TWI459309B - System and method for identifying irises - Google Patents
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Description
本發明涉及一種身份識別系統及方法,特別涉及一種利用虹膜識別用戶身份的系統及方法。 The present invention relates to an identification system and method, and more particularly to a system and method for identifying a user identity using an iris.
隨著社會的發展,身份識別的重要性正日益顯現,而傳統的身份識別方式由於其固有的局限性已經遠遠不能滿足要求,鑰匙、卡片和身份證等容易丟失和偽造,密碼則容易遺忘,更為嚴重的是這些傳統的身份識別方式無法區分真正的擁有者和取得身份標誌物的冒充者,一旦他人獲得了這些身份標誌物,就可以享有與擁有者相同的權力。 With the development of society, the importance of identity recognition is becoming more and more obvious, and the traditional identification method is far from satisfactory due to its inherent limitations. Keys, cards and ID cards are easy to be lost and forged, and passwords are easy to forget. What is more serious is that these traditional methods of identification cannot distinguish between true owners and impostors who obtain identity markers. Once others have obtained these identity markers, they can enjoy the same rights as owners.
近年來,基於生物特徵的識別技術應運而生,例如,指紋識別方式。然而,由於指紋容易被破壞,因而也具有不穩定性。 In recent years, biometric-based recognition technology has emerged, for example, fingerprint recognition. However, since the fingerprint is easily destroyed, it is also unstable.
鑒於以上內容,有必要提供一種虹膜識別系統及方法,其能利用虹膜的生物特性增強身份識別的精確性及穩定性。 In view of the above, it is necessary to provide an iris recognition system and method that can enhance the accuracy and stability of identity recognition by utilizing the biological characteristics of the iris.
一種虹膜識別系統,安裝於電子裝置中,所述的電子裝置包括相機模組及記憶體,所述的記憶體中儲存有作為識別碼的各用戶的原始虹膜的特徵點的特徵值,該系統包括:獲取模組,用於令所述的相機模組拍攝用戶的虹膜,並獲取相應的認證虹膜圖像;處理模組,用於對所獲取的認證虹膜圖像進行處理;虹膜特徵提取 模組,用於在處理後的認證虹膜圖像中提取認證虹膜的特徵點,並計算所提取的認證虹膜各特徵點的特徵值;及比對模組,用於比對所提取的認證虹膜的特徵點的特徵值是否與記憶體中的識別碼相符,並在所提取的認證虹膜的特徵點的特徵值與記憶體中的識別碼相符時確認該用戶通過身份識別。 An iris recognition system is installed in an electronic device, the electronic device includes a camera module and a memory, and the memory stores a feature value of a feature point of an original iris of each user as an identification code, the system The method includes: acquiring a module, wherein the camera module captures a user's iris and acquires a corresponding certified iris image; and the processing module is configured to process the acquired authentication iris image; the iris feature extraction a module for extracting feature points of the certified iris in the processed certified iris image, and calculating feature values of the extracted feature points of the certified iris; and a comparison module for comparing the extracted authentication irises Whether the feature value of the feature point matches the identification code in the memory, and confirms that the user is identified by the identity when the feature value of the extracted feature point of the authentication iris matches the identification code in the memory.
一種虹膜識別方法,應用於電子裝置中,所述的電子裝置包括相機模組及記憶體,該方法包括如下步驟:將各用戶的原始虹膜的特徵點的特徵值儲存至所述的記憶體中;令所述的相機模組拍攝用戶的虹膜,並獲取相應的認證虹膜圖像;對所獲取的認證虹膜圖像進行處理;在處理後的認證虹膜圖像中提取認證虹膜的特徵點,並計算所提取的認證虹膜各特徵點的特徵值;比對所提取的認證虹膜的特徵點的特徵值是否與記憶體中的識別碼相符;及若所提取的認證虹膜的特徵點的特徵值與記憶體中的識別碼相符,則確認該用戶通過身份識別。 An iris recognition method is applied to an electronic device, the electronic device comprising a camera module and a memory, the method comprising the steps of: storing feature values of feature points of each user's original iris into the memory The camera module is configured to capture a user's iris, and obtain a corresponding certified iris image; process the acquired authentication iris image; extract a feature point of the certified iris in the processed certified iris image, and Calculating a feature value of each feature point of the extracted authentication iris; comparing whether the feature value of the extracted feature point of the authentication iris matches the identification code in the memory; and if the feature value of the extracted feature point of the authentication iris is If the identification code in the memory matches, the user is confirmed to be identified.
