-HYBRID LAPLACE TRANSFORM AND APPLICATIONS TO MULTIDIMENSIONAL HYBRID SYSTEMS. PART II: DETERMINING THE ORIGINAL

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UPB Sc B See A Vo 72 I 3 2 ISSN 223-727 MUTIPE -HYBRID APACE TRANSORM AND APPICATIONS TO MUTIDIMENSIONA HYBRID SYSTEMS PART II: DETERMININ THE ORIINA Ve PREPEIŢĂ Te VASIACHE 2 Ace co copeeă oă - pce he ] c eoeee e ee ş ă o ee covoţe po oeo voe ţă ş voe ă S peee eoe e eee o Se oţe o oă e vee e p Me-oe ş e ă o eoeă e evoe eeă Th ppe copee he y o he -Hy pce To o ] wh he heoe e eo o he o eo o he e covoo poc o o ve Soe eho o o ee he o o ve - Hy pce To e pove A eee Me-oe ype veo o ehe wo ohe o e eve epecvey he Ree Theoe ve e ee expo A eee Expo Theoe o ve Keywo: Hy pce To Me-oe ype veo o expo heoe Ioco I P I ] he pe hy pce- o w ee popee wee pove c ey hoohey wo e-ey heoe o eeo eece o he o eeo o he e Sch oo ecey o he y o he coo-cee eo ye 4] 5] 6] 9] ] whch ppe oe y poe o ce he y o e epeve pocee 2] 3] 2] o he eve e coo yhe 7] Th ppe copee he y o he -Hy pce To o ] wh he heoe ve Seco 2 e eo o Po Mhec Ioc Depe I Uvey POITEHNICA o Bche Ro e-: vpepe@hepo 2 ece Mhec Ioc Depe I Uvey POITEHNICA o Bche Ro

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22 Ve Pepeţă Te Vche Poo e eoe he pe pce o ee Deo 24] exp ] ] φ The 22 c e ewe 28 By Theoe 26] 28 oe o exp 29 whee ] ] By Me-oe o 2 25] 8 Ch III 72 ] eeo o pe pce o we e o σ > σ σ > exp 2 2 exp 2 exp We h e he oo o he pe e epecvey e exp The he pco o 2 y he eee Me-oe o ve

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26 Ve Pepeţă Te Vche 2 2 2 exp ] 32 exp ] 33 2 ] ˆ Z 34 ˆ ] ˆ ˆ Z 35 Ovoy ˆ ] ˆ Z 36 By he o c 2 Γ o he coece o e ee c y he Me-oe o ppe o he pce o 33 32 y o he coe coo Γ he cce we o o he e ee 36 35 exp 2 37

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28 Ve Pepeţă Te Vche Now e e h he o epe wh epec o h whee ech he coo o Jo' e o e o h he po N ch h Re < By ppy he Ree Theoe o he e 38 we e: Cooy 34 I epe wh epec o he o!! e exp e eoe y δ he cee pe co δ y δ δ δ Z he co Aohe eho o ee he o ve y he oow expo heoe: Theoe 35 I he e h he e ee expo o y α β αβ α β he o h he Tyo ee expo αβ α δ β α β α! α! whee α α α N β β β N αβ α α β β C α α α β β β α α α α e α β e β Poo By Deo 26 2]

Mpe -hy pce o ] P II: Dee he o 29 α δ α! By ey oe o δ β ] β α α α! e δ α α ] α β β β α β e α α β αβ α β αβ α δ β] α! α! 4 Coco I h ppe ] copee heoy o pe -Hy pce oo h ee eveope I ee ppe ppco w e pove c oo o ee-eece e eo we he eecy-o epeeo o eo hy coo ye R E E R E N C E S ] B Dve Ie To The Appco Spe Ve 978 2] M Dyov h K ov E Roe DH Owe Expoe y o cee e epeve pocee I J Coo 75 2 22 86-869 3] K ov E Roe DH Owe New 2D oe o x o cee e epeve pocee I J Coo 72 5 999 365-38 4] K ov Se-pce Reo o e 2-D Sye wh Exeo o he ee D > 2 Ce ece Noe Coo Ioo Scece 263 Spe Ve oo 2 5] T Kcoe Cooy eey coo o 2D coo-cee e ye App Mh Cop Sc 5 995 5-2 6] T Kcoe S wo-eo coo-cee e ye Dyc o Coo Dcee Ipve Sye 2 996 93-24 7] J Ke MB Ze Ieve e coo yhe o 2D ye heoy IEEE T A Coo AC-38 993 2-25

3 Ve Pepeţă Te Vche 8] V O V Pepeţă Teo ţo cţ copexe ş pcţ E Şţcă ş Eccopecă 986 9] V Pepeţă Ce o echy o 2D coo-cee epe ye Rev Roe Mh Pe App 48 23 8-93 ] V Pepeţă 2D Coo-Dcee pce Too Appco o 2D Sye Rev Ro Mh Pe App 49 24 4 355-376 ] V Pepeţă Mpe -Hy pce Too Appco o Meo Hy Sye P I o ppe 2] E Roe DH Owe Sy Ay o e Repeve Pocee ece Noe Coo Ioo Scece 75 E Tho H Wye W Spe Ve Be 999