
NO. |
PROJECT TITLE |
TYPE |
DESCRIPTION |
TRL |
ESTIMATED COST |
STATUS |
DETAILS |
|
|---|---|---|---|---|---|---|---|---|
1 |
|
TACTIDRONE: AI DRIVEN TACTICAL C4 DRONE SOLUTION
UNIVERSITI PERTAHANAN NASIONAL MALAYSIA |
IP |
TACTIDRONE: WORLD FIRST TACTICAL AI DRIVEN COMMAND, CONTROL, COMMUNICATION AND COORDINATION (C4) SOLUTION DESIGNED TO COORDINATE GROUND AND DRONE OPERATIONS. TACTIDRONE BRIDGES THE GAP OF WHAT HAPPENS AFTER THE DRONE DATA IS COLLECTED AND DRONE CAPABILITY UTILIZATION BY THE POTG WITHOUT A PILOT BY DELIVERING AN INNOVATIVE SOLUTION THAT INTEGRATES GROUND OPERATIONS WITH DRONE CAPABILITIES AND VICE VERSA.
IT ENHANCES URBAN MANAGEMENT BY ALLOWING CITY PERSONNEL AND EMERGENCY FLEETS TO DIRECT DRONES ENTIRELY WITHOUT A PILOT. MUNICIPAL WORKERS CAN EASILY DISPATCH DRONES FOR RAPID DELIVERIES, INCIDENT MONITORING, OR INFRASTRUCTURE SURVEILLANCE. SIMULTANEOUSLY, THE SYSTEM EFFICIENTLY ROUTES FIRST RESPONDERS AND MAINTENANCE VEHICLES TO PRECISE LOCATIONS, ENSURING HIGHLY SYNCHRONIZED, SAFE, AND RESPONSIVE OPERATIONS THROUGHOUT THE METROPOLITAN ENVIRONMENT. |
-
|
|
PROPOSAL
|
|
2 |
|
CITILINK - A CROWDSOURCED SAFETY APPLICATION SYSTEM
UNIVERSITI TEKNIKAL MALAYSIA MELAKA |
Research |
"THE INCREASING FREQUENCY OF PUBLIC SAFETY INCIDENTS AND THE LIMITATIONS OF TRADITIONAL,
CENTRALIZED REPORTING SYSTEMS HAVE UNDERSCORED THE NEED FOR A MORE RESPONSIVE AND
PARTICIPATORY SAFETY SOLUTION. CITILINK IS A CROWDSOURCED SAFETY APPLICATION SYSTEM
DESIGNED TO EMPOWER CITIZENS WITH REAL-TIME REPORTING CAPABILITIES WHILE FACILITATING
ACTIVE COLLABORATION WITH SAFETY AUTHORITIES. DEVELOPED USING FLUTTER, FIREBASE, AND
GOOGLE MAPS API, THE APPLICATION INTEGRATES FEATURES SUCH AS LOCATION-BASED INCIDENT
REPORTING, A PANIC BUTTON FOR IMMEDIATE EMERGENCIES, REAL-TIME MAPPING OF CATEGORIZED
INCIDENTS, AND A RADIUS-BASED ALERT FILTER TO TAILOR NOTIFICATIONS TO USER-DEFINED AREAS. TO
ENHANCE REPORT CREDIBILITY AND MINIMIZE MISINFORMATION, CITILINK INTRODUCES A
COMMUNITY VALIDATION MECHANISM, ALLOWING USERS TO UPVOTE AND COMMENT ON REPORTS.
AN INTEGRATED ADMIN PANEL FURTHER ENABLES AUTHORIZED PERSONNEL TO BROADCAST ALERTS TO
THE PUBLIC EFFICIENTLY. THE SYSTEM ARCHITECTURE SUPPORTS USER AUTHENTICATION, CLOUDBASED DATA STORAGE, AND PUSH NOTIFICATION SERVICES, ENSURING A SCALABLE AND SECURE
EXPERIENCE. THROUGH EXTENSIVE TESTING AND USER FEEDBACK, CITILINK DEMONSTRATED ITS
POTENTIAL TO SIGNIFICANTLY IMPROVE RESPONSE TIMES, INCREASE TRANSPARENCY IN INCIDENT
COMMUNICATION, AND FOSTER A MORE CONNECTED AND RESILIENT COMMUNITY SAFETY ECOSYSTEM." |
-
|
RM20,000.00
|
PROPOSAL
|
|
3 |
|
INTELLIGENT FIRE ALARM SYSTEM
UNIVERSITI TEKNIKAL MALAYSIA MELAKA |
Research |
