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JPS59176836A - Processing system for sound input data - Google Patents

Processing system for sound input data

Info

Publication number
JPS59176836A
JPS59176836A JP58050968A JP5096883A JPS59176836A JP S59176836 A JPS59176836 A JP S59176836A JP 58050968 A JP58050968 A JP 58050968A JP 5096883 A JP5096883 A JP 5096883A JP S59176836 A JPS59176836 A JP S59176836A
Authority
JP
Japan
Prior art keywords
data processing
circuit
voice
pattern
format
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP58050968A
Other languages
Japanese (ja)
Other versions
JPH0461377B2 (en
Inventor
Masanori Miyatake
正典 宮武
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Sanyo Electric Co Ltd
Sanyo Denki Co Ltd
Original Assignee
Sanyo Electric Co Ltd
Sanyo Denki Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Sanyo Electric Co Ltd, Sanyo Denki Co Ltd filed Critical Sanyo Electric Co Ltd
Priority to JP58050968A priority Critical patent/JPS59176836A/en
Publication of JPS59176836A publication Critical patent/JPS59176836A/en
Publication of JPH0461377B2 publication Critical patent/JPH0461377B2/ja
Granted legal-status Critical Current

Links

Abstract

PURPOSE:To transmit the result of recognition to a data processing part different in type by transmitting the reception style of a data processing part to a sound input part by the data processing part itself when said data processing part is actuated and therefore deciding the transmission style of a sound recognizing part. CONSTITUTION:A personal computer 2 contains a type information memory region M where the type information (m) to be decoded by a decoder 27 is stored in a memory 25. Then the information (m) is transmitted to a transmitting circuit 16 of a sound recognizing part 1 from a central processing part 21 when the computer 2 is actuated. The part 1 changes the sound signals sent from a microphone 11 into a pattern through a patterning circuit 12. This pattern is stored temporarily in an input sound pattern memory 13, and a pattern recognizing circuit 15 decides a sound pattern in a registered sound pattern memory 14 to which the pattern produced from the circuit 15 is corresponding. Then the register number of the decided sound pattern is delivered to the output circuit 16. The circuit 16 decides the transmission style from the information (m) given from the computer 2 and transmits it to the computer 2.

Description

【発明の詳細な説明】[Detailed description of the invention]

(イ)産業上の利用分野 本発明は音声認識部とデータ処理部とを結合した音声入
力データ処理システムに関する。 (ロ) 従来技術 音声入力データ処理システムは例えば会計処理等7行な
う為のパーソナルコンピュータ(以下パソコンと称す)
や文章作成を行なうワードプロセッサ(:、音声を認識
してこの音声に対応した出力信号を伝送する音声認識部
を結合し、音声
(a) Industrial Application Field The present invention relates to a voice input data processing system that combines a voice recognition section and a data processing section. (b) The conventional voice input data processing system is a personal computer (hereinafter referred to as a personal computer) for performing accounting processing, etc.7, for example.
A word processor (:) that recognizes speech and transmits an output signal corresponding to the speech is combined with a speech recognition section that

