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    • 15. 发明专利
    • Voice synthesizer
    • 语音合成器
    • JP2003345377A
    • 2003-12-03
    • JP2003191954
    • 2003-07-04
    • Matsushita Electric Ind Co Ltd松下電器産業株式会社
    • HARA KIYO
    • G10L13/08
    • PROBLEM TO BE SOLVED: To provide a natural synthesized voice by determining the presence or the absence of prominence in consideration of a speaking speed and speech contents and selecting an intonation pattern for realizing prominence in accordance with classifications of affixed words, the presence or the absence of pauses, an attribute of a following clause, etc., in order to realize a prominent speech in a voice rule synthesizing device.
      SOLUTION: A voice synthesizer has a speaking speed setting means 6 and a prominence giving means 1e for giving prominence, and the frequency of prominence is controlled in accordance with the speaking speed.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:为了通过考虑到说话速度和语音内容来确定出现或不存在突出性来提供自然合成语音,并且根据附加词的分类选择实现突出的语调模式,存在 或不存在暂停,以下条款的属性等,以便在语音规则合成装置中实现突出的语音。 解决方案:语音合成器具有说话速度设置装置6和用于突出显示的突出提供装置1e,并且根据说话速度来控制突出频率。 版权所有(C)2004,JPO
    • 16. 发明专利
    • TIME SERIES SIGNAL PROCESSOR
    • JP2000099094A
    • 2000-04-07
    • JP27086298
    • 1998-09-25
    • MATSUSHITA ELECTRIC IND CO LTD
    • MATSUI KENJIHARA KIYO
    • G10L19/02G10L11/02G10L19/00G10L19/04
    • PROBLEM TO BE SOLVED: To realize the analytical synthesis, the flexible voice quality transformation and the high efficiency encoding and decoding of a voice easily and with the small degradation of sound quality by providing a means which adds the output of a low frequency component eliminating means and the output of an analytical synthesizing means and outputs them. SOLUTION: Pitch frequencies for every frame are calculated in a pitch extracting part 7. Moreover, powers for every frame are calculated in a power calculating part 6. On the one hand, featured values (vocal path information) of formant frequencies and band widths or the like for every frame are analyzed in a formant analyzing part 8. A sound source generating part 1 generates a sound source waveform by taking out sound source information from a male voice sound source part 9 or a female voice sound source part 10 which is preliminarily extracted in accordance with a desire based on pitch and power information of the power calculating part 6. A voice synthesizing filter part 14 synthesizes a voice waveform from the sound source waveform and the formant featured values. Then, a signal adding part 15 adds the output of the voice synthsizing filter part 14 and the output of a low frequency component eliminating filter 2 by making the time to be in synchronization with them to output them to a voice output part 16.
    • 17. 发明专利
    • PHONETIC SYMBOL FORMING DEVICE
    • JPH09281993A
    • 1997-10-31
    • JP8922596
    • 1996-04-11
    • MATSUSHITA ELECTRIC IND CO LTD
    • YAMAGAMI KATSUYOSHIHARA KIYOMATSUI KENJI
    • G10L13/08G06F17/28G10L13/04G10L5/02G10L3/00
    • PROBLEM TO BE SOLVED: To obtain a speech output free from an odd feel by imparting correct phonetic symbols to the foreign language character strings among input character strings of a sentence-speech converter which converts the sentences to speeches receiving sentences. SOLUTION: The part of the character string of the language 2 included in input character string of inputted language 1 is specified by a language 2 character string decision section 103. The character string part of this language 2 is subjected to a morpheme analysis in a language 2 morpheme analysis section 102. The result thereof is subjected to a construction analysis by a language 2 construction analysis section 106, thereby, the result is subjected to the construction deformation of the pronunciation. The phonetic symbol string of the language 2 is formed in a language 2 phonetic symbol forming section 108 and converted into the phonetic symbol string of the language 1 by a language 2-language 1 phonetic symbol conversion section 109, thereby, the phonetic symbol of the language 1 correct for the language 2 character string parts included in the language 1 input character strings is formed.
