es. Likewise, sound s eng h (G) is a good indica o o he subjec i e le el o sound. So applies o pe cei ed e e be ance and ea ly decay ime (EDT), pe cei ed cla i y and cla i y i sel (C80), and spa ial imp ession and in e au al c oss-co ela ion coe icien s (IACC). As a consequence, salien misma ches in he compa ison be ween measu ed and simula ed igu es o hese desc ip o s mus ha e been ansla ed in o no iceable di e ences be ween hei subsequen au aliza ions. In conside a ion o he exempla y da a plo ed in Figu e 6, co esponding o he alues o he abo e-men ioned acous ic pa ame e s a he ecei e labelled as A-1, he mos ou s anding de iances be ween measu ed and simula ed ciphe s concen a e in he 125 and 250-Hz- cen ed oc a e equency bands, mainly a ec ing s eng h (G) and cla i y (C80) espec i ely – coun ing up o 10 JND and 5 JND in ei he case-. Tha is he eason why di e ences happen o be ai ly mo e pe cep ible when imbales and cello exce p s, in ha o de , a e adminis e ed o he assesso s wi hin he expe imen al sessions. Asked abou he na u e o he di e ence, an o e whelming majo i y o he panellis s was inclined owa ds colo a ion. As illus a ed by he pola plo in Figu e 7, he choices o he indi iduals unde going he lis ening es s a ou ed colo a ion and e e be ance o e loudness and spaciousness. Going back o he desc ip o s whose ciphe s ha e been spec ally depic ed in Figu e 6, he assesso s’ esponses o his ques ion co ela e ai ly well o he indings in he g aphs, ega ding signi ican de ia ions be ween measu ed and simula ed nume ical da a in s eng h (G), ea ly decay ime (EDT), and cla i y (C80). No no ewo hy dependence upon he loca ion o he ecei e has been ound in he expe imen . Figu e 15. F equency spec a (FFT) e sus ime o A-weighed sound p essu e le el (SPL) in dBA o he o iginal agmen s o anechoic eco dings au alized o he expe imen s. F om op o bo om: cello, piano and imbales sample spec og ams. In e na ional Semina on Vi ual Acous ics VALENCIA, No embe 24-25, 2011 160 Figu e 16. Measu ed -in black- and simula ed -in blue and ed, ega ding be o e and a e e u bish- da a o some oom acous ics pa ame e s a ecei e A-1. F om op o bo om, and le o igh : sound s eng h (G), ea ly decay ime (EDT), cla i y (C80), and in e au al c oss-co ela ion coe icien (IACC). Fo he sake o compa ison, simula ed alues om ene ge ic analysis (E) –in con as o hose om IRs (h)- a e depic ed wi h dashed ace. 7.2. Simula ed-BRIRs Au aliza ion: Be o e e sus A e Re u bishmen . As o he second o he expe imen s conduc ed, whose esul s a e b oken down in Figu e 4(b), a signi ican di e ence be ween au aliza ions om impulse esponses espec i ely e e ing o he condi ions be o e and a e he e u bishmen o he audi o ium canno be concluded. Jus in he scena io o he cello anechoic eco ding being con olu ed wi h he binau al oom impulse esponse ob ained a he backs age sea included in his s udy, a s a emen o signi ican di e ence would be s a is ically jus i ied. Su p isingly enough, p ominen de iances in e ms o spa ially-a e aged e e be a ion ime (T30) be ween he s a es in compa ison a e mani es in he da a plo ed in Figu e 8. Mo eo e , such misma ches ge o a peak alue beyond 5 JND alling a he 250-he z-cen ed oc a e band, which should ha e yielded an easie ecogni ion, abo e all, wi h cello music. None heless, i mus also be said ha none o he es o acous ic pa ame e s he ein analyzed pu on display dispa i ies su passing 2 JND –wi h he excep ion o ea ly decay ime (EDT), connec ed o he subjec i e disce nmen o e e be ance as well- as shown in Figu e 6. On he whole, howe e , he numbe o co ec esponses does no seem o ha e been linked o ei he he ecei e ’s loca ion o he na u e o he s imulus adminis e ed in his case. To he ques ion on how he odd sample was di e en , ewe answe s we e collec ed om his expe imen han he p eceding one. Among he assesso s who did p o ide a esponse, e e be ance and loudness we e he