【二でこれ等データ処理部の操作を行な
うものである。 斯様な従来システムに於いては、音声認識部の認識結果
は例えばアスキーコードで表わらされるコマンドコード
又はデーターコードの形でデータ処理部に送信する事と
なるが、この昔声認@部からの認識結果の送信形式は固
定されており、その形式が異なるデータ処理部に対して
は認識結果が受信されない不都合があった。即ち、例え
ば送信の終了を表わすコードとしてBAsIC3語の“
OR“(キャリッジリターン)のみン用いる形式(7)
/(ソコンと、そのコードとして”OR@(!:“LF
−(ラインフィールド)との組合せン用いる形式のパソ
コンとが共存している為に、音声認識部からデータ処3
¥部としてのパソコンへ認識結果を伝送しようとしても
斯様な形式の違いに依って、パソコン(2)への認識結
果の伝送かできない場合があった。 (ハ)発明の目的 本発明は上述の点に鑑みて為され、コード体系の形式が
異なるあらゆるデータ処理部C二対しても認識結果の伝
送が可能な音声認識部!備えた音声入力データ処理シス
テムを提供するものである。 に)発明の構成 本発明の音声入力データ処理システムは音声認識部とデ
ータ処理部と欠結合したもの(二於いて、音声認識部(
二人力音声の認識結果をデータ処理部での受信可能な形
式のコード体系に変換する送信回路を設けると共に、デ
ータ処理部に目からのコード体系の形式を指示する形式
情報を記憶した記憶手段を備えておき、データ処理部の
起動時(二記憶手段からの形式情報ン音声認識部の送信
回路に伝送する事に依って、データ処理部での受信形式
に対して送信回路からの送信形式を適合せしめたもので
ある。 しζ)実施例 第1図に本発明の音声入力データ処理システムの一実施
例の構成ン示す。同図のシステムはデータ処理部として
RAS I (3言語を用いるパソコン(2)?I’例
示しており、先ずこのパソコン(2)と結合される音声
認識部(1)の構成ン述べる。 該音声認識部(1)に於いて、aDは音声を電気的な音
声信号ζ:変換するマイクロフォン、L121は該マイ
クロフォンCIl+からの音声信号をパターン化するパ
ターン化回路であり、例えは周波数スペクトルパラメー
タからなる音声パターンが得られる。(131は該パタ
ーン化回路任2からの音声パターンを一時的に貯える入
力音声パターンメモリ、(141は予じめ複数の登録音
声パターンを貯えた登録音声パターンメモリである。叫
は該登録背戸パターンメモ!J(141の各登@晋声パ
ターン(=基づいて上記入力音声パターンメモリ(13
1の入力音声パターンtパターン認識するパターン認識
回路であり、入力音声パターンとの誤差が最小となる登
録音声パターンの音声を示す認識結果が例えばその登録
番号で出力される。卸は該パターン認識回路晒からの番
号で示される認識結果を、例えばアスキーコードで表わ
されるデータコードとして出力する為の出力回路であり
、このデータコードをパソコン(2)が受信可能な形式
に変換する為の機能、即ち認識結果ン示すデータコード
の後にこの結果出力が終了した事を示す“OR”、又は
“(3R”=LF”のいずれかのコマンドコードを付加
する機能を備えており、この“OR”、又は“OR”“
LF“の選択はパソコン(2)から得られる形式情報m
i二依って行なわnる。 一方、パソコン(2)に於いて、(2ilは中央処理回
路であり、キーホー F(22+、 ORT(33,7
−!I ’/9Q4J、メモリ回路(ハ)がこれに接続
された基本構成ン持ち、さらC二上記音声認識部(1)
からの認識結果、即ち外部人力(ユ対し又は、その人力
暑−担パンファメモリt20に格納してからそのデータ
の後(二続く終了を示す’OR’、又は“OR・“LF
’齢のいずれか一力のコマンドコードをデコーダC17
)にて解読して始めてこのバッファメモリCQの内容ン
中央処理回路I21)に導入できる構成ン備えている。 また上記メモリ回路(2!9(”:は上記デコーダ(2
7)が°OR″、又は−OR”LP”のいずれのコマン
ドコードナ解読するのかを示す目からの受信形式の形式
情報mを例えばキーボード12】)からの入力に依って
予じめ格納しておく形式情報記憶領域[Mlが設けられ
ており、この領域(MJに記憶された形式情報mは斯る
パソコン(2)が起動された時点で中央処理部CI!1
1から晋声認識都(1)の送信回路αe(−伝送される
事となる。 斯る構成の音声入力データ処理システムに於いては、パ
ソコン(2)ヲ起動した時、上記メモリ回路(ハ)の形
式情報記憶領域+Mlの形式情報mに依って、音声認識
部(1)の送信回路aI2での送信形式が認識結果を示
すデータコードの後に’OR・のコマンドコードな伺加
マるか、父は°OR”“LF“のコマンドコードな付加
するかのいずれか、パソコン(2)のデコーダρηのM
、読影式に適合した形式に設電される。 次に上記送(6回路(16iの具体的構成を第2図に示
し、同図に基づい又送信回路tleの構成を詳述1−る
。 同図に於いて、(3)は第1、第2、第6のレジスタ0
11、 C(3、ai″4r一連結した3段柵成のシフ
トレジスタであり、この第2のレジスタt32JI−は
パターン認識回路からの認識結果がコンバータ(4)に
てアスキーコード化されて導入される。 一方、第1のレジスタC3i1には“C](“のコマン
ドコードが格納された第1のコマンドレジスタ(51)
及びOR”LP”のコマンドコードが格納された第2の
コマンドレジスタ(52)がパソコン(2)からの第1
の形式情報m1g二で開閉制御されるグー)gl、及び
グー)g2Y経てさらにグー)g3’&介して接続され
ている。 而して、パソコン(2)を起動した時、“L0レベルの
形式情報m1が得られた場合(:は、ゲートg1は開成
され、第1のコマンドレジスタ(51)の“OR”のコ
マンドデータがゲートg1を経てさら(:開成状態とし
たグー)g5を介して第1のレジスタcll)に導入さ
れる。逆にパソコン(2)から“H・レベルの形式情報
m1が得られた場合、ゲートg2vM成する事に依って
、第2のコマンドレジスタ(52)の=CH暮”LF−
のコマンドデータがグー)g2’P経て、さらに開成状
態としたグー)g3Y介して第1のレジスタcll)(
二導入される。従って、シフトレジスタ(3)からは例
えば“6”OR”又は−5”−OR@”LF”の内選択
された一方のアスキーコード列が出力され、パソコン(
2)(:伝送される。 また、この送信回路a6Jに於いては、パターン認識回
路からの認識結果が数十種類存在し、この認識結果が1
桁の番号と2桁の番号とで表わされる場合C:は、1桁
の番号である例えば“3″を“03・の如く2桁の形式
に揃える機能ンも備えている。即ち、この機能はパソコ
ン(2)がそのデコーダ(271の代りCニバツファメ
モリ(至)に貯えられるコード列の総バイト数ン検知す
るカウンタZ設け、このカウンタに依って2桁の番号ン
示すコード列のバイト数分だけの入力かあった時1:こ
のバッファメモリ(至)の内容を中央処理回路−に導入
する形式のものである場合に対応するものである。 斯様な具体的構成は第2図(二示す如くシフトレジスタ
(3)の第3のレジスターに“0°〔ゼロ〕のデータコ
ードが格納されたデータレジスタ(6)ラグ−)g4、
g5を介して接続したものであって、このゲートg4は
上記コンバータ(4)から得られる番号のコードの桁数
を示す桁信号Kにて開閉され一方グートg5はパソコン
(2)からの第2の形式情報m2にて開閉される。 而して、パソコン(2)’?ff起動した時、“H“レ
ベルの形式情報m2が得られた場合、この情報m2にて
ゲートg5を開成すると共にゲートg3ン閉成して上述
の−OR”、=CH”’LF”のコマンドコードを不要
とした状態となる。この状態で上記コンバータ(4)か
ら1桁の番号のデータコードを示す桁信号Kが得られる
と、デー)g4が開成されて第6のレジスタ(ハ)(ニ
データレジスタ(6)の“0・のデータコードが導入さ
れる。従ってシフトレジスタ(3)からは例えばaO°
″3°なるアスキーコード列が出力され、パソコン(2
)に伝送される。 尚、データレジスタ(6)には、“0′″のアスキーコ
ードの代りC二“SP・(スペース)のアスキーコード
を格納しておいても、例えば“6・を“口3・で表わす
事となるので、上述の2桁の形式と同等に処理される。 以上(:説明した実施例に於い℃は、認識処理部(1)
からパソコン(2)へ伝送される認識結果として入力音
声パターンに最も類似する登録音声パターンの登録番号
を用いていたが、第2、第3番目に類似する登録音声パ
ターンの登録番号をも同時シニ伝送する構成としても良
く、この時の第1.第2、$3の登録番号と共(二これ
等の類似度lも付加して伝送する事に丁れ1ば、たとえ
第1の登録番号が誤認識であったとしてもパソコン(2
)側(二てこの時の入力C′″、適切な入力Zこれ等の
中から再選択する事もできる。さらには、音声認識部(
1)の登録音声パターンメモリIの各登録泣声パターン
及び入力音声パターンメモリ03の入力音声パターンを
そのままパソコン(2)へ伝送して例えば0RTqに表
示せしめたり、メモリ回路(2唱:退避せしめる事もで
きる。即ち、データ処理部として上述の如きパソコン(
2)v用いる事(二依って、このパソコン(2)の本来
の会計処理等のデータ処理の他に、音声認識部(1)で
の認識率の向上7図る為の音声パターンの修正処理等が
行え、その結果本来のデータ処理部より確実に実行でき
る事となる。 然るC二本発明のデータ処理部はパソコン(2)に限足
されるものではなく、あらゆる受信形式のデータ処理部
に対しても音声認識部(1)の送信形式を適合せしめる
為に、その形式情報をデータ処理部側に記憶できるもの
であれは良く、例えはワードプロセッサがこれに該当す
