TW201125339A - Biological recognition system and method based on input order of biological feature. - Google Patents

Biological recognition system and method based on input order of biological feature. Download PDF

Info

Publication number
TW201125339A
TW201125339A TW99100045A TW99100045A TW201125339A TW 201125339 A TW201125339 A TW 201125339A TW 99100045 A TW99100045 A TW 99100045A TW 99100045 A TW99100045 A TW 99100045A TW 201125339 A TW201125339 A TW 201125339A
Authority
TW
Taiwan
Prior art keywords
biometric
sequence
data
input
biological
Prior art date
Application number
TW99100045A
Other languages
Chinese (zh)
Other versions
TWI433522B (en
Inventor
shao-rui Wang
geng-hao Zhang
dong-ming Xie
Jing-Jie Zhan
Chong-Qin Xiao
Original Assignee
Chunghwa Telecom 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 Chunghwa Telecom Co Ltd filed Critical Chunghwa Telecom Co Ltd
Priority to TW99100045A priority Critical patent/TWI433522B/en
Publication of TW201125339A publication Critical patent/TW201125339A/en
Application granted granted Critical
Publication of TWI433522B publication Critical patent/TWI433522B/en

Links

Landscapes

  • Collating Specific Patterns (AREA)
  • Measurement Of The Respiration, Hearing Ability, Form, And Blood Characteristics Of Living Organisms (AREA)

Abstract

A biological recognition system and method based on input order of biological feature. It comprises: a sensor for receiving different biological feature sequence and sending it to an information processing module for accessing and matching other biological feature sequence data. Message of whether passing recognition can be outputted if biological feature and the sequence data stored in database are conformed so that implied instruction or action are outputted; furthermore, the sensor comprises direction sensing unit. The information processing module can match orientation of biological feature sequence data to be identified for outputting message of whether passing recognition so that implied instruction or action are outputted; besides, the system comprises a transforming module for transforming existing numeral recognition system to biological feature sequence data stored in the database for being identified by the system.

