METHOD AND SYSTEM FOR COMPUTATION AND VERIFICATION OF AUTHENTICATION PARAMETERS FROM INDEPENDANT MEASUREMENTS OF TIME OR LOCATION

    公开(公告)号:MY184944A

    公开(公告)日:2021-04-30

    申请号:MYPI2014702046

    申请日:2014-07-24

    Applicant: MIMOS BERHAD

    Abstract: The present invention discloses a method and system for computation and verification of authentication parameters between two entities, an originating entity and a receiving entity, which in the embodiment of interest comprises a server (100), a client interface thereof (110), a human user (120) and a trusted system (130) deemed as such by the human user. The method comprises the user (120) authenticating the server (100) by visual comparison of an authentication code in numeric, symbolic, graphical or visual-interactive form computed by the server (100) in comparison to a plurality of reference codes computed on the trusted system (130); and reciprocally the server (100) authenticating the user (120) subsequent to transcription or transfer of an authentication code, as computed and displayed on the trusted system (130), to the client interface (110) and thenceforth to the server (100),by means of comparison of the test code to a plurality of reference codes computed on the server (100). The method of computation and verification of the authentication codes as aforesaid are by means of zero knowledge (ZK) transformation of time, location or service-specific information; with measurement or determination of time or location information as independently undertaken on server (100) and trusted system (130). The most illustrative drawing: FIGURE 1

    SYSTEM AND METHOD FOR DISTRIBUTED SECURE DATA STORAGE IN TORUS NETWORK TOPOLOGY

    公开(公告)号:MY170681A

    公开(公告)日:2019-08-26

    申请号:MYPI2014701657

    申请日:2014-06-19

    Applicant: MIMOS BERHAD

    Abstract: The present invention relates to an improved system for distributed secure data storage over a torus network topology and to the method thereof. The system comprises a plurality of storage nodes (100), client nodes (101) and master node (102). The plurality of storage nodes (100) each comprises a read and write head configured to read data from and write data as requested by the client nodes (101). The master node (102) which may be selected from among the plurality of storage nodes (100) is configured for managing the data. The master node (102) can be characterized by a storage manager unit (103), a data balancer unit (104), a key registry unit (105) and a master data logger (106) that may dynamically continuously rebalance the data based on the availability of a storage node and access frequency of data, and may protect and secure the data using a striped master key through node authentication mechanism. Figure 2

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