THE INTELLIGENT FIRE ALARM SYSTEM (IFAST) IS AN IOT-ENABLED SMART MONITORING SOLUTION DESIGNED TO ENHANCE THE EFFECTIVENESS OF CONVENTIONAL FIRE ALARM SYSTEMS THROUGH REAL-TIME MONITORING, REMOTE NOTIFICATIONS, AND PREDICTIVE MAINTENANCE. UNLIKE TRADITIONAL SYSTEMS THAT ONLY PROVIDE LOCAL ALERTS, IFAST INTEGRATES WIRELESS COMMUNICATION, CLOUD COMPUTING, AND INTELLIGENT ANALYTICS TO DELIVER INSTANT FIRE ALARM STATUS UPDATES TO BUILDING MANAGERS, EMERGENCY RESPONDERS, AND MAINTENANCE PERSONNEL. THE SYSTEM ENABLES CONTINUOUS HEALTH MONITORING OF FIRE ALARM PANELS, RAPID FAULT DETECTION, AND CENTRALISED MANAGEMENT ACROSS MULTIPLE FACILITIES WITHOUT INTERFERING WITH EXISTING CERTIFIED FIRE PROTECTION INFRASTRUCTURE. EXPECTED OUTCOMES INCLUDE FASTER EMERGENCY RESPONSE, REDUCED MAINTENANCE COSTS, IMPROVED OPERATIONAL RELIABILITY, ENHANCED OCCUPANT SAFETY, AND GREATER COMPLIANCE WITH MODERN SMART BUILDING AND SMART CITY INITIATIVES. |
-
|
RM3,000,000.00
|
PROPOSAL
|
|
4 |
|
IOT-ENABLED E-CUTTER MONITORING USING LORAWAN AND SOFTWARE-DEFINED RADIO FOR PREDICTIVE MAINTENANCE
UNIVERSITI TEKNIKAL MALAYSIA MELAKA |
Research |
"THIS PROJECT PROPOSES THE DEVELOPMENT OF AN IOT ENABLED PREDICTIVE MAINTENANCE SYSTEM TO ENHANCE THE RELIABILITY AND OPERATIONAL EFFICIENCY OF E-CUTTERS USED IN OIL PALM HARVESTING. AS THE AGRICULTURE SECTOR MOVES TOWARD SMART AND AUTOMATED PRACTICES, REAL TIME EQUIPMENT MONITORING HAS BECOME ESSENTIAL FOR REDUCING DOWNTIME AND PREVENTING UNEXPECTED FAILURES. ALTHOUGH THE E CUTTER WAS INTRODUCED AS AN IMPROVEMENT OVER THE EARLIER CANTASTM
AND SUCCESSFULLY ELIMINATED THE POLE BENDING ISSUE BY REPLACING THE MECHANICAL SHAFT WITH AN ELECTRICAL WIRING SYSTEM, IT REMAINS SUSCEPTIBLE TO MECHANICAL WEAR, EXCESSIVE VIBRATION AND OVERHEATING DURING PROLONGED FIELD USE. THESE FACTORS CAN COMPROMISE PERFORMANCE AND LEAD TO COSTLY BREAKDOWNS IF LEFT UNMONITORED. TO ADDRESS THIS CHALLENGE, THE PROJECT INTEGRATES VIBRATION AND TEMPERATURE SENSING WITH LONG RANGE IOT COMMUNICATION. LORA SENSOR NODES OPERATING AT 915 MHZ WILL BE EQUIPPED WITH GYROSCOPE AND THERMAL SENSORS AND MOUNTED DIRECTLY ON THE E-CUTTER TO CAPTURE REAL TIME OPERATIONAL DATA. PRIOR TO FIELD DEPLOYMENT, COMMUNICATION RELIABILITY WILL BE EVALUATED THROUGH CONTROLLED LABORATORY TESTING USING A USRP X300 SOFTWARE DEFINED RADIO, FOCUSING ON PACKET DETECTION
ACCURACY, SIGNAL ROBUSTNESS AND ERROR CORRECTION TECHNIQUES TO ENSURE STRONG PERFORMANCE UNDER VARYING CONDITIONS.
FOR PLANTATION TRIALS, DATA FROM THE SENSOR NODES WILL BE TRANSMITTED TO A LORAWAN GATEWAY INSTALLED AT AN ELEVATED LOCATION TO IMPROVE COVERAGE IN THE FIELD ENVIRONMENT. THE COLLECTED DATA WILL BE ANALYZED TO IDENTIFY ABNORMAL VIBRATION AND TEMPERATURE PATTERNS THAT INDICATE COMPONENT DEGRADATION OR IMPENDING SYSTEM FAILURE. THIS WORK IS SIGNIFICANT BECAUSE IT INTRODUCES A PRACTICAL AND RELIABLE WAY TO MONITOR THE HEALTH OF E CUTTERS IN REAL OPERATING
CONDITIONS. BY DETECTING ABNORMAL VIBRATION AND TEMPERATURE LEVELS EARLY, THE SYSTEM HELPS PREVENT SUDDEN EQUIPMENT FAILURES THAT INTERRUPT HARVESTING TASKS. THE USE OF IOT SENSORS AND LONG RANGE LORA COMMUNICATION ENSURES THAT DATA CAN BE COLLECTED CONTINUOUSLY ACROSS LARGE PLANTATION AREAS, SUPPORTING TIMELY MAINTENANCE DECISIONS." |
-
|
RM25,000.00
|
PROPOSAL
|