SYSTEM AND METHOD FOR AUTOLOADING OF MULTIPLE TABLES FROM RELATIONAL DATABASE TO THE BIG DATA STORAGE PLATFORM

    公开(公告)号:MY179970A

    公开(公告)日:2020-11-19

    申请号:MYPI2015704308

    申请日:2015-11-26

    Applicant: MIMOS BERHAD

    Inventor: SEAH BOON KEONG

    Abstract: A system (100) and method of the present invention provide autoloading of multiple tables from a relational database (101) to a big data storage platform (102). The system and method of the present invention allow automatically loading of multiple tables to the big data storage platform for all tables with or without having a primary key by pre-identifying the multiple tables having primary key for data loading 10 and the target data store of the big data storage platform (102). For tables not having primary key, the temporary table will be pre-created whereby an auto-incrementing number will be pre-inserted into the temporary table. Hence, the tables not having primary keys will also be loaded by the present system and method. Figure 3

    SYSTEM AND METHOD TO DISCOVER NETWORK APPLICATION RELATIONSHIP AND DETECT COMMUNICATION ANOMALY

    公开(公告)号:MY179816A

    公开(公告)日:2020-11-16

    申请号:MYPI2015704235

    申请日:2015-11-20

    Applicant: MIMOS BERHAD

    Abstract: The present invention relates to a system and method to discover network application relationship and to detect communication anomaly within server and server to server by analyzing interaction between network application and service and its dependencies. In particular, the present invention identifies possible anomaly in a network communication and record network packet information for troubleshooting purposes. Any detected changes will be automatically updated in the system configuration. The present invention comprising at least one monitoring system (102); at least one repository (104); and at least one host (106, 108, 110). Five inspection modules which resides within the host (106, 108, 110) (i.e. the Host Inspection Module (106b); Network Service Inspection Module (106c); Blocking Inspection Module (106d); Network Packing Inspection Module (106e); and Anomaly Inspection Module (106f) to discover network application relationship and to detect communication anomaly. Figure 1.0

    SYSTEM AND METHOD FOR GENERATION OF VIRTUAL LOAD IN A CLOUD ENVIRONMENT FOR PERFORMANCE TESTING OF APPLICATIONS

    公开(公告)号:MY179232A

    公开(公告)日:2020-11-02

    申请号:MYPI2015703647

    申请日:2015-10-12

    Applicant: MIMOS BERHAD

    Abstract: Performance testing requires human intervention for accurately setting up a number of machines in order to simulate various load conditions for conducting performance tests. The system and method of the present disclosure addresses this problem by dynamically determining and generating a virtual user environment in the cloud for executing the performance tests. The system includes a validation module (108) for checking pre-determined parameters of a test specification for the performance test; an allocation module (110) for computing and accordingly configuring a number of virtual machines required for conducting the performance test; and a monitoring module (112) for iteratively monitoring usage of the virtual machine resources. The monitoring module (112) also gives feedback to the allocation module (110) to adjust the allocated virtual machines for invoking an optimum number of virtual machines for the performance tests without any human intervention.

    CHEMICAL SENSING DEVICE
    125.
    发明专利

    公开(公告)号:MY179067A

    公开(公告)日:2020-10-27

    申请号:MYPI2015704323

    申请日:2015-11-26

    Applicant: MIMOS BERHAD

    Abstract: The present invention discloses a chemical sensing device (100) comprising a transducer (101), a hydrogel layer (102), and an ion sensing layer (103), wherein the hydrogel layer (102) is modified to comprise a surfactant. Such modification lowers the surface tension between the transducer (101) and the hydrogel layer (102), and therefore promoting a superior coverage of the hydrogel layer (102) on the top surface of the transducer (101), and also promoting a better binding between the two (101) (102). Also disclosed herein is a method for fabricating the chemical sensing device (100).