    • 18. 发明专利
    • VOICE SYNTHESIZING DEVICE
    • JPH056191A
    • 1993-01-14
    • JP15654591
    • 1991-06-27
    • MATSUSHITA ELECTRIC IND CO LTD
    • HARA KIYOSURUGA YURIKO
    • G10L13/08
    • PURPOSE:To provide a synthetic voice which is more understandable and which is natural, by determining a pose length, and a number and positions of poses in relation to the structure of an entire sentence. CONSTITUTION:When a sentence 'This is a voice synthesizing device' is inputted, a text analyzing part 2 divides a word so as to obtain data for an accent and reading. Then, in a rhythm processing part 4, a time length setting part 4a and an FO setting part 4d set time lengths of sound elements and basic frequencies, respectively. Further, a time cumulating part 4c obtains a total time length, excepting a pose part, and with the use of this total time length, a pose cycle number and a pose length are determined from predetermined formulae. In the previous example, a uniform pose length which is relatively long is applied to each of 'This is' and ',', and accordingly, unnatural voice is corrected. Then, a parameter forming part 5 obtains synthesizing parameters such as a formant value and an amplitude, and a parameter interpolating part 7 interpolates the parameters. A voice synthesizing part 7 synthesizes a voice with the use of formant type synthesizer.
    • 19. 发明专利
    • VOICE SYNTHESIZER
    • JPH02293900A
    • 1990-12-05
    • JP11531089
    • 1989-05-09
    • MATSUSHITA ELECTRIC IND CO LTD
    • HARA KIYOSURUGA YURIKO
    • G10L13/08G10L13/06
    • PURPOSE:To produce synthetic sounds which have high distinctness and are easily audible even where ambient noise is high by controlling synthesizing parameters according to a set ambient noise level. CONSTITUTION:An operator sets the ambient noise level by using a knob at an ambient noise level setting terminal 12. The set value of the knob is read by a noise level reading section 13 and this value is transferred to a parameter correcting section 8. The parameters obtd. in a synthesizing parameter forming section 6 which forms the synthesizing parameter array necessary for synthesis obtd. from rhythm information and voice notation information in the parameter correcting section are changed according to the noise level and the parameters of every sound element obtd. in the parameter correcting section 8 are interporated in a parameter interpolating section 9 to obtain the synthesizing parameter array of every specified time. Further, the actual voices are synthesized from in a voice synthesizing section 10 from the synthesizidng parameter arrays obtd. in the parameter interpolating section 9 and voice waveforms are obtd. in a synthetic voice outputting section 11. The synthetic sounds which have the high distinctness and are easily audible are obtd. in this way.
    • 20. 发明专利
    • VOICE SYNTHESIZER
    • JPH02285400A
    • 1990-11-22
    • JP10861189
    • 1989-04-26
    • MATSUSHITA ELECTRIC IND CO LTD
    • SURUGA YURIKOHARA KIYO
    • G10L13/08
    • PURPOSE:To obtain a synthetic voice which is high in understanding by generating synthesis parameters in accordance with an analytic result obtained by an analyzing means and varying the synthetic parameter value of a synthetic parameter control means when there is an unknown work which is not present in a dictionary. CONSTITUTION:A KANJI(Chinese character) and KANA(Japanese syllabary) mixed sentence is inputted from a character string input terminal 1 and divided into words and adjuncts by a text analytic part 2 by using the dictionary 3, and they are given rendering data and accent types. A synthesis parameter generation part 7 obtains a synthesis parameter string required for actual synthesis from rhythm information and voice representation information and the synthesis parameters obtained by a parameter correction part 9 are interpolated to obtain synthesis parameters at constant intervals of time. Further, a voice synthesis part 11 synthesizes an actual voice according to the synthesis parameters obtained by a parameter interpolation part 10. Consequently, when there is an unknown work, synthesis parameters of a voicing speed, loudness, etc., are controlled to obtain the synthetic voice which is higher in understanding.