Description

201125339 六、發明說明: 【發明所屬之技術領域】 本發明係關於一種生物特徵辨識的系統與方法,係用以辨 識輸入生物特徵序列是否為特定資料,一旦為特定資料,則 自動執行隱含的指令或動作。 、 ' 【先前技術】 目前各種生物特徵辨識系統與方法,包括多重生物特徵辨 識系統與方法’皆不具有以不同生物特徵輪入順序為辨識依 據的概念。 例如在多重生物特徵系統方面’巾華民國專利公開號 200843445,名稱為「經由生物特徵雜湊的使用者認證」,當 中雖然也包含多個生物特徵參與辨識過程的内容,但是其二 採用從個別生物特徵做雜湊(hashHa關運算,然後再個別比對 的方法,無輸人時間先後順序的概念,而取雜凑相關運算的 過程事實上會多增加一些系統執行時間。 此外,在一些特殊情況,例如使用者有可能是在被歹徒脅 ^的情形下要進行匯款及其身分確認,目前耗已有若使用 ,將數字密碼反序輸人,即可在匯款之餘,同時通知擎方的 但在生物辨識安全系統此領域,目前尚無類㈣系統 =方法’因此本專利提出利用若是輸入特定的生物特徵序 :或^在通過身分確認的同時,系統將執行對應的隱含指 1且’為了增加本Μ的安全性,本㈣也提料對有輸 ::向性差異的生物感測器’例如滑動式指紋感測裝置,如 2用者輸人的方向不同,則輸出的生物特徵序列結果是不 l°J 的0 ^此^卜,目前-般文數字系統若要轉換成生物特徵辨識 的系統,資料庫和制者慣用密碼等因素常造成轉換上的困 3 201125339 Γ古ΐ去較少有針對此問題⑽決方案,本專利特別提出一 個方法,解決此問題。 以改11明人鑑於之前習用方式所衍生的各項缺點,蛋思加 本件=Μ趣苦心孤1旨潛心研究後,終於成功研發完成 t件基於生物特徵輸入順序的生 【發明内容】 序的===即在於提出一種基於生物特徵輸入順 定次料日# Γ ’並且當輸人的生物特徵序列為特 疋貝枓時,此夠使系統自動執行隱含的指令或動作。 序的生:二==目的即在於提出一種基於生物特徵輸入順 若輸入方6 與方法’利用具有輸人方向性的感測器, 、路二不同則在生物特徵序列中代表不同的意義。 序的生物目的即在於提出&quot;'種基於生物特徵輸入順 以佴辨1 /、統與方法’係整合生物特徵序列與方向性, 以供辨識時更具安全性。 丨J r王 序的生物目的即在於提出一種基於生物特徵輸入順 辨識系統與方法’係提出一種轉換模組,將既有之 文數予辨識方法轉換成以生 法,以提高其安全性。 為依據辨硪系統與方 可達成上述發明目的之— 物辨識系統與方法,包含·,生物特徵輪入順序的生 生物特徵序列,並傳二·:感:器’其係用以接收不同的 存取並比對及生物, 模組,其係於資料庫中 生物特徵及其序列,即可發、庫中儲存之 隱含指令或動作.此外 否通過辨識之訊息’並輸出 該資訊處理模組更可比二感:器更可包含方向感測單元, 性,而轸出…K 辨識生物特徵序列資料之方向 輪出疋否通過辨識之訊息,並輸出障含栌人+ 1 另外,本系統更包含 輸出隱“”或動作; 3轉換模组可將外部系統既有之文數字 201125339 ’以供 辨識方法轉換成生物特徵序列資料並儲存於資料 本系統進行辨識。 【實施方式】 生物=考二所示,為本發明一種基於生物特徵輸入順序的 生物辨識系統1之架構圖,包含: ;貝料庫13,其係用以儲存所有使用者之 所組成之序列; 冑㈣及其201125339 VI. Description of the Invention: [Technical Field] The present invention relates to a system and method for biometric identification, which is used to identify whether an input biometric sequence is a specific material, and once it is a specific material, automatically implements an implicit Instruction or action. [Prior Art] At present, various biometric identification systems and methods, including multiple biometric identification systems and methods, do not have the concept of identifying the basis of different biometrics. For example, in the case of multiple biometric systems, 'Women's Republic of China Patent Publication No. 200843445, the name is "user authentication via biometric hashing", although it also contains multiple biometrics to participate in the identification process, but the second is from individual organisms. Features do hashes (hashHa off operations, then individual comparison methods, no loss of chronological order concept, and the process of hashing related operations will actually increase some system execution time. In addition, in some special cases, For example, the user may have to carry out the remittance and the identification of the identity in the case of being threatened by the gangster. If the current consumption has been used, the digital password will be input in reverse order, and the remittance can be notified at the same time. In the field of biometric security systems, there is currently no class (four) system = method 'so this patent proposes to use the input of a specific