This application claims priority of Taiwanese Application No. 099112865, filed on Apr. 23, 2010.
1. Field of the Invention
The invention relates to an identification managing method and system, more particularly to a method and a system for determining whether a to-be-identified individual is a registered individual.
2. Description of the Related Art
Most access managing systems, security systems, and banking systems use magnetic card, IC card (contact IC card or non-contact IC card), or request an input of a key in order to confirm the identity of users and authorize access after the identity is confirmed. However, non-contact IC cards are relatively costly.
In addition, a lot of products are attached with destructible vinyl labels, laser security labels, or RFID tags to discourage or prevent counterfeit. However, these labels and tags may be forged.
Therefore, the object of the present invention is to provide an identification method and system that can overcome the aforesaid drawbacks of the prior art.
According to one aspect of the present invention, there is provided a method for determining whether a to-be-identified individual is a registered individual that includes the steps of:
a) providing the registered individual with a non-biometric target, wherein the non-biometric target is provided with a to-be-detected surface capable of scattering coherent light that is to be detected by an image sensor so as to obtain a speckle image unique to the non-biometric target, and storing reference speckle image information corresponding to the speckle image associated with the non-biometric target in a database;
b) obtaining speckle image information associated with the to-be-identified individual;
c) determining whether the speckle image information of the to-be-identified individual has a match with the reference speckle image information stored in the database; and
d) determining the to-be-identified individual as the registered individual when it is determined in step c) that there is a match, and determining the to-be-identified individual as a non-registered individual when otherwise.
According to another aspect of the present invention, there is provided a method for determining whether a to-be-identified article is a registered article that includes the steps of:
a) storing reference speckle image information associated with the registered article in a database, wherein the registered article is provided with a to-be-detected surface capable of scattering coherent light that is to be detected by an image sensor so as to obtain a speckle image unique to the registered article, the reference speckle image information associated with the registered article corresponding to the speckle image;
b) obtaining speckle image information associated with the to-be-identified article;
c) determining whether the speckle image information of the to-be-identified article has a match with the reference speckle image information associated with the registered article and stored in the database; and
d) determining the to-be-identified article as the registered article when it is determined in step c) that there is a match, and determining the to-be-identified article as a non-registered article when otherwise.
According to yet another aspect of the present invention, there is provided a system for determining whether a to-be-identified individual is a registered individual that includes a non-biometric target, a database, a speckle image capturing device and a processor. The non-biometric target is provided to the registered individual. The database contains reference speckle image information corresponding to a speckle image associated with and unique to the non-biometric target. The speckle image capturing device includes a light-emitting module capable of emitting coherent light toward a to-be-detected surface, and an image sensor capable of detecting coherent light scattered from the to-be-detected surface so as to obtain a speckle image. The processor is connected to the speckle image capturing device, is capable of accessing the database, and is operable in an identification mode. In the identification mode, the processor controls the speckle image capturing device to obtain speckle image information associated with the to-be-identified individual, determines whether the speckle image information of the to-be-identified individual has a match with the reference speckle image information stored in the database, and determines the to-be-identified individual as the registered individual when it is determined that there is a match, and as a non-registered individual when otherwise.
Other features and advantages of the present invention will become apparent in the following detailed description of the preferred embodiments with reference to the accompanying drawings, of which:
Before the present invention is described in greater detail, it should be noted that like elements are denoted by the same reference numerals throughout the disclosure.
With reference to
With further reference to
The speckle image capturing device 3 includes a light-emitting module 31, a first lens 32, a light restricting module 33, and an image sensor 34. The light-emitting module 31 is capable of emitting highly coherent light toward a to-be-detected surface 11, 71 of the to-be-registered target 1 or the to-be-identified target 7 through the first lens 32. The image sensor 34 is capable of detecting light scattered from the to-be-detected surface 11, 71 and propagating through the light restricting module 33 so as to obtain a speckle image. The light restricting module 33 includes a second lens 331, and front and rear apertures 332, 333 respectively disposed proximate to front and rear sides of the second lens 331 as defined by an optical path direction of the light. The rear aperture 333 is for diffracting the light scattered from the to-be-detected surface 11, 71 and creating an interference effect. Further details of the speckle image capturing device 3 of this embodiment may be found in U.S. Patent Application Publication No. 2007/0139659. However, it should be noted herein that implementation of the speckle image capturing device 3 is not limited to that disclosed herein or in U.S. Patent Application No. 2007/0139659.