    MULTI-USER STEGANOGRAPHY BASED ON GREENBERGER-HORNE-ZEILINGER STATES

    公开(公告)号:MY179060A

    公开(公告)日:2020-10-26

    申请号:MYPI2012004831

    申请日:2012-11-05

    Applicant: MIMOS BERHAD

    Abstract: The invention provides a method (100) of multi-user steganography. Firstly, the method involves establishing secure channels between at least three users including the steps of: each of the users randomly selecting a sequence of ordered GreenbergerHome-Zeilinger (GHZ) states having at least three particles (110); each of the users taking one particle from each of their respective GHZ states to each form at least three subsequences (120); each of the users keeping an initial subsequence in their own site and transmitting a respective one of the remaining subsequences to each of the other users (130); and each of the users checking the security of established channels by measuring the number of particles on either side, as agreed between the users (140). Next, the method involves the users transmitting messages between each other by performing the steps of: each of the users encoding a cover message by applying a unitary transformation on the subsequences sent by the other users (150); each of th users transmitting the subsequences encoded with their cover message to the other users (160); each of the users retrieving their respective subsequence in which the cover messages of the other users are encoded (170); each of the users performing GHZsbased measurements on the subsequence having the cover messages of the other users encoded thereon, and comparing measurement outputs with the initial subsequence to obtain the encoded messages (180); and each of the users checking the security of established channels by measuring the number of particles on either side, as agreed between the users (190). After this process. the users exchange stenographic messages (200).

    FULLY INTEGRATED ISFET - VALVELESS MICROPUMP

    公开(公告)号:MY178352A

    公开(公告)日:2020-10-08

    申请号:MYPI20071674

    申请日:2007-10-01

    Applicant: MIMOS BERHAD

    Abstract: The present invention relates to a fully integrated ISFET valveless micropump for use as a pH sensor and as a chemical based sensor especially intended for Wireless Sensor Network (WSN) characterized in that wherein the valveless pump with ISFET is embedded along a pump channel and temperature sensors at its inlet and wherein a membrane in the middle is the pump diaphragm and is electrostatically actuated by an electrode above it which deposited on the glass and wherein when the membrane controlled by a microcontroller is in motion, fluid or gas would be pumped in thru the inlet and travels thru the channel where ISFET is located and out thru the outlet.

    A SYSTEM AND METHOD FOR POLLING CHANGES IN A NETWORK DEVICE USING SNMP

    公开(公告)号:MY177528A

    公开(公告)日:2020-09-17

    申请号:MYPI2014700513

    申请日:2014-03-05

    Applicant: MIMOS BERHAD

    Inventor: WONG CHIN WEE

    Abstract: The present invention relates to a system and method for polling changes in a network device (10) in a periodically manner by using a simple network management protocols (SNMP) agent (13). Specifically, the system and method allow a management system (20) to update a network (30) with any changes that occurred in the network device (10) and at the same disregard any unchanged information. Therefore, the system and method promote efficiency; prevent overloading the network (30) with unnecessary unchanged information, and ease network traffic.

    SYSTEM ARCHITECTURE WITH CLUSTER FILE FOR VIRTUALIZATION HOSTING ENVIRONMENT

    公开(公告)号:MY177055A

    公开(公告)日:2020-09-03

    申请号:MYPI2010005759

    申请日:2010-12-02

    Applicant: MIMOS BERHAD

    Inventor: LUKE JING YUAN

    Abstract: A system architecture with cluster file for virtualization hosting environment comprising: a Virtualization Hosting Environment (Grid 4.1/laaS 1.x) (20) communicating with shared Cluster File System Environment (16) a High Bandwidth connecting the Metadata Server (17) cluster of I/O nodes (14). Vi11ualization Hosts (19) and Virtualization Host with 1/0 Nodes (12) a Metadata Server (17) communicating with an 1/0 Node (14) component. A cluster of 1/0 Nodes (14) communicating with a Client Component and the Metadata Server (17) a Virtualization l lost communicating with the I/O Nodes (12) at least two private networks connecting Metadata Servers( 17) to the system and connecting cluster or 1/0 Nodes (14) and an Inter Private Network connecting the private networks.

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