相較於習知技術,所述的虹膜識別系統及方法可利用虹膜的生物特性(例如,虹膜的唯一性、穩定性等)增強身份識別的精確性及穩定性。 Compared with the prior art, the iris recognition system and method can utilize the biological characteristics of the iris (for example, the uniqueness, stability, etc. of the iris) to enhance the accuracy and stability of the identification.
1‧‧‧電子裝置 1‧‧‧Electronic device
10‧‧‧相機模組 10‧‧‧ camera module
12‧‧‧處理器 12‧‧‧ Processor
14‧‧‧記憶體 14‧‧‧ memory
2‧‧‧虹膜識別系統 2‧‧‧Iris Recognition System
20‧‧‧獲取模組 20‧‧‧Getting module
22‧‧‧處理模組 22‧‧‧Processing module
24‧‧‧特徵提取模組 24‧‧‧Feature Extraction Module
26‧‧‧儲存模組 26‧‧‧Storage module
28‧‧‧比對模組 28‧‧‧ Alignment module
5‧‧‧虹膜 5‧‧‧ iris
6‧‧‧隱窩 6‧‧‧ crypt
7‧‧‧瞳孔 7‧‧‧瞳孔
圖1是本發明虹膜識別系統的較佳實施方式的運用環境及功能模組圖。 1 is a diagram showing an operating environment and a functional module of a preferred embodiment of the iris recognition system of the present invention.
圖2是本發明虹膜識別方法較佳實施方式的流程圖。 2 is a flow chart of a preferred embodiment of the iris recognition method of the present invention.
圖3是本發明虹膜識別系統的虹膜結構示意圖。 3 is a schematic view showing the structure of an iris of the iris recognition system of the present invention.
圖4是本發明虹膜識別系統的虹膜特徵點座標圖。 4 is a graph showing the coordinates of an iris feature point of the iris recognition system of the present invention.
圖5是本發明虹膜識別系統的虹膜特徵點間的相對位置的示意圖。 Figure 5 is a schematic illustration of the relative positions of iris feature points of the iris recognition system of the present invention.
如圖1所示,是本發明虹膜識別系統較佳實施方式的運用環境及功能模組圖。所述的虹膜識別系統2安裝並運行在電子裝置1中。所述的電子裝置1可以是手機、PDA(personal digital assistant,個人數位助理)、掌上遊戲機、數碼相機或掌上電腦等可擕式電子裝置,也可以是固定的門禁系統。 FIG. 1 is a diagram showing an operating environment and a functional module of a preferred embodiment of the iris recognition system of the present invention. The iris recognition system 2 is installed and operated in the electronic device 1. The electronic device 1 can be a portable electronic device such as a mobile phone, a PDA (personal digital assistant), a handheld game console, a digital camera or a palmtop computer, or a fixed access control system.
所述的電子裝置1還包括相機模組10、處理器12以及記憶體14。所述的相機模組10通常包括圖像感測器、鏡頭及鏡座,也可包括其他元件或裝置。該圖像感測器可以是CCD(Charge Coupled Device,電荷藕合器件),或者是CMOS(Complementary Metal-Oxide-Semiconductor Transistor,互補型金屬氧化物半導體)。在本較佳實施方式中,所述的相機模組10用於拍攝用戶的虹膜進行識別。所述的處理器12用於執行所述虹膜識別系統2以及所述電子裝置1內的其他應用程式,例如:作業系統等。 The electronic device 1 further includes a camera module 10, a processor 12, and a memory 14. The camera module 10 generally includes an image sensor, a lens and a lens holder, and may also include other components or devices. The image sensor may be a CCD (Charge Coupled Device) or a CMOS (Complementary Metal-Oxide-Semiconductor Transistor). In the preferred embodiment, the camera module 10 is used to capture the iris of the user for recognition. The processor 12 is configured to execute the iris recognition system 2 and other applications in the electronic device 1, such as an operating system.
