C02-1094 understand an utterance . Most text-to-speech systems use statistical models to find
C00-1056 and pronunciation synthesis in a text-to-speech system . In this paper we present a
A88-1016 MULTIVOC makes it a real-time Text-To-Speech system that will be widely applied in
C02-1104 This is typically the case for text-to-speech systems . Such applications usually rely
C86-1063 cf. \ -LSB- 1 \ -RSB- . ) While text-to-speech systems for the English language are
A92-1004 the written material that most text-to-speech systems are tested on , e.g. the AP newswire
A00-2040 1997 ) report on full-fledged text-to-speech system for German , containing around
A00-1005 for his help on the ASR and the text-to-speech systems . Finally , we wish to thank
A88-1030 envisages applications of the text-to-speech system to the reading of informative
C04-1143 constrains imposed by a real time text-to-speech system . This work has been done as
A88-1030 the author , using the Bell Labs text-to-speech system . Those boundaries between clauses
A92-1004 would be prosodically phrased in a text-to-speech system . Without an explicit description
C86-1063 MORPHOLOGICAL ANALYSIS FOR A GERMAN TEXT-TO-SPEECH SYSTEM 1 . INTRODUCTION Many applications
C02-1104 the most important problems for text-to-speech systems ) . Finally , it allows to propose
A88-1030 text . In the current Bell Labs text-to-speech system , tonal minor phrase boundaries
A88-1030 prosodic units in the Bell Labs text-to-speech system , and were so applied experimentally
A88-1030 level of fgroups in the Bell Labs text-to-speech system . This system currently relies
A88-1030 derive all prosodic units in the text-to-speech system , i.e. not just tonal minor and
A92-1004 1985 ) . As a component of the text-to-speech system , the parser has undergone rigorous
A92-1004 real time . As a component of the text-to-speech system , the parser has undergone rigorous
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