る。 (へ)発明の効果 本発明の音声入力データ処理システムはデータ処理部の
起動時にデータ処理部が目からの受信形式Z指示する形
式情報を音声入力部に伝送し、これ(二依って音声認識
部の送信形式をデータ処理部の受信形式に適合せしめる
ものであるので、コード体系の形式が異なるあらゆるデ
ータ処理部に対しても音声認識部からの認識結果ケ伝送
する事ができ、しかも認識gISの送信形式の変更を自
動的に行なう事ができる。従って音声認識部自体の汎用
性が向上する上に、この種システムの構成乞大巾に拡大
できる。 44、図面の簡単な説明 第1図は本発明の音声入力データ処理システムの一実施
例の構成7示すブロック図、第2図は本発明の音声入力
データ処理システムの要部のブロック回路図である。 (1)・・・音声認識部、(2)・・・パソコン、oト
・マイクロフォン、a7J・・・パターン化回路、a4
1・・・を録晋声パターンメモ’J、[1ω・・・パタ
ーン認識回路、cIe・・・送信回路、圓・・・中央処
理回路、0勺・・・メモリ回路、(ハ)・・・バクファ
メモリ、21・・・デコーダ、[Ml・・・形式情報記
憶領域。
[Second step is to operate these data processing units. In such a conventional system, the recognition result of the voice recognition unit is transmitted to the data processing unit in the form of a command code or data code expressed in ASCII code, for example. The transmission format of the recognition results is fixed, and there is an inconvenience that the recognition results are not received by data processing units with different formats. That is, for example, as a code indicating the end of transmission, the BAsIC three words “
Form that only uses OR” (carriage return) (7)
/(Sokon and its code “OR@(!:”LF
- (Line field) Since the computer of the type used in combination coexists, the data processing 3 from the voice recognition section
Even if an attempt was made to transmit the recognition results to the personal computer serving as the ¥ section, there were cases in which the recognition results could only be transmitted to the personal computer (2) due to the difference in format. (c) Purpose of the Invention The present invention has been made in view of the above points, and is a speech recognition unit capable of transmitting recognition results to any data processing unit C2 having a different code system format! The present invention provides a voice input data processing system with the following features. B) Structure of the Invention The voice input data processing system of the present invention is a system in which a voice recognition section and a data processing section are disconnected.
A transmitting circuit is provided to convert the recognition result of two-person speech into a code system in a format that can be received by the data processing unit, and a storage means is provided that stores format information that instructs the data processing unit to format the code system visually. When the data processing section is activated (2), by transmitting the format information from the storage means to the transmission circuit of the speech recognition section, the transmission format from the transmission circuit is determined relative to the reception format at the data processing section. ζ) Embodiment FIG. 1 shows the configuration of an embodiment of the voice input data processing system of the present invention. The system in the figure shows an example of RAS I (a personal computer (2)?I' that uses three languages) as a data processing unit, and first we will describe the configuration of the speech recognition unit (1) that is connected to this personal computer (2). In the voice recognition unit (1), aD is a microphone that converts voice into an electrical voice signal ζ, and L121 is a patterning circuit that patterns the voice signal from the microphone CIl+, for example, from frequency spectrum parameters. A voice pattern is obtained. (131 is an input voice pattern memory that temporarily stores voice patterns from the patterning circuit 2, and 141 is a registered voice pattern memory that stores a plurality of registered voice patterns in advance.) .Scream is the registered back door pattern memo!
This is a pattern recognition circuit that recognizes one input voice pattern t pattern, and outputs a recognition result indicating the voice of the registered voice pattern with the minimum error from the input voice pattern, for example, with its registration number. The wholesaler is an output circuit for outputting the recognition result indicated by the number from the pattern recognition circuit as a data code expressed, for example, in ASCII code, and converts this data code into a format that can be received by the personal computer (2). It has a function to add either "OR" or "(3R"=LF" command code) indicating that the output of the result has been completed after the data code indicating the recognition result. This “OR” or “OR”