biometric sequence: or ^ while confirming by identity, the system will execute the corresponding implied finger 1 and 'for To increase the safety of this book, this (4) also raises the need for a biosensor that has a loss: a directional difference, such as a sliding fingerprint. The sensing device, if the direction in which the user inputs is different, the output biometric sequence result is not 0°J ^^^^, the current-general digital system is to be converted into a biometric system, data Factors such as the library and the maker's customary password often cause difficulties in conversion. 201125339 This article has a special solution to this problem (10). This patent specifically proposes a method to solve this problem. The shortcomings derived from the article, the egg and the original article = Μ 苦 苦 1 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨 旨The feature input is determined by the default date # Γ ' and when the biometric sequence of the input is special, it is enough for the system to automatically execute the implicit instruction or action. The order of the birth: two == the purpose is to propose a Based on the biometric input, the input method 6 and the method 'utilize the sensor with the input directionality, and the road 2 has different meanings in the biometric sequence. The biological purpose of the sequence is to mention &quot;'Based on biometric input, </ br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br><br> The biometric input input identification system and method 'is proposed a conversion module, which converts the existing text number identification method into a bio-method to improve its security. According to the identification system and the purpose of the above invention, - the object identification system and method, including, the sequence of biometric features of the biometric rotation sequence, and the transmission of the second: the sense: the device is used to receive different access and comparisons and biology, modules, systems In the database, the biometrics and their sequences can be stored in the library or stored in the hidden instructions or actions. In addition, the identification of the message and the output of the information processing module are more comparable: the device can also include direction sensing. Unit, sex, and sputum...K Identify the direction of the biometric sequence data. If it passes the identification message, and the output barrier contains +1, the system also includes the output hidden "" or action; In other words both the module may be an external system digit 201,125,339 'for biometric identification method is converted into serial data and stored in the identification information for the system. [Embodiment] Biological = Test 2, which is an architecture diagram of a biometric identification system based on a biometric input sequence, comprising: a shell library 13, which is used to store a sequence of all users. ; 胄 (4) and

