Sumira Engineering

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SUMIRA ENGINEERING

Digital AI, IoT & Smart Technology

Live Pitch
Strategic Proposal

UNLOCKING DIGITAL
AI-DRIVEN
SOLUTIONS

FOR OCCUPATIONAL, SAFETY & HEALTH (OSH) MANAGEMENT

PRESENTATION TO: Chief Executive Officer (CEO)

ORGANIZATION: Serikandi Oilfield Services Sdn. Bhd.

“Exploring Strategic Collaboration in Digital AI & Intelligent OSH Solutions”

Presented by

Ir. Ts. Michael Anggie

Director, Sumira Engineering

AI

SYSTEM.CORE

Introduction

About Sumira Engineering

Established in 2021, Sumira is a Bumiputera-owned Sarawakian engineering and technology company founded by one of the younger brothers and led by a team of siblings with complementary engineering and industry expertise.

Our Multidisciplinary Capabilities

OUR NEXT CHAPTER

DIGITAL AI, IoT & SMART TECHNOLOGY

Engineering Expertise // Intelligent Solutions

Framework

Objective

To demonstrate how Digital AI, computer vision, IoT and integrated data analytics can enhance OSH management by moving from manual and reactive monitoring toward proactive, predictive and data-driven safety management.

1 Detection

Normal cameras, AI-powered cameras, sensors and wearables continuously monitor workplace activities 24/7.

2 Analysis

AI analyzes data patterns to identify potential hazards and provide actionable insights for preventive measures.

3 Decisions

Dashboards and automated alerts enable timely and informed management decisions, including event statistics.

4 Improvement

Data-driven feedback loops continuously improve safety policies, training and workflows.

Architecture

Concepts Framework

Surveillance &
Security

AI CCTV
COMPUTER VISION

24/7 visual analysis for PPE compliance, intrusion, and unsafe acts.

Integrated
System

Dashboard Central
AI PROCESSING HUB
  • Real-time Data Aggregation
  • Predictive Risk Modeling
  • Automated Alert Routing

Fatigue
Management

Wearables
BIOMETRIC TELEMETRY

Continuous monitoring of HRV and physiology.

Industry Challenges

Key OSH Safety Concerns

Operational safety in oil and gas facilities involves critical challenges where continuous visibility is hard to maintain manually.

Unsafe Acts (UAUC)

Real-time detection of non-compliant behaviors and PPE violations.

Fatigue Management

Worker fatigue significantly increases accident risk during extended operations.

Phone Compliance

Unauthorized mobile phone use creates distraction risks and potential ignition sources.

Core Solution 01

Unsafe Acts & Conditions (UAUC)

Manual observation is subjective. We leverage AI-powered Computer Vision connected to CCTV infrastructure to provide 24/7, objective hazard detection.

PPE Compliance Detection

Real-time identification of missing hard hats, safety glasses, face masks, etc.

CCTV Feed
NO_HELMET
No Helmet Detected
NO_MASK
No Mask Detected
REC // CAM_CY1_04
Core Solution 02

Fatigue Management: Predictive Safety

Smart Wearables

Capture physiological indicators including HRV, movement patterns and rest quality.

AI Pattern Analysis

AI identification of fatigue-related indicators based on collected physiological data.

CCTV Integration

Computer vision monitors behavioural indicators associated with fatigue.

Core Solution 03

Mobile Phone Usage Compliance

Mobile phone usage in non-manufacturing areas presents distraction-related safety risks and potential ignition sources.

ALERT: Unauthorised Device CY_1_RESTRICTED
POC Update Report

Digital AI Surveillance Analytics

MLNG Complex, Bintulu - Contractor Yard (CY)_1

Execution Date
13 AUG 2026

POC Overview

Conducted to demonstrate practical capability of Digital AI to analyze CCTV feeds, identify predefined safety/security events, and generate alerts at MLNG Complex.

Total Parameters 8
Demonstrated 7
Under Observation 1

Key Finding

Face detection observed at ~99%. Behavioral functions at ~75-80%. Successfully provides an additional layer of intelligent monitoring.

Face Detection

~99% Accuracy observed.

ACHIEVED

Safety Helmet

Missing helmet detection.

ACHIEVED

Face Mask

Missing mask detection.

ACHIEVED

Mobile Phone

Usage/operation detection.

ACHIEVED

Intrusion

Restricted area movement.

ACHIEVED

Unauthorized Person

Access monitoring.

ACHIEVED

Perimeter

Boundary movement.

ACHIEVED

Smoking

Non-designated areas.

ONGOING (MOD 6)
Objective & Concepts

Transforming Existing Infrastructure into Integrated Digital Intelligence

Integrated System

Surveillance & Security System

1 Detection

Normal cameras, AI-powered cameras, sensors and wearables continuously monitor workplace activities 24/7, enabling real-time surveillance.