The selection of “LF” is based on the format information obtained from the computer (2).
I will do it depending on the situation. On the other hand, in the personal computer (2), (2il is the central processing circuit, Keyho F (22+, ORT (33, 7)
-! I'/9Q4J, has a basic configuration with a memory circuit (c) connected to it, and also has the above speech recognition section (1)
The recognition result from external human power (for example, or for that human power) is stored in the paper memory t20 and then after that data ('OR' indicating the end followed by 'OR', or 'OR' or 'LF').
Decoder C17 for the command code of one of the 'age'
), the contents of this buffer memory CQ can only be introduced into the central processing circuit I21) after being decoded. In addition, the above memory circuit (2!9(”:) is the above decoder (2!9).
7) stores in advance the format information m of the received format from the eyes indicating whether to decode the command code °OR" or -OR"LP" by inputting it from the keyboard 12]). A format information storage area [Ml is provided, and the format information m stored in this area (MJ) is stored in the central processing unit CI!1 when the personal computer (2) is started.
1 to the transmission circuit αe (-) of the voice recognition center (1). In the voice input data processing system configured as described above, when the personal computer (2) is started, ) Depending on the format information storage area + format information m of Ml, the transmission format in the transmission circuit aI2 of the speech recognition unit (1) is a command code of 'OR' added after the data code indicating the recognition result. , the father either adds the command code of °OR""LF", or M of the decoder ρη of the PC (2)
, the power will be installed in a format compatible with the image interpretation method. Next, the specific configuration of the above-mentioned transmission circuit (6 circuits (16i) is shown in FIG. 2nd and 6th register 0
11. C(3,ai''4r is a three-stage shift register connected in series, and this second register t32JI- is a shift register in which the recognition result from the pattern recognition circuit is converted into ASCII code by the converter (4) and introduced. On the other hand, the first command register (51) in which the command code of "C](" is stored is stored in the first register C3i1.
and the second command register (52) in which the command code of OR “LP” is stored is the first command register from the personal computer (2).
The opening/closing control is controlled by the format information m1g2, which is connected via goo)gl, and goo)g2Y, and further through goo)g3'&. Therefore, when the personal computer (2) is started, if "L0 level format information m1 is obtained", the gate g1 is opened and the "OR" command data of the first command register (51) is is introduced into the first register cll via gate g1 and gate g5 (open state).On the other hand, if "H" level format information m1 is obtained from the personal computer (2), By forming the gate g2vM, the second command register (52) =CH LF-
The command data is sent to the first register cll) (through Goo)g2'P, and then to the open state through Goo)g3Y.
Two are introduced. Therefore, the shift register (3) outputs one of the ASCII code strings selected from, for example, "6"OR" or -5"-OR@"LF", and the personal computer (
2) (: Transmitted. Also, in this transmitting circuit a6J, there are dozens of recognition results from the pattern recognition circuit, and these recognition results are 1
In the case of C:, which is represented by a digit number and a two-digit number, it also has a function to arrange a one-digit number, for example "3", into a two-digit format such as "03." The personal computer (2) has a counter Z that detects the total number of bytes of the code string stored in the decoder (instead of 271) of the code string stored in the C buffer memory (to). 1: This corresponds to the case where the contents of this buffer memory (to) are introduced into the central processing circuit. Such a specific configuration is shown in Figure 2 (2). As shown, the third register of the shift register (3) stores the data code of "0° (zero)" in the data register (6) lag-)g4,