八中》亥生物特徵,可為指紋(Fingerprint)、掌型(Mm Shape)、掌紋(Palm Print)、視網膜(Retina)、虹膜(心)、聲紋 (VcMcepdnt)、^ 名(Signature)、靜脈(Vein) 類 生物特徵的型&lt;; 代表人類 另外,更可利用一轉換模組14,將既有的外部系統2之 所擁有的文數字密碼的資料型態轉換成生物特徵及其 的序列資料,並將轉換後之資料儲存於資料庫13; 一感測器1卜其係由各種對應不同生物特徵的感測裝置 所 成’係、用以#收使用者冑入之生物特徵及其$組成之序 列資料,再經由一資訊處理模組12辨識及比對資料; /其中,該感測器11更包含滑動式指紋感測裝置及滑動式 指靜脈感測裝置,其可用來感測方向性; 一資,處理模組12,其係接收感測器〗丨收到之生物特徵 及其所組成之序列,於資料庫13中存取生物特徵及其所組成 之序列資料,依照安全性之需求設定相似度,並利用演算法 進行運算比對,輸出使用者是否通過比對之訊息,並可同時 輸出隱含指令或動作。 請參考圖二所示,為本發明一種基於生物特徵輸入順序的 生物辨識方法之流程圖,包含: 步驟一:利用感測器接收使用者依據特定先後順序輸入之 生物特徵或具有方向性之生物特徵及其組成之序列資料2〇1; 201125339 步驟二:經由資訊處次 料,物器接收接收之生物特 步驟三n 進行辨識及比對資料202 列203,若:人合使用者之生物特徵及其所組成之序 204,特徵及其組成序列則輸出通過比對的訊息 、〇束机耘,若不符合則接續步驟四; 同,判斷是否為隱含指令或動作啊生物特徵全相 &lt;} # 列不同,或改變組成程序巾某-特徵方向等方 令或動作則輸出比對通過的訊息或不通過: .、二。、别*㈤表不求救訊息給警政單位206,並結束 μ私,右非隱含指令或動作則接續步驟五; 。 步驟五.輸出比對不通過的訊息2〇7,並結束流程。 :下:亡發明一種基於生物特徵輸入順序的生 統與方法之實施例: τ 徵及生物辨識系統接收到使用者依序輸入的生物特 ;、斤,.且成之序列為—(其分別輸入到與該生物特徵 感測器)_·大拇指指紋4食指靜脈分“右手掌紋—左眼= 後,利用該資訊處理模組與該資料庫中既存的所有生、 及其組成之序列進行比對,比對後㈣現目前的使用者】資 料庫:既存的使用者,則輸出—個表示通過比對的訊息。&quot;·、 實施例二:在實施例一中,輸出_通過比對的訊息同㈣ 可輸出隱含指令或動作,例如,使用者在一般 下 通過比對之生物特徵及其序列為大拇指指紋〜食指靜脈= 4右手掌紋—左眼虹膜,但若此時該❹者正處於遭歹徒挟 持的狀態,他可以輸入另一序列:右手掌紋〜左眼虹膜—大 拇指指紋—食指靜脈分布,生物辨識系統接收到此生物特徵 及其組成序列後,經比對後發現與資料庫符合,則依然輸= -個表示通過比對的訊息,但同時也輸出—個表示求救訊氣 的隱含指令或動作到警政單位。 201125339 實施例三:利用感測器之方向感測單元,當生 者的輸入,經與資料庫既存由不同方向“物特 徵資枓比對’-旦比對結果與資料庫中使用者的輸入生物特 徵不同’則這些不同方向的生物特徵資料,在生物特徵斑其The characteristics of the eight middles are: Fingerprint, Mm Shape, Palm Print, Retina, Iris, Voiceprint (VcMcepdnt), Signature, Vein (Vein) The type of biometrics &lt;; represents humans. In addition, a conversion module 14 can be used to convert the data type of the alphanumeric code possessed by the existing external system 2 into a biometric and its sequence. Data, and the converted data is stored in the database 13; a sensor 1 is formed by various sensing devices corresponding to different biometrics, and is used to receive the biometric characteristics of the user and The sequence data of the composition is further identified and compared by the information processing module 12; wherein the sensor 11 further comprises a sliding fingerprint sensing device and a sliding finger vein sensing device, which can be used for sensing Directionality; a processing module 12, which receives the biometric features received by the sensor and the sequence formed by the sensor, accesses the biometrics and the sequence data formed therein in the database 13, in accordance with the security Sexual needs set similarity, And use the algorithm to perform the operation comparison, output whether the user passes the comparison message, and simultaneously output the implicit instruction or action. Please refer to FIG. 2 , which is a flowchart of a biometric input sequence-based biometric identification method according to the present invention, including: Step 1: Using a sensor to receive biometrics or directional organisms input by a user according to a specific sequence. Sequence data of characteristics and its composition 2〇1; 201125339 Step 2: Receiving and receiving biometrics through the information processing sub-materials, the third step is to identify and compare the data 202 column 203, if: the biometric characteristics of the human user And the sequence 204 of its composition, the characteristics and the sequence of its composition are output through the comparison message, the 耘 beam machine 耘, if not, then proceed to step 4; the same, determine whether it is an implicit instruction or action ah biometric holistic &lt ;} # Columns are different, or change the composition of the program towel - the direction of the feature or other instructions or actions to output the comparison message or not pass: ., two. , do not * (5) do not ask for help message to the police unit 206, and end the μ private, right non-implicit instructions or actions continue with step five; Step 5. Output the message 2〇7 that does not pass, and end the process. : Bottom: Invented an embodiment based on the biometric input sequence of the system and method: The τ sign and the biometric system receive the biometric input by the user in sequence; the jin, and the sequence is - (the difference After inputting to the biometric sensor) _· thumb fingerprint 4 index finger vein “right palm pattern — left eye ==, using the information processing module and all the existing sequences in the database and their composition Comparison, after the comparison (four) the current user] database: the existing user, then output - a message indicating the comparison. "," Example 2: In the first embodiment, the output _ pass ratio The same message (4) can output implicit instructions or actions. For example, the user generally compares the biometrics and their sequences to thumb fingerprints ~ index finger veins = 4 right palm prints - left eye iris, but if The leader is in a state of being held by the gangster. He can enter another sequence: the right palm print ~ the left eye iris - the thumb fingerprint - the index finger vein distribution, after the biometric system receives the biometric and its constituent sequence, After the comparison, it is found that it is consistent with the database, and still loses = - means to pass the comparison message, but also outputs - an implicit instruction or action indicating the help message to the police unit. 201125339 Example 3: Use sense The direction sensing unit of the detector, when the input of the living person is compared with the database, the "characteristics of the object characteristics are compared" in the different directions, and the result is different from the input biometrics of the user in the database. Directional biometric data