The processor 4 is connected to the speckle image capturing device 3, is capable of accessing the database 5, and is operable in a registration mode and an identification mode.
In the registration mode, the processor 4 controls the speckle image capturing device 3 to obtain a speckle image of the to-be-detected surface 11 of the non-biometric target 1 associated with the registered individual upon receipt of the trigger signal from the target detector (not shown) informing the presence of the non-biometric target 1 at the specific position in the target input device 2, and stores the reference speckle image information corresponding to the speckle image thus obtained by the speckle image capturing device 3 in the database 5. Optionally, other data related to the registered individual may also be inputted into the database 5 during registration. Examples of the data include an ID number that is assigned to the registered individual, a photo of the registered individual if the registered individual is a person, a property serial number in the case where the registered individual is an article, etc. Multiple individuals may be registered into the system in this manner by repeating the speckle image capturing and storing, and data inputting steps.
After at least one entry of reference speckle image information is established in the database 5, the processor 4 may be operated in the identification mode. For simplicity of illustration, it is assumed hereinafter that only one individual is registered in the system such that there is only one entry of reference speckle image information in the database 5. In the identification mode, the processor 4 controls the speckle image capturing device 3 to obtain speckle image information associated with the to-be-identified individual upon receipt of the trigger signal informing the presence of the to-be-identified target 7 at the specific position in the target input device 2, determines whether the speckle image information associated with the to-be-identified individual has a match with the reference speckle image information stored in the database 5, and further determines the to-be-identified individual as the registered individual when it is determined that there is a match, and as a non-registered individual when otherwise.
In this embodiment, the manner in which the processor 4 determines whether there is a match is through correlation-based template matching, such as using cross correlation (CC) or normalized cross correlation (NCC). In particular, the processor 4 first determines whether a correlation coefficient between the speckle image information of the to-be-identified individual and the reference speckle image information stored in the database 5 exceeds a predetermined threshold value, and then determines that there is a match when the correlation coefficient exceeds the predetermined threshold value, and that there is no match when otherwise.
In one implementation, the processor 4 is further operable to extract at least one feature of the speckle image associated with the to-be-identified individual for performing image matching with the reference speckle image information stored in the database 5. The feature may be an edge, a corner, or a scale invariant feature transform (SIFT) point of the speckle image. The reference speckle image information stored in the database 5 may represent the speckle image associated with the non-biometric target 1, or may in the alternative represent at least one feature of the speckle image associated with the non-biometric target 1. The process of feature matching may involve performing a similarity check between feature points (e.g., by utilizing Euclidian distance), or may involve the use of correlation coefficients as described hereinabove.
The notification unit 6 is connected to the processor 4 for generating a notification as to result of whether the to-be-identified individual is the registered individual as determined by the processor 4. The notification unit 6 may include a display screen for visually displaying the result, and/or a speaker for audibly outputting the result, and/or a light indicator for notifying the result through blinking of light.
Alternatively, the system may further include an authorization control unit (not shown) that is connected to the processor 4 for executing an operation in accordance with the result of whether the to-be-identified individual is the registered individual as determined by the processor 4. An exemplary implementation of the system that includes the authorization control unit may be a door security system, where the authorization control unit unlocks an automatic door when the to-be-identified individual is determined to be the registered individual by the processor 4, and keeps the automatic door locked when otherwise. It should be noted herein that the notification unit 6 is optional when the system includes the authorization control unit.
It should be noted herein that even if all the non-biometric targets 1 that are respectively assigned to multiple registered individuals are manufactured using the same process with the same material by the same equipment, due to natural limitations in physical properties, there will never be identical to-be-detected surfaces 11 among these non-biometric targets 1 in terms of the speckle images obtained therefrom. In other words, every single one of the non-biometric targets 1 is unique and cannot be duplicated. In order to protect the to-be-detected surface 11 of the non-biometric target 1 from scratching so as to ensure that the speckle image associated therewith doe not change, it is preferable for the non-biometric target 1 to be made from an anti-abrasion material, or for the to-be-detected surface 11 to be one coated with a diamond-like thin film. Moreover, since the to-be-detected surface 11 has to be capable of scattering light, it is preferable for the to-be-detected surface 11 to be non-transparent and non-mirror-like. However, it should be noted herein that a translucent to-be-detected surface 11 may also work in other embodiments of the present invention.