This gate g4 is opened and closed by the digit signal K indicating the number of digits of the number code obtained from the converter (4), while the gate g5 is connected to the second gate from the personal computer (2). It is opened and closed using the format information m2. So, computer (2)'? When ff is activated, if "H" level format information m2 is obtained, this information m2 opens gate g5 and closes gate g3 to perform the above-mentioned -OR",=CH"'LF". A command code becomes unnecessary.In this state, when a digit signal K indicating a one-digit number data code is obtained from the converter (4), data) g4 is opened and the sixth register (c) is opened. (A data code of “0.” of the data register (6) is introduced. Therefore, from the shift register (3), for example, aO°
An ASCII code string of ``3 degrees is output, and the computer (2
). In addition, even if the data register (6) stores the ASCII code of C2 "SP・(space) instead of the ASCII code of "0''', for example, "6・ can be represented with "mouth 3・". Therefore, it is processed in the same way as the two-digit format described above.
The registration number of the registered voice pattern that is most similar to the input voice pattern is used as the recognition result transmitted from the input voice pattern to the PC (2). It may be configured to transmit data, and in this case, the first. By transmitting the second and $3 registration numbers together with the degree of similarity l, even if the first registration number is misrecognized, the computer (
) side (input C''' at the time of second lever, appropriate input Z can be reselected from among these.Furthermore, the voice recognition section (
Each registered crying pattern in the registered voice pattern memory I in 1) and the input voice pattern in the input voice pattern memory 03 can be transmitted as they are to the personal computer (2) and displayed on, for example, 0RTq, or can be saved in the memory circuit (2 chants: In other words, the above-mentioned personal computer (
2) Using v (2) In addition to data processing such as the original accounting processing of this computer (2), processing to modify voice patterns to improve the recognition rate in the voice recognition unit (1), etc. As a result, the data processing section of the present invention can be executed more reliably than the original data processing section.However, the data processing section of the present invention is not limited to a personal computer (2), but can be used as a data processing section of any reception format. In order to adapt the transmission format of the speech recognition unit (1) to the data processing unit, it is sufficient if the format information can be stored in the data processing unit, such as a word processor. Effects In the voice input data processing system of the present invention, when the data processing unit is activated, the data processing unit transmits format information indicating the reception format Z from the eyes to the voice input unit, and this (depending on the transmission format of the voice recognition unit) Since it is compatible with the reception format of the data processing unit, it is possible to transmit the recognition results from the speech recognition unit to any data processing unit with a different code system format, and it is possible to change the transmission format of the recognition gIS. Therefore, the versatility of the speech recognition unit itself is improved, and the configuration of this type of system can be expanded to a large extent. 44. Brief Description of Drawings FIG. 2 is a block diagram showing the configuration 7 of an embodiment of the input data processing system, and FIG. 2 is a block circuit diagram of the main parts of the voice input data processing system of the present invention. (1)...Speech recognition section, (2) ...PC, oto microphone, a7J...patterned circuit, a4
Record 1...Voice pattern memo'J, [1ω...pattern recognition circuit, cIe...transmission circuit, circle...central processing circuit, zero...memory circuit, (c)... - Backup memory, 21... Decoder, [Ml... Format information storage area.