==則分別代表不同的意義;例如:對於滑動:式指 、_’文感測裝置’當生物辨識系、統i接收到使用者向前滑動 的食指指紋資料,經資料庫既存資料比對包括不同輸入方向 的指紋資料(生物特徵),比對後若發現符合向前滑動的指紋資 料,則最後辨識整個生物特徵及其备序列㈣入内容為使用 者:’然後生物辨識系統1再接收使用者向後滑動的食指指 紋資料(生物特徵),經資料庫比對後發現,符合向後滑動的食 指指紋資料,但生物辨識系統丨最後判別整個生物特徵及其 組成的序列輸入的結果為使用者乙,而曱和乙的内容是不同 的;可能原因如下:原本使用者在一般情況下,輸入生物辨 識系統1後’能夠獲得通過的生物特徵及其組成序列為:向 前輸入的大拇指指紋—食指靜脈分布—右手掌紋—左眼虹 膜’但若他此時正處於遭歹徒挾持的狀態,他可以輸入另一 序列:向後輸入的大拇指指紋—食指靜脈分布—右手掌紋— 左眼虹膜,生物辨識系統丨接收到此生物特徵及其組成序列 後’經與資料庫比對後發現不符合通過的序列,則輸出表示 不通過的訊息。 實施例四:在實施例三中,原本使用者在一般情況下,輸 入本系統後,能夠獲得通過的生物特徵序列為:向前輸入的 大拇指指紋—食指靜脈分布-&gt; 右手掌紋—左眼虹膜,但若他 此時正處於遭歹徒挾持的狀態,他可以輸入另一序列:向後 輸入的大拇指指紋4食指靜脈分布·^右手掌紋—左眼虹膜, 生物辨識系統1接收到此生物特徵序列後,經資料庫比對, 則依然輸出一個表示通過比對的訊息,但同時也輸出一個表 7 201125339 示求救δίΐ息的隱含指令或動作到警政單位。 針五:另外,利用生物辨識系統1之種轉換模組,可 2現有的外部系統,例如文字或數字密碼系統,轉換成本 C统1可比對之生物特徵及其組成序列,其方法: 字或數字密碼的外部系統,不管其為何種文字或 進位制,將每個文字或數字表達法麵^,盘一個生 並不2對應1每個文字或數字表達法所對應的生物特徵 列,並:ΐί:一類型的生物特徵’而產生-組生物特徵序 j文=子於,,即為使用者所擁有的新密碼;例如:== respectively represent different meanings; for example: for sliding: type refers to, _' text sensing device' when the biometric system, the system i receives the index finger data of the user sliding forward, the existing data of the database is compared Fingerprint data (biometrics) including different input directions. If the fingerprint data that matches the forward sliding is found after the comparison, the entire biometric and its preparation sequence are finally identified. (4) The input content is the user: 'The biometric identification system 1 then receives The fingerprint data (biometric characteristics) of the index finger sliding backwards by the user is found to match the index finger data of the index finger sliding backwards, but the biometric identification system finally determines the result of the sequence input of the entire biological feature and its composition as the user. B, and the content of 曱 and B are different; the possible reasons are as follows: the original user in general, after entering the biometric system 1, the biometrics that can be obtained and the sequence of their composition are: thumb fingerprint input forward - the index finger vein distribution - the right palm pattern - the left eye iris - but if he is in a state of being held by a gangster at this time, he can Enter another sequence: thumb fingerprint input - index finger vein distribution - right palm pattern - left eye iris, biometric identification system after receiving this biometric and its composition sequence - after comparison with the database, it is found to be inconsistent. Sequence, the output indicates a message that does not pass. Embodiment 4: In the third embodiment, after the user inputs the system under normal circumstances, the biometric sequence that can be obtained is: thumb fingerprint input - index finger vein distribution -> right palm print - left The iris of the eye, but if he is in a state of being held by the gangster at this time, he can enter another sequence: the thumb fingerprint 4 input backwards, the index finger vein distribution, the right palm pattern, the left eye iris, and the biometric system 1 receives the creature. After the feature sequence, after comparing with the database, it still outputs a message indicating that the comparison is made, but also outputs an implicit instruction or action of the table 7 201125339 for the rescue of the δίΐ message to the police unit. Pin 5: In addition, using the conversion module of the biometric system 1, the existing external system, such as a text or digital cryptosystem, can convert the cost of the C-comparison biometric and its composition sequence by: word or The external system of digital passwords, regardless of the text or the digitization system, expresses each character or number in the form of a ^, and does not correspond to the biometric column corresponding to each text or digital expression, and: Ϊ́ί: A type of biometric 'produces' - a set of bio-characteristics = sub-, ie, a new password owned by the user; for example:

