VEHICLE MONITORING SYSTEM AND METHOD THEREOF

    公开(公告)号:MY192556A

    公开(公告)日:2022-08-28

    申请号:MYPI2014700745

    申请日:2014-03-27

    Applicant: MIMOS BERHAD

    Abstract: A vehicle monitoring system (100) which comprises: a plurality of cameras (101), identifiers and locations of which being stored in a database (102), disposed at different locations in an area under monitoring for acquiring videos of traffic; a module (103) for extracting, from the videos, snapshots of a vehicle; a module (104) for recognising travelling direction of the vehicle, and detecting violation of the travelling direction; a module (105) for mapping travelling path of the vehicle; and a module (106) for visualising track of the vehicle by displaying the snapshots of the vehicle sequentially according to time the vehicle passes each location where the camera acquires the videos from, and rendering visual representation which denotes vehicle location, travelling direction and path, and status of violation of travelling direction and its occurring time. A method (200) for monitoring vehicle is also disclosed.

    SYSTEM AND METHOD TO IDENTIFY IDENTIFICATION PLATE CHARACTERS USING BACKGROUND ESTIMATION BINARIZATION

    公开(公告)号:MY185612A

    公开(公告)日:2021-05-25

    申请号:MYPI2015704840

    申请日:2015-12-30

    Applicant: MIMOS BERHAD

    Abstract: The present disclosure relates to the field of automated identification plate (306) recognition, and more particularly relates to automated identification plate (306) recognition based on background estimation binarization (210). In an aspect, the present disclosure relates to a system for detecting and recognizing a vehicle identification plate, wherein system includes a plate detection module (202) configured to detect location of the plate; a plate segmentation module (204) that configured to segment characters in the detected plate into respective individual entities; a plate recognition module (206) configured to recognize the individual entities of the detected plate as alphabets and/or numerals; and a plate post-analyzer module (208) configured to determine full text of the detected plate, wherein the characters are segmented by the plate segmentation module (204) by applying background estimation binarization (210) in order to obtain the respective individual entities.

    SURVEILLANCE SYSTEM AND METHOD TO GENERATE CONTROL PARAMETERS

    公开(公告)号:MY173615A

    公开(公告)日:2020-02-11

    申请号:MYPI20095016

    申请日:2009-11-25

    Applicant: MIMOS BERHAD

    Abstract: The invention utilizes an image (24) obtained by a fish eye lens camera (20) to cover a large plan view of an area. The camera (20) is usually mounted below a horizontal plane to capture an image of 360 degrees (24) below the horizontal plane. A unit of fish eye lens camera (20) provides a larger coverage of an area which can only be achieved with several upright cameras. The image (24) acquired by fish eye lens camera (20) is analyzed to obtain pan, tilt and zoom controls. Control points (32) were previously analyzed to calibrate pan, tilt and zoom value of moving objects (30). The location of moving object (34) is compared with control points (32) to obtain a pan, tilt and zoom value (38) to be used by PTZ camera (22).

    A TERRAIN PROFILE DETERMINATION SYSTEM AND METHOD THEREOF

    公开(公告)号:MY172087A

    公开(公告)日:2019-11-13

    申请号:MYPI2012002383

    申请日:2012-05-29

    Applicant: MIMOS BERHAD

    Abstract: The present invention relates to a system for use in generating a 3D model of a terrain comprising an elevation data generation apparatus (100) for derivation of elevation data based on a series of circles of varying radius generated on the terrain by the apparatus (100) and a reference concentric circles data. Said elevation data generation apparatus (100) comprises an image-capturing device (202) coupled with a wide-angle lens (214), a rotary light-reflecting device (206) having a plurality of reflective surfaces (208) disposed thereon with different reflective angles relative to a fixed position of laser beam irradiating from a laser beam source, and a dual rotation mechanism configured to facilitate laser beams to be reflected on the terrain with different reflective angles and thereby producing the series of circles of varying radius based on the actual topographical characteristic of the terrain.