Claims (1)

【特許請求の範囲】 1)人間の音声を認識する音声認識部と、予じめ定めら
れた形式のコマンドコード又はデータコードに基づいて
データ処理を行なうデータ処理部とン結合した音声入力
データ処理システムに於いて、 上記音声認識部には、音声を電気的な音声信号に変換す
るマイクロフォンと、該マイクロフォンからの音声信号
ンパターン化するパターン化回路と、予じめ複数の登録
音声パターンを貯えた登録背戸パターンメモリと、該登
録背戸パターンメモリの複数の登録音声パターンに基づ
いて上記パターン化回路から得られる入力音声パターン
をパターン認識するパターン認識回路と、該パターン認
識回路から得られる認識結果を上記データ処理部での受
信形Iにのコード体系に変換して上記データ処理部に送
信する送信回路と、を備え、上記データ処理部に(ま、
自からのコード体系の形式乞指示する形式情報を記憶し
ている記憶手段を設け、 上記データ処理部の起動時に該記憶手段からの形式情報
夕上記音声認識部の送信回路に伝送する事に依って、デ
ータ処理部での受信形式に対して送信回路からの送信形
式Z適合せしめる事を特徴とした音声入力データ処理シ
ステム。
[Claims] 1) Voice input data processing coupled with a voice recognition unit that recognizes human voice and a data processing unit that performs data processing based on a command code or data code in a predetermined format. In the system, the voice recognition unit includes a microphone that converts voice into an electrical voice signal, a patterning circuit that converts the voice signal from the microphone into patterns, and a plurality of registered voice patterns that are stored in advance. a registered back door pattern memory; a pattern recognition circuit that recognizes the input voice pattern obtained from the patterning circuit based on a plurality of registered voice patterns of the registered back door pattern memory; and a recognition result obtained from the pattern recognition circuit. a transmitting circuit that converts the received type I code system in the data processing section and transmits it to the data processing section;
A storage means is provided for storing format information for instructing the format of the code system, and the format information is transmitted from the storage means to the transmission circuit of the speech recognition section when the data processing section is activated. A voice input data processing system characterized in that a transmission format Z from a transmission circuit is adapted to a reception format at a data processing section.
JP58050968A 1983-03-25 1983-03-25 Processing system for sound input data Granted JPS59176836A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP58050968A JPS59176836A (en) 1983-03-25 1983-03-25 Processing system for sound input data