… 子母A和使用者的大拇指指紋對庳、字母B 使用者的右手掌掌咬對岸 ^^愿子母B和 用去…1 十進位制下,數字。和使 字2和:Ϊ=虹數字1和使用者的小指指紋對應、數 數字應、財3和使㈣的臉型對庫, ,子4和使用者的食指靜脈分布對應等 于應 數字0和使用去认么々此 &gt; 数子一進位制下’ 聲音” ,,對Λ 應、數字1和使用者發出的 先使用者的=為位數字系統51下,若原 ^ 〜 、,工本轉換模組轉換後,在&amp;## 識系統1下,該使用者的新 无任生物辨 —食指靜脈分布―臉型右手掌掌紋」。眼虹膜'&quot;小指指紋 物特广:,辨識系統的安全」度要求較低,在辨η生 物特徵序列中各個生物特徵時仕辨4生 識出正確的序列順序作為主要辨識依據二可降低’而以辨 得通過的生物特徵序列為:大拇指指&amp; ^使用者要獲 手掌紋-左眼虹膜,則每個生物特二;:庫曰=分布一右 的生物特徵資料間的相似度要求可設定、、2中比對最相近 用者的生物特徵,因此在各生物為屬該使 紋-左眼虹膜」這揭J 食指靜脈分布^右手掌 、’、歹卜生物辨識系統即輸出通過比對 201125339 訊號。 本發明所提供之一種基於生物特徵輸 ::明:其於他習,料 據 性 =發明广多個生物特徵的輸入順序為辨識的依 因此比-般的單一生物特徵輸入辨識系統有更高的安全 列 2·本發明讓使用者㈣直接藉由輪人特定的生物特 同時發出隱藏的指令或動作,提供更多的應用性。 同的内容意義,增加更多的安全性輸入方向的貢料,提供不 據,合Ο個生㈣徵的輪人順序作為辨識的依 據及不同輸入方向的資料代表不同的内 入特定的生物特徵序列,能夠使系絲间眭旅山我還有右輸 動作等功能,增加更多的應用性。’出隱滅的指令或 發明提供將現存的文字或數字密碼系統,轉換成本 :月=之生物特徵辨識系統的方法,提供現存系統管理者 個k南系統安全度的可行方法。 上列詳細說明係針對本發明之—可行實施例之且體說 X惟該實施例並㈣以限制本發明之專利範圍,凡未脫離 本發明技藝精神所為之等效實施或變更,均應包含於本案之 專利範圍中。 … 綜上所述,本案不但在技術思想上確屬創新,並能較習用 ,品增進上❹項功效’應已充分符合新龍及進步性之法 2明專利要件,f依法提出巾請,懇請f局核准本件發 月專利申請案,以勵發明,至感德便。 【圖式簡單說明】 圖 為本發明-種基於生物特徵輸人順序的生物辨識系 201125339 統之架構圖; 圖二為本發明一種基於生物特徵輸入順序的生物辨識方法 之流程圖。 【主要元件符號說明】 1 生物辨識系統 11 感測器 12 資訊處理模組 13 資料庫 14 轉換模組 2 外部系統... The parent and child A and the user's thumb are facing the fingerprint, the letter B is the user's right palm and the other hand is biting the other side. ^^ The mother and the child B are used... 1 decimal system, the number. And the word 2 and: Ϊ = rainbow number 1 and the user's little finger fingerprint, the number should be, the money 3 and the (4) face type library, the child 4 and the user's index finger vein distribution corresponds to the number 0 and use To recognize this &gt; the number of digits into the system to make the 'sounds', the corresponding number, and the user's first user's = in the digital system 51, if the original ^ ~,, the conversion module conversion After the &amp;## knowledge system 1, the user's new non-self-discipline-index finger vein distribution - face type right palm palm print. Eye iris '&quot; small finger fingerprints are very wide: the safety of the identification system is low. When distinguishing the biological characteristics of the η biometric sequence, the correct sequence order is recognized as the main identification basis. 'The sequence of biometrics that pass through the identification is: thumb finger &amp; ^ user wants to get palmprint - left eye iris, then each creature is special;: 曰 曰 = distribution of one right biometric data similarity The degree requirement can be set, and the biometrics of the closest users are compared. Therefore, in each organism, the genus-left eye iris is released. The J finger vein distribution is the right palm, ', and the biometric identification system. The output is compared by the 201125339 signal. The present invention provides a biometric-based input:: Ming: It is learned by others, and the input order of the invention is that the input order of the plurality of biological features is recognized, so that the single biometric input identification system is higher than the general one. Security Columns 2. The present invention allows the user (4) to provide more applicability by directly issuing hidden commands or actions directly by the wheel-specific creatures. The same content meaning, adding more security input direction of the tribute, providing no basis, the order of the rounds of the students (four) is the basis for identification and the data of different input directions represent different intrinsic specific biological characteristics. The sequence can make the function of the right side of the line between the silk line and the right movement, adding more applicability. An out-of-the-box instruction or invention provides a method of converting an existing text or digital cryptosystem into a monthly biometric system that provides a viable method for the security of existing system administrators. The above detailed description of the present invention is intended to be illustrative of the preferred embodiments of the present invention and the invention is intended to be limited to the scope of the invention. In the scope of the patent in this case. ... In summary, this case is not only innovative in terms of technical thinking, but also more customary, and the product enhances the effectiveness of the project. 'It should have fully complied with the new dragon and progressive law 2, and the patent requirements. I urge the bureau to approve the patent application for this month, so as to encourage the invention. BRIEF DESCRIPTION OF THE DRAWINGS FIG. 2 is a flow chart of a biometric identification system based on a biometric input sequence; FIG. 2 is a flow chart of a biometric identification method based on a biometric input sequence. [Main component symbol description] 1 Biometric system 11 Sensor 12 Information processing module 13 Database 14 Conversion module 2 External system