Due to the uniqueness of the to-be-detected surface 11, the non-biometric target 1 may be used for security and identification purposes. In particular, the non-biometric target 1 may be mounted on one side of a substrate, such as a card body 9 shown in
Alternatively, as shown in
As shown in
The present invention may be used in standalone applications as described above (e.g., a security entrance system involving one automatic door), and may also be used in circuit-based applications as will be described hereinbelow.
In the event that the present invention is applied to a security system involving multiple automatic doors to a particular building, the system of this invention would include a single processor 4, a single database 5, a single authorization control unit (not shown), and multiple sets of the target input devices 2 and the speckle image capturing devices 3, each set being disposed adjacent to a corresponding automatic door, and being connected to the processor 4 over a wired cable, wirelessly, or over a network.
When a person (i.e., a to-be-identified individual) wishes to enter the building through a particular automatic door and puts a to-be-identified target 7 (shown in
Furthermore, in the event that the present invention is applied to a banking system, there may be one system that is dedicated for performing registration and that is located inside a particular branch office, and another system (or multiple other systems) that is dedicated for performing identification and that is incorporated into an ATM machine. In this case, only the system for performing registration includes the database 5, while the system for performing identification is capable of accessing the database 5 over a wired cable, wirelessly, or over a network. In addition, the determination of whether the to-be-identified individual is the registered individual may be performed by the processor 4 of the system for performing identification, or may be performed by the processor 4 of the system for performing registration, depending on the design choice. In this kind of applications, registration is performed in a first location, and identification is performed in a second location different from the first location.
With reference to
In step S1, the registered individual is provided with a non-biometric target 1, wherein the non-biometric target 1 is provided with a to-be-detected surface 11 capable of scattering coherent light that is to be detected by an image sensor 34 so as to obtain a speckle image unique to the non-biometric target 1, and reference speckle image information corresponding to the speckle image associated with the non-biometric target 1 is stored in a database 5.
In step S2, speckle image information associated with the to-be-identified individual is obtained.
In step S3, it is determined whether the speckle image information of the to-be-identified individual has a match with the reference speckle image information stored in the database 5.
In step S4, the to-be-identified individual is determined as the registered individual when it is determined in step S3 that there is a match, and the to-be-identified individual is determined as a non-registered individual when otherwise.
In step S5, a notification is generated as to result of the determination made in step S4. Alternatively, or additionally, an operation corresponding to the result of the determination made in step S4 is executed in step S5.
In one implementation of this invention, in step S1, the reference speckle image information stored in the database 5 represents at least one feature of the speckle image associated with the non-biometric target 1, and in step S2, the speckle image information represents at least one feature of a speckle image associated with the to-be-identified individual.
With reference to
In step S1′, reference speckle image information associated with the registered article is stored in a database 5 (shown in
In step S2′, speckle image information associated with the to-be-identified article is obtained.
In step S3′, it is determined whether the speckle image information of the to-be-identified article has a match with the reference speckle image information associated with the registered article and stored in the database 5.
In step S4′, the to-be-identified article is determined as the registered article when it is determined in step S3′ that there is a match, and the to-be-identified article is determined as a non-registered article when otherwise.
The second preferred embodiment may be implemented as an inventory registration system. However, the system infrastructure is not different from that disclosed in the first preferred embodiment.
In summary, the present invention has the following advantages and effects:
1. Due to natural limitations in physical properties, there will never be two items that can generate identical speckle images even if the items are manufactured using the same process with the same material by the same equipment. Therefore, the to-be-detected surface 11 of each non-biometric target 1 is unique and cannot be duplicated. Due to the uniqueness of the to-be-detected surface 11, the non-biometric target 1 may be used for security management and identification purposes.
2. The non-biometric target 1 is preferably made from an anti-abrasion material, and the to-be-detected surface 11 is preferably one coated with a diamond-like thin film such that the to-be-detected surface 11 of the non-biometric target 1 can be prevented from scratching and damage so as to ensure that the speckle image associated therewith does not change.
3. When the non-biometric target 1 is attached to an article, it can serve as a unique anti-counterfeit identification tag, such that forgery of the article can be prevented.
While the present invention has been described in connection with what are considered the most practical and preferred embodiments, it is understood that this invention is not limited to the disclosed embodiments but is intended to cover various arrangements included within the spirit and scope of the broadest interpretation so as to encompass all such modifications and equivalent arrangements.
Number | Date | Country | Kind |
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099112865 | Apr 2010 | TW | national |