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP58050968A JPS59176836A (en) 1983-03-25 1983-03-25 Processing system for sound input data

Publications (2)

Publication Number Publication Date
JPS59176836A true JPS59176836A (en) 1984-10-06
JPH0461377B2 JPH0461377B2 (en) 1992-09-30

Family

ID=12873611

Family Applications (1)

Application Number Title Priority Date Filing Date
JP58050968A Granted JPS59176836A (en) 1983-03-25 1983-03-25 Processing system for sound input data

Country Status (1)

Country Link
JP (1) JPS59176836A (en)

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US10836516B2 (en) 2014-12-29 2020-11-17 Packsize Llc Methods of forming packaging templates
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US11173685B2 (en) 2017-12-18 2021-11-16 Packsize Llc Method for erecting boxes
US11214032B2 (en) 2016-06-16 2022-01-04 Packsize Llc Box template production system and method
US11242214B2 (en) 2017-01-18 2022-02-08 Packsize Llc Converting machine with fold sensing mechanism
US11247427B2 (en) 2018-04-05 2022-02-15 Avercon BVBA Packaging machine infeed, separation, and creasing mechanisms
US11286073B2 (en) 2017-03-06 2022-03-29 Packsize Llc Box erecting method and system
US11305903B2 (en) 2018-04-05 2022-04-19 Avercon BVBA Box template folding process and mechanisms
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US11524474B2 (en) 2018-11-30 2022-12-13 Packsize Llc Adjustable cutting and creasing heads for creating angled cuts and creases
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