所述的記憶體14可以內置於所述電子裝置1本身的記憶體,還可以是外部儲存卡,如SM卡(Smart Media Card,智慧媒體卡)、SD卡(Secure Digital Card,安全數位卡)等。所述的記憶體14用於儲存各類資料,包括利用所述相機模組10拍攝的虹膜的圖像、利用所述的虹膜識別系統2對虹膜的圖像處理後所得到的資料等。 The memory 14 can be built in the memory of the electronic device 1 itself, or can be an external storage card, such as a SIM card (Smart Media Card), an SD card (Secure Digital Card). Wait. The memory 14 is used for storing various types of materials, including an image of an iris photographed by the camera module 10, data obtained by processing the image of the iris by the iris recognition system 2, and the like.
所述的虹膜識別系統2主要包括獲取模組20、處理模組22、特徵提取模組24、儲存模組26以及比對模組28。 The iris recognition system 2 mainly includes an acquisition module 20, a processing module 22, a feature extraction module 24, a storage module 26, and a comparison module 28.
在通過識別用戶虹膜以驗證用戶身份之前,需要先建立一個儲存有各用戶的原始虹膜圖像及相關資料的虹膜特徵資料庫,以便在後續的識別過程中進行比對從而驗證用戶身份。 Before identifying the user's iris to verify the identity of the user, it is necessary to first establish an iris feature database storing the original iris image and related data of each user, so as to perform the comparison in the subsequent identification process to verify the identity of the user.
所述的獲取模組20與所述的相機模組10相連,用於令所述的相機模組10拍攝用戶的虹膜,並獲取相應的原始虹膜圖像。 The acquiring module 20 is connected to the camera module 10 for causing the camera module 10 to capture a user's iris and acquire a corresponding original iris image.
所述的處理模組22,用於對所獲取的原始虹膜圖像進行處理,包括:將原始虹膜圖像由彩色變成黑白色;降低原始虹膜圖像的亮度;增加原始虹膜圖像的對比度。 The processing module 22 is configured to process the acquired original iris image, including: changing the original iris image from color to black and white; reducing the brightness of the original iris image; and increasing the contrast of the original iris image.
所述的特徵提取模組24,用於在處理後的原始虹膜圖像中提取原始虹膜的特徵點,並計算所提取的原始虹膜各特徵點的特徵值。其中,所述的原始虹膜的特徵點包括主特徵點與次特徵點,所述的特徵點的特徵值包括,但不限於,特徵點數量、特徵點座標、特徵點的形狀及特徵點距離。 The feature extraction module 24 is configured to extract feature points of the original iris in the processed original iris image, and calculate feature values of the extracted feature points of the original iris. The feature points of the original iris include a primary feature point and a secondary feature point, and the feature values of the feature point include, but are not limited to, the number of feature points, the feature point coordinates, the shape of the feature points, and the feature point distance.
如圖3所示為虹膜結構的簡單示意圖,其中,虹膜5是位於眼睛黑色瞳孔7和白色鞏膜(圖中未示出)之間的圓環狀部分,總體上呈現一種由裏到外的放射狀結構,由相當複雜的纖維組織構成,包含有很多相互交錯的類似於斑點、細絲、冠狀、條紋、隱窩等細節特徵,在本較佳實施方式中,以隱窩為特徵點,故圖3中僅繪出部分隱窩6以說明本較佳實施方式,而其餘特徵如斑點、細絲、冠狀、條紋等特徵未作繪製。 Figure 3 is a simplified schematic view of the iris structure, wherein the iris 5 is an annular portion between the black pupil 7 of the eye and the white sclera (not shown), generally showing a radiation from the inside out. The structure is composed of a relatively complicated fibrous structure, and contains many intertwined details such as spots, filaments, crowns, stripes, crypts, etc. In the preferred embodiment, the crypt is characterized. Only a portion of the crypt 6 is depicted in FIG. 3 to illustrate the preferred embodiment, while other features such as spots, filaments, crowns, stripes, and the like are not drawn.
在本較佳實施方式中,所述的原始虹膜特徵點包括主特徵點與次特徵點,其中,原始虹膜中面積最大的一個隱窩作為主特徵點,如圖4、圖5中所示的方框部分為主特徵點,而原始虹膜中其餘的 隱窩作為次特徵點,如圖4、圖5中所示的圓圈部分為次特徵點。在圖4與圖5的示意圖中,原始虹膜的主特徵點的數量為1,次特徵點的數量為9。 In the preferred embodiment, the original iris feature points include a primary feature point and a secondary feature point, wherein a crypt having the largest area in the original iris is used as the main feature point, as shown in FIG. 4 and FIG. The box part is the main feature point, while the rest of the original iris The crypt is used as a sub-feature point, and the circle portion shown in FIGS. 4 and 5 is a sub-feature point. In the schematic diagrams of FIGS. 4 and 5, the number of main feature points of the original iris is 1, and the number of sub-feature points is 9.