    SYSTEM AND METHOD OF OBJECT POSITIONING

    公开(公告)号:MY169546A

    公开(公告)日:2019-04-22

    申请号:MYPI20072139

    申请日:2007-11-30

    Applicant: MIMOS BERHAD

    Abstract: A system (10) and method to locate and verify the authorization of object's identity in a controlled area (14) by utilizing standalone RFID detectors located at every specific coordinates of the controlled area (14) which correspond to a control server (13) that generate system alert if unauthorized visitor enters forbidden area in the controlled area (14). The control server (13) of the system (10) determines the coordinates of the actual position of which the detected object (15) is located and computes the distance between the detected object (15) and RFID reader (12) for the object positioning.

    AN APPARATUS AND METHOD FOR ROAD ACCIDENT RISK REDUCTION

    公开(公告)号:MY167242A

    公开(公告)日:2018-08-14

    申请号:MYPI2010005907

    申请日:2010-12-10

    Applicant: MIMOS BERHAD

    Abstract: The present invention provides a method for monitoring and detecting vehicles at risk of a car accident in a high-risk accident area. The method comprises fusing a motion sensing device on the surface of a road in one moving direction at the high risk-area, wherein the motion sensing device comprising four detection bars (203) operable to detect a passing vehicle based light intensity change detected through the detection bars (203); acquiring (101) timing information of the passing vehicle passing through each of the four detection bar of the motion-sensing device to interpret velocities and accelerations of the passing vehicle; determining (102) a potential road-accident hazard based on the interpreted velocities and accelerations of the moving vehicle; providing (103) a warning signal for an opposing moving direction when the potential road-accident hazard is determined; and storing (104) the timing information acquired and interpreted in a database of a microcontroller (105) of the motion sensing device.

    NETWORK AND PROCESS FOR WEB-BASED VIDEO SURVEILLANCE

    公开(公告)号:MY159120A

    公开(公告)日:2016-12-15

    申请号:MYPI2010005906

    申请日:2010-12-10

    Applicant: MIMOS BERHAD

    Abstract: THE PRESENT INVENTION PROVIDES A WEB-BASED VIDEO SURVEILLANCE NETWORK WITH VIDEO STREAMING CAPABILITY,WHERE THE NETWORK COMPRISES A WEB SERVER HAVING WEB ACCESS AND A DESIGNATED IP ADDRESS; A VIDEO IMAGE ACQUISITION AND PROCESSING SYSTEM (10), EMBEDDED IN THE WEB SERVER; WHEREIN THE VIDEO IMAGE ACQUISITION AND PROCESSING SYSTEM (10) ACQUIRES AND PROCESSES RAW VIDEO IMAGE DATA; AND A VIDEO IMAGE RETRIEVAL AND DISPLAY SYSTEM EMBEDDED IN A WEB SERVER; WHEREIN THE VIDEO IMAGE RETRIEVAL AND DISPLAY SYSTEM RETRIEVES (200) THE PROCESSED VIDEO IMAGE AND DISPLAYS THE PROCESSED VIDEO IMAGE DATA ON A BROWSER OF AN END USER; WHEREBY THE WEB-BASED VIDEO SURVEILLANCE NETWORK PROCESSES THE RAW VIDEO IMAGE DATA ON WEB, DISPLAYS (260) THE PROCESSED VIDEO IMAGE DATA ON BROWSERS, AND PROVIDES WEB ACCESSES TO MULTIPLE END USERS. THE PRESENT INVENTION ALSO PROVIDES A PROCESS OF WEB-BASED VIDEO SURVEILLANCE.

    METHOD FOR ESTIMATING A POSSIBLE ROUTE OF AN INCOMPLETE TAG ACCESS INFORMATION

    公开(公告)号:MY184604A

    公开(公告)日:2021-04-07

    申请号:MYPI2013702295

    申请日:2013-11-28

    Applicant: MIMOS BERHAD

    Abstract: The present invention relates to a method for estimating a possible route of an incomplete tag access information. The method comprises the steps of by a Region Ontology Generator (30), creating a region ontology for each tag access information received by the Region Ontology Generator (30), setting the row and column of the region ontology according to the connected region identification by the Region Ontology Generator (30), filling up the region ontology with tag identification numbers and need tag values by the Region Ontology Generator (30), generating intensity profile data of a user based on historical access frequency data by an Intensity Profiling Module (50), searching for probable route taken by the user based on the region ontology by a Probably Route Searching Module (70) and estimating the best route based on the probable route found and intensity profile data by a Best Route Estimation module (80). FIG. 1

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