Claims (1)

201125339 七、申請專利範圍: 1· -,基於生物特徵輸人順序的生物辨識系統,包含: 貝料庫’其係用以儲存所有生物特徵及其所組成之序列 資料; 感測H係'由各種對應不同生物特徵的感測裝置所組 成:係用以接收輸入之生物特徵及其所組成之序列資料, 再經由一資訊處理模組辨識及比對資料;201125339 VII. Scope of application for patents: 1·-, a biometric identification system based on the order of biometric input, including: the shell library 'is used to store all biological features and the sequence data they constitute; sensing H system' The sensing device corresponding to different biological features is configured to receive the input biological characteristics and the sequence data formed by the input, and then identify and compare the data through an information processing module; 二Λ處理模組’其係於資料庫十存取資料,與對感測器 接收之生物特徵及其所組成之序列資料 通過比對之訊息及輸出隱含指令或動作。 出疋否 2 Hi專利辄圍第1項所述之-種基於生物特徵輸入順序 掌型系統’其中該資料庫之生物特徵,可為指紋、 H二視網膜'虹膜、聲紋、簽名、靜脈及其他可 代表人類生物特徵的型式。 3二:=:=:=!二 广輸人順序 :=的文數字密碼的資料型態轉換成 41=列資料,並將轉換後之資料儲存於該資料ί 的生物辨識系:特徵輸 之需求,設定比對之相= 據不同安全性 的第上:所述之-種基於生物特徵輸入順序 置及滑動式測器更包含滑動式指紋感測裝 物特徵 脈感測裝置,係可用來判斷不同方向之生 如申請專利範圍第 的生物辨識系統, 1項所述之一種基於生物特徵輸入順序 其中該資訊處理频輸出是否通過比對 11 6. 201125339 之訊息同時,更可輪出隱含指令或動作。 ^申明專利圍第6項所述之—種基於生物特徵輸入順序 缸^物辨减系統’其中該貧訊處理模組輸出之隱含指令或 動作為通知警政單位。 8.種基於生物特徵輸入順序的生物辨識方法,包含: 二:::測器接收使用者依據特定先後順訊輸入之 步酈 向性之生物特徵組成之序列資料; :驟經由資訊處理模組於資料庫中掏取之生物特徵資 ^與感測器接收之生物特徵進行辨識及比對資料; 列斷是否符合使用者之生物特徵及其所組成之序 •,:物特徵及其組成序列則輸出通過比對的訊 &quot; '·Ό束机私,若不符合則接續步驟四; 步驟四:判斷是否為隱含指令或動作, 作則輸出比對通過的訊自或 紅、3才曰7或動 個表示求救訊心政;Γ 息’並同時輸出一 或動作則心;:早位’並結束流程;若非隱含指令 步驟五:輸出比對不通過的訊息,並結束 .如申請專利範圍第8項所述 &quot;L 的生物辨識方法,1中$牛驟—種,於生物特徵輸入順序 測單元,1俜由t 之感測器更包含-方向感 裝置所组成:、可;紋感測裝置或滑動式指靜脈感測 的生物辨識方法,^^ 土於生物特徵輸入順序 紋、視網膜、虹膜、聲;;、簽名徵^為指紋、掌型、掌 生物特徵的型式。 β &amp;及其他可代表人類 12The binary processing module is configured to access the data in the database 10, and to compare the biological characteristics received by the sensor and the sequence data formed by the sensor, and output an implicit instruction or action.疋 疋 No 2 Hi patent 辄 第 第 第 第 基于 基于 基于 基于 基于 基于 基于 基于 基于 基于 基于 基于 Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Hi Other types that represent human biometrics. 3 2:=:=:=! The order of the two inferior input: = the data type of the digital password is converted into 41 = column data, and the converted data is stored in the data identification system of the data: characteristic loss Demand, set the phase of comparison = according to different safety: the above-mentioned biometric input sequence and slide detector further include a sliding fingerprint sensing feature pulse sensing device, which can be used Judging the different directions of life, such as the biometric identification system of the patent application scope, one of the ones based on the biometric input sequence, in which the information processing frequency output is passed through the comparison 11 6. 201125339, the rounding implied Instruction or action. ^Declared as described in Item 6 of the patent, based on the biometric input sequence, the cylinder system discriminating system', in which the implicit command output of the poor processing module is used as a notification to the police unit. 8. A biometric identification method based on a biometric input sequence, comprising: a second::: a detector receives a sequence data of a biometric characteristic of a stepwise input of a user according to a specific sequence; The biometrics captured in the database and the biometric features received by the sensor are used to identify and compare the data; whether the breaks conform to the biometric characteristics of the user and the sequence formed by the user, and: the characteristics of the objects and their constituent sequences Then the output is passed through the comparison message &quot; '·Ό 机 私 , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , ,曰7 or move to indicate the heart of the message; Γ ' and simultaneously output one or action heart;: early 'end and end the process; if not implied instruction step five: output the message that does not pass the comparison, and end. The biometric identification method described in item 8 of the patent application scope, 1 in the case of the bio-character input sequence measuring unit, and 1 in the sensor of the t-direction sensing device: Can Measuring means or sliding finger vein biometric authentication method sensed ^^ soil in order biometric input pattern, retina, iris, voice ;; ^ characterized signature fingerprint, the palm, the palm pattern of biometric. β &amp; and others can represent humans 12
TW99100045A 2010-01-05 2010-01-05 Biometrics Recognition System and Method Based on Biometric Input Order TWI433522B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
TW99100045A TWI433522B (en) 2010-01-05 2010-01-05 Biometrics Recognition System and Method Based on Biometric Input Order