所述的特徵提取模組24計算原始虹膜各特徵點的座標的方法如圖4所示。提取原始虹膜的主特徵點和次特徵點後,在各主特徵點和次特徵點上建立座標圖,然後根據該座標圖可以計算出原始虹膜各特徵點的座標。 The method for the feature extraction module 24 to calculate the coordinates of each feature point of the original iris is as shown in FIG. 4 . After extracting the main feature points and the sub-feature points of the original iris, a coordinate map is established on each of the main feature points and the secondary feature points, and then the coordinates of the feature points of the original iris can be calculated according to the coordinate map.
所述的特徵提取模組24計算原始虹膜各特徵點的形狀如圖5所示,將每個特徵點與其距離最近的特徵點相連,連接後得到圖形就是原始虹膜的特徵點的形狀。此外,所述的特徵提取模組24還可根據所計算出的各特徵點的座標,計算出各特徵點之間的距離。 The feature extraction module 24 calculates the shape of each feature point of the original iris as shown in FIG. 5, and connects each feature point with the feature point closest to the distance, and the figure is connected to obtain the shape of the feature point of the original iris. In addition, the feature extraction module 24 may further calculate a distance between each feature point according to the calculated coordinates of each feature point.
所述的儲存模組26,用於將特徵提取模組24所提取的原始虹膜各特徵點以及所計算的各特徵點的特徵值儲存至記憶體14內的虹膜特徵資料庫,作為電子裝置1識別各用戶身份的識別碼。所述虹膜特徵資料庫包括一組或者多組識別碼以識別一個或者多個用戶的身份。 The storage module 26 is configured to store the feature points of the original iris extracted by the feature extraction module 24 and the calculated feature values of the feature points into the iris feature database in the memory 14 as the electronic device 1 An identification code that identifies each user's identity. The iris feature database includes one or more sets of identification codes to identify the identity of one or more users.
當需要識別用戶身份時,所述的獲取模組20還用於令所述的相機模組10拍攝用戶的虹膜(為便於描述,下文將待識別身份的用戶的虹膜統稱為“認證虹膜”),並獲取相應的認證虹膜圖像。 When the user identity needs to be recognized, the acquiring module 20 is further configured to enable the camera module 10 to capture the iris of the user (for convenience of description, the iris of the user to be identified is collectively referred to as “authentic iris”). And get the corresponding certified iris image.
所述的處理模組22,還用於對所獲取的認證虹膜圖像進行處理,包括:將認證虹膜圖像由彩色變成黑白色;降低認證虹膜圖像的亮度;增加認證虹膜圖像的對比度。 The processing module 22 is further configured to process the acquired authentication iris image, including: changing the authentication iris image from color to black and white; reducing the brightness of the certified iris image; and increasing the contrast of the certified iris image. .
所述的特徵提取模組24,用於在處理後的認證虹膜圖像中提取認 證虹膜的特徵點,並計算所提取的認證虹膜各特徵點的特徵值。其中,所述的認證虹膜的特徵點的提取方法與原始虹膜特徵點的提取方法相同,所述的認證虹膜的特徵點的特徵值的計算方法與原始虹膜特徵點的特徵值的計算方法相同。 The feature extraction module 24 is configured to extract recognition from the processed authentication iris image The feature points of the iris are verified, and the feature values of the extracted feature points of the certified iris are calculated. The method for extracting the feature points of the authentication iris is the same as the method for extracting the feature points of the original iris, and the method for calculating the feature values of the feature points of the authentication iris is the same as the method for calculating the feature values of the original iris feature points.
所述的比對模組28,用於比對所述的認證虹膜特徵點的特徵值是否與記憶體14中的虹膜特徵資料庫的識別碼相符。若所述的虹膜特徵資料庫包括多組識別碼,則判斷所述的認證虹膜特徵點的特徵值是否與其中一組識別碼相符。 The comparison module 28 is configured to compare whether the feature value of the authentication iris feature point matches the identification code of the iris feature database in the memory 14. If the iris feature database includes multiple sets of identification codes, it is determined whether the feature values of the certified iris feature points match one of the set of identification codes.