mos popula . Bu , gi en he ac ha a low pe cen age o he panellis s we e uly able o ell he di e ence be ween he s imuli being p esen ed o [Hz] 125 250 500 1000 2000 4000 G [dB] 5 10 15 20 25 Measu ed Simula ed h Simula ed E Re u bished h Re u bished E [Hz] 125 250 500 1000 2000 4000 EDT [s] 0.0 0.5 1.0 1.5 2.0 2.5 3.0 Measu ed Simula ed h Simula ed E Re u bished h Re u bished E [Hz] 125 250 500 1000 2000 4000 C 80 [dB] -10 -8 -6 -4 -2 0 2 4 6 Measu ed Simula ed h Simula ed E Re u bished h Re u bished E [Hz] 125 250 500 1000 2000 4000 IACC 0.0 0.2 0.4 0.6 0.8 1.0 Measu ed Simula ed h Re u bished h In e na ional Semina on Vi ual Acous ics VALENCIA, No embe 24-25, 2011 161 compa ison, hese answe s mus ha e been he esul o a guesswo k, and a e, he e o e, inapp op ia e o u he analysis. 8. CONCLUSIONS AND FUTURE WORK I has been p o en ha he e is s ill a signi ican di e ence be ween au aliza ions om expe imen ally eco ded binau al oom impulse esponses and hei simula ed equi alen s ob ained by means o a nume ically- alida ed acous ic model o he enclosu e. Consequen ly, sligh ly di e en app oaches should be a emp ed in he nea u u e in o de o each oom acous ics digi al models speci ically sui ed o easible au aliza ion. To do so, a s a egy based on calib a ing he geome ic model by using igu es o he bes -known desc ip o s coming ou o pos -p ocessed impulse esponses – ollowing s anda d p ocedu es analogous o hose conside ed when handling in-si u egis e s-, ins ead o eso ing o da a om ene ge ic echog ams migh be ad isable. In e es ing conclusions associa ed o he use o s imuli o a ied na u e can be eached om he lis ening es s conduc ed. The highly equency-dependen beha iou usually demons a ed by mos o he con en ional oom acous ics pa ame e s makes i c ucial o ca y ou speci ic spec al analysis o hose anechoic inpu signals o be u ilized in au aliza ion p io o op ing o one o con enience. I has been demons a ed ha such a choice does play a undamen al ole in disclosing dissimila i ies in cen al acous ic ea u es be ween au aliza ions e en ually subjec ed o compa ison. Fu he mo e, conside able di e gences ound in desc ip o s co ela ing wi h ce ain subjec i e aspec s o sound ha e been e ealed o be capable o co ec ly o eseeing la e no iceable di e ences om e en ual panellis s’ assessmen s in his so o senso y expe imen s. Tha is he case o ea ly decay ime (EDT) and cla i y (C80) -con e sely connec ed o e e be ance- and sound s eng h (G) -in close ela ion o pe cei ed sound le el-. The e o e, analyzing nume ical da a o some acous ic pa ame e s could help wa n o juiceless and unnecessa y campaigns o lis ening es s be o e being unde aken. Howe e , such a ansla ion om nume ical in o pe cep ual di e ences u ns ou no o be so s aigh when i comes o e e be a ion ime (T30) being he only desc ip o showing no ewo hy a ia ions. Gi en he ac ha he sea s emo ed om he conce hall we e s ill in seemingly sound condi ion a he ime o eplacemen , he ou come om he second expe imen would ha e made i acous ically poin less. Ne e heless, no only is Acous ics in he a chi ec ’s mind Numbe o esponses 0 25 50 75 100 125 150 Colo a ion Spaciousness Re e be ance Loudness Measu ed s. Simula ed Be o e s. A e Re u bish Figu e 17. Combined pola diag am o panellis s’ p e e ences a p opos o he na u e o he di e ence be ween s imuli compa ed in he expe imen s. In blue: measu ed s. simula ed-IR au aliza ion. In ed: be o e- s. a e - e u bish au aliza ion. [Hz] 125 250 500 1000 2000 4000 T 30 [s] 0.0 0.5 1.0 1.5 2.0 2.5 3.0 Measu ed Simula ed h Simula ed E Re u bished h Re u bished E Figu e 18. Spa ially-a e aged e e be a ion ime (T30) assessed a he h ee ecei e s in his wo k. Measu ed –in black- and simula ed eco ds –dis inc i ely using blue and ed colou s o be o e- and a e - e u bish s a es- a e shown. Ene gy (E) and p essu e analyses (h) ha e been also di e en ia ed by dashed plo o he la e .