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
TW99100045A TWI433522B (en) 2010-01-05 2010-01-05 Biometrics Recognition System and Method Based on Biometric Input Order

Publications (2)

Publication Number Publication Date
TW201125339A true TW201125339A (en) 2011-07-16
TWI433522B TWI433522B (en) 2014-04-01

Family

ID=45047403

Family Applications (1)

Application Number Title Priority Date Filing Date
TW99100045A TWI433522B (en) 2010-01-05 2010-01-05 Biometrics Recognition System and Method Based on Biometric Input Order

Country Status (1)

Country Link
TW (1) TWI433522B (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI514183B (en) * 2013-06-08 2015-12-21 Apple Inc Using biometric verification to grant access to redacted content

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
TWI514183B (en) * 2013-06-08 2015-12-21 Apple Inc Using biometric verification to grant access to redacted content
US10289852B2 (en) 2013-06-08 2019-05-14 Apple Inc. Using biometric verification to grant access to redacted content
US10552617B2 (en) 2013-06-08 2020-02-04 Apple Inc. Using biometric verification to grant access to redacted content

Also Published As

Publication number Publication date
TWI433522B (en) 2014-04-01

Similar Documents

Publication Publication Date Title
CN111161793B (en) Prediction method of N6-methyladenosine modification site in RNA based on stacking integration
Sero et al. Facial recognition from DNA using face-to-DNA classifiers
AlDuwaile et al. Using convolutional neural network and a single heartbeat for ECG biometric recognition
EP3189779B1 (en) Electrocardiogram (ecg) authentication method and apparatus
Pei et al. Modeling time series similarity with siamese recurrent networks
CN112800998A (en) Multi-mode emotion recognition method and system integrating attention mechanism and DMCCA
WO2013051019A1 (en) Evolved biometric system with enhanced feature and method for the same
Bektaş et al. Machine learning based performance development for diagnosis of breast cancer
CN109508658A (en) A kind of multi-biological characteristic joint recognition methods and device
CN111149104A (en) Apparatus, method and computer program product for biometric identification
Ivanciu et al. An ECG-based authentication system using Siamese neural networks
Said et al. Biometrics verification modality using multi-channel sEMG wearable bracelet
Kokal et al. Deep learning and machine learning, better together than apart: A review on biometrics mobile authentication
WO2019079490A1 (en) Probabilistic modeling to match patients to clinical trials
Agrawal et al. ElectroCardioGram (ECG)-based user authentication using deep learning algorithms
Aleidan et al. Biometric-based human identification using ensemble-based technique and ECG signals
Jhansi et al. Improved Accuracy in Speech Recognition System for Detection of COVID-19 using Support Vector Machine and Comparing with Convolution Neural Network Algorithm
Zhao et al. Multiscale global prompt transformer for EEG-based driver fatigue recognition
Shekhawat et al. A novel approach for user authentication using keystroke dynamics
TW201125339A (en) Biological recognition system and method based on input order of biological feature.
Ouadjer et al. Feature importance evaluation of smartphone touch gestures for biometric authentication
Hammad et al. Deep cancelable multibiometric finger vein and fingerprint authentication with non-negative matrix factorization
Ugail Deep learning in visual computing: Explanations and examples
Al-Hussein et al. Employing deoxyribonucleic acid (DNA) for personal verification
Govindarajan et al. Multi-modal biometric authentication: Leveraging shared layer architectures for enhanced security

Legal Events

Date Code Title Description
MM4A Annulment or lapse of patent due to non-payment of fees