其中,比對標準可以根據特徵值的各參數進行設置,例如,比對標準包括,但不限於如下細項:細項一,當認證虹膜的主特徵點與作為識別碼的其中一個原始虹膜的主特徵點的座標相同,則可確認所述認證虹膜的主特徵點與該原始虹膜的主特徵點相同;細項二,當認證虹膜的次特徵點的數量達到該原始虹膜的次特徵點數量的六成以上,則可認為認證虹膜與該原始虹膜在次特徵點的數量上相符;細項三,當認證虹膜的各次特徵點的座標與該原始虹膜的各次特徵點的座標有六成以上相同,則可認為認證虹膜與該原始虹膜在次特徵點的座標上相符。上述比對標準的細項可根據實際要求進行設置、新增、減少或者修改。 Wherein, the comparison criterion may be set according to each parameter of the feature value. For example, the comparison criterion includes, but is not limited to, the following item: item 1 when the primary feature point of the iris is authenticated and one of the original irises as the identification code If the coordinates of the main feature points are the same, it can be confirmed that the main feature points of the authentication iris are the same as the main feature points of the original iris; in the second item, when the number of sub-feature points of the authentication iris reaches the number of sub-feature points of the original iris If it is more than 60%, it can be considered that the certified iris matches the number of sub-feature points of the original iris; in the third item, when the coordinates of the characteristic points of the certified iris and the coordinates of the feature points of the original iris are six If the same is the same, it can be considered that the authentication iris matches the original iris on the coordinates of the sub-feature points. The details of the above comparison criteria can be set, added, reduced or modified according to actual requirements.
所述的比對模組28,還用於當所述的認證虹膜的特徵點的特徵值滿足比對標準的各細項時,確認該認證虹膜的特徵點的特徵值與識別碼相符,並確認該用戶通過身份識別。 The comparison module 28 is further configured to: when the feature value of the feature point of the authentication iris satisfies each item of the comparison standard, confirm that the feature value of the feature point of the authentication iris matches the identification code, and Confirm that the user is identified.
如圖2所示,是本發明虹膜識別方法較佳實施方式的流程圖。首先,步驟S2,所述的獲取模組20令所述的相機模組10拍攝多個用戶的虹膜,並獲取相應的原始虹膜圖像。 2 is a flow chart of a preferred embodiment of the iris recognition method of the present invention. First, in step S2, the acquisition module 20 causes the camera module 10 to capture irises of a plurality of users and acquire corresponding original iris images.
步驟S4,所述的處理模組22對所獲取的原始虹膜圖像進行處理,包括:將原始虹膜圖像由彩色變成黑白色;降低原始虹膜圖像的亮度;增加原始虹膜圖像的對比度。 In step S4, the processing module 22 processes the acquired original iris image, including: changing the original iris image from color to black and white; reducing the brightness of the original iris image; and increasing the contrast of the original iris image.
步驟S6,所述的特徵提取模組24在處理後的原始虹膜圖像中提取原始虹膜的特徵點,並計算所提取的原始虹膜各特徵點的特徵值。其中,所述的原始虹膜的特徵點包括主特徵點與次特徵點,所述的特徵點的特徵值包括,但不限於,特徵點數量、特徵點座標、特徵點的形狀及特徵點距離。 In step S6, the feature extraction module 24 extracts feature points of the original iris in the processed original iris image, and calculates feature values of the extracted feature points of the original iris. The feature points of the original iris include a primary feature point and a secondary feature point, and the feature values of the feature point include, but are not limited to, the number of feature points, the feature point coordinates, the shape of the feature points, and the feature point distance.
在本較佳實施方式中,所述的原始虹膜特徵點包括主特徵點與次特徵點,其中,原始虹膜中面積最大的一個隱窩作為主特徵點,如圖4、圖5中所示的方框部分為主特徵點,而原始虹膜中其餘的隱窩作為次特徵點,如圖4、圖5中所示的圓圈部分為次特徵點。 In the preferred embodiment, the original iris feature points include a primary feature point and a secondary feature point, wherein a crypt having the largest area in the original iris is used as the main feature point, as shown in FIG. 4 and FIG. The box part is the main feature point, and the remaining crypts in the original iris are used as the sub-feature points, and the circle parts shown in FIG. 4 and FIG. 5 are the sub-feature points.
步驟S8,所述的儲存模組26將所提取的原始虹膜各特徵點以及所計算的各特徵點的特徵值儲存至記憶體14內,作為電子裝置1識別各用戶身份的識別碼。 In step S8, the storage module 26 stores the extracted feature points of the original iris and the calculated feature values of the feature points into the memory 14, as the identification code for identifying the identity of each user by the electronic device 1.
步驟S10,所述的獲取模組20令所述的相機模組10拍攝待識別身份的用戶的虹膜,並獲取相應的認證虹膜圖像。 In step S10, the acquiring module 20 causes the camera module 10 to capture the iris of the user to be identified, and acquire a corresponding authentication iris image.
步驟S12,所述的處理模組22對所獲取的認證虹膜圖像進行處理,包括:將認證虹膜圖像由彩色變成黑白色;降低認證虹膜圖像的亮度;增加認證虹膜圖像的對比度。 Step S12, the processing module 22 processes the acquired authentication iris image, including: changing the authentication iris image from color to black and white; reducing the brightness of the authentication iris image; and increasing the contrast of the authentication iris image.
步驟S14,所述的特徵提取模組24在處理後的認證虹膜圖像中提取認證虹膜的特徵點,並計算所提取的認證虹膜各特徵點的特徵值。其中,所述的認證虹膜的特徵點的提取方法與原始虹膜特徵 點的提取方法相同,所述的認證虹膜的特徵點的特徵值的計算方法與原始虹膜特徵點的特徵值的計算方法相同。 In step S14, the feature extraction module 24 extracts feature points of the authentication iris in the processed authentication iris image, and calculates feature values of the extracted feature points of the authentication iris. Wherein, the method for extracting characteristic points of the certified iris and the original iris feature The extraction method of the points is the same, and the calculation method of the feature values of the feature points of the authentication iris is the same as the calculation method of the feature values of the original iris feature points.
步驟S16,所述的比對模組28比對所述的認證虹膜特徵點的特徵值是否與記憶體14中的虹膜特徵資料庫的一組識別碼相符。其中,比對標準可以根據特徵值的各參數進行設置。若所述的認證虹膜特徵點的特徵值與記憶體14中的識別碼相符,則執行步驟S18,否則,結束本流程。 In step S16, the comparison module 28 compares whether the feature value of the certified iris feature point matches a set of identification codes of the iris feature database in the memory 14. Wherein, the comparison criterion can be set according to each parameter of the feature value. If the feature value of the authentication iris feature point matches the identification code in the memory 14, step S18 is performed; otherwise, the flow is ended.
步驟S18,所述的比對模組28確認該用戶通過身份識別,並結束流程。 In step S18, the comparison module 28 confirms that the user is identified by the identity and ends the process.
綜上所述,本發明符合發明專利要件,爰依法提出專利申請。惟,以上所述者僅為本發明之較佳實施方式,本發明之範圍並不以上述實施方式為限,舉凡熟悉本案技藝之人士爰依本發明之精神所作之等效修飾或變化,皆應涵蓋於以下申請專利範圍內。 In summary, the present invention complies with the requirements of the invention patent and submits a patent application according to law. However, the above description is only a preferred embodiment of the present invention, and the scope of the present invention is not limited to the above-described embodiments, and equivalent modifications or variations made by those skilled in the art in accordance with the spirit of the present invention are It should be covered by the following patent application.
1‧‧‧電子裝置 1‧‧‧Electronic device
10‧‧‧相機模組 10‧‧‧ camera module
12‧‧‧處理器 12‧‧‧ Processor
14‧‧‧記憶體 14‧‧‧ memory
2‧‧‧虹膜識別系統 2‧‧‧Iris Recognition System
20‧‧‧獲取模組 20‧‧‧Getting module
22‧‧‧處理模組 22‧‧‧Processing module
24‧‧‧特徵提取模組 24‧‧‧Feature Extraction Module
26‧‧‧儲存模組 26‧‧‧Storage module
28‧‧‧比對模組 28‧‧‧ Alignment module
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