2 Analysis

AI analyses data patterns to identify potential hazards and provide actionable insights for preventive measures.

3 Decisions

Dashboards and automated alerts enable timely and informed management decisions, including event statistics and trends.

4 Improvement

Data-driven feedback loops continuously improve safety policies, training and workflows for operational enhancement.

Port Evolution

Bintulu Port's Digital Transformation

Towards a Smarter, More Connected Port

Operational safety in oil and gas facilities involves critical challenges such as non-compliance to HSE at work place especially in industrial area. Even with established HSE systems and procedures, large-scale operations, routine activities, turnarounds and shutdowns can create challenges in maintaining continuous visibility across all work areas.

Existing Digital Ecosystem

  • CCTV & video surveillance
  • Port operational systems
  • Security systems
  • Network infrastructure
  • Digital platforms

DIGITAL AI OPPORTUNITY

ADD AN AI INTELLIGENCE LAYER

Detection • Alerts • Analytics • Dashboard

Note: Digital AI complements existing systems; it does not require unnecessary replacement of existing infrastructure subject to technical specification and client's requirement.

SUMIRA'S CORE PROPOSITION

RIDE ON THE EXISTING. ADD INTELLIGENCE.

SUMIRA proposes to leverage Bintulu Port's existing infrastructure and enhance its capability through AI-powered video intelligence. The objective is not to replace what Bintulu Port already has but to make it smarter.

1

EXISTING INFRASTRUCTURE

  • - CCTV
  • - VMS / Network
  • - Security Systems
  • - Port Systems
2

AI INTELLIGENCE LAYER

  • - AI Video Analytics
  • - Event Detection
  • - Alarm Management
3

SYSTEM INTEGRATION

  • - Data / API Integration
  • - Event Management
4

INTEGRATED DASHBOARD

  • - One Platform
  • - One View
  • - Actionable Intelligence
Visual AI

From CCTV to Digital Intelligence

CCTV SEES. AI UNDERSTANDS.

Our Digital AI Integrated System leverages AI, CCTV and computer vision to deliver continuous intelligent monitoring across selected operational areas.

Personal Detection & Identification (FD/FR)

Access control and personnel tracking for authorized zone compliance.

Vehicles / Motion Tracking

Vehicle and worker movement monitoring for hazardous proximity alerts. Route planning and transportation safety.

PPE Compliance

Automated detection of missing or improper personal protective equipment (Helmets, Eye wear, Vests, Boots, etc).

Thermal Detection & Leak Monitoring

Heat signature analysis for fire risks, equipment overheating, and disruptions in processing plants.

Use Cases

Digital AI for Smart Port Operation

AI-POWERED PORT INTELLIGENCE.

SAFETY

  • PPE compliance
  • Restricted-area detection
  • Person/vehicle proximity
  • Fall detection
  • Unsafe activity
  • Fatigue Management
  • Mobile Compliance

SECURITY

  • Intrusion detection
  • Unauthorised access
  • Perimeter monitoring
  • Abnormal activity

INCIDENT

  • Smoke / fire detection
  • Crowd detection
  • Abnormal events
  • Incident verification

OPERATIONS

  • Vehicle movement
  • Traffic monitoring
  • Congestion monitoring
  • Operational-zone monitoring
  • Activity monitoring

AI applications can be configured according to Bintulu Port's operational priorities and requirements.

Actionable Info

INTEGRATED DASHBOARD

FROM DATA to SAFETY INTELLIGENCE

The Integrated Dashboard serves as your centralized safety intelligence platform, transforming raw data from multiple sources into actionable insights. This unified system visualizes all data—providing real-time monitoring, automated alerts, comprehensive analytics, and reporting across personnel, contractors, and vendors.

LIVE MONITORING

  • - Camera status
  • - Selected live feeds
  • - Operational locations

AI EVENTS

  • - PPE violation
  • - Restricted area
  • - Vehicle / pedestrian proximity
  • - Intrusion & Smoke/fire

EVENT INFORMATION

Location | Date | Time | Camera | Event Type | Evidence

PREVENTIVE ANALYTICS

Machine learning identifies emerging risks and trends. Statistical summary of performance (daily, weekly, monthly).

ONE DASHBOARD. ONE VIEW. ACTIONABLE INFORMATION.

Management does not need to continuously monitor every camera. The system highlights events that require attention.

Value Proposition

BUSINESS BENEFITS TO BINTULU PORT

Enhanced Safety

Earlier identification and notification of potentially unsafe conditions.

Enhanced Security

Improved real-time situational awareness across selected operational areas (24/7 Safety Visibility).

Operational Visibility

Greater visibility of activities across multiple locations simultaneously.

Data-Driven Management

Convert visual events into measurable information, trends and KPIs.

AI-Assisted Monitoring

Enable personnel to focus on higher-value operational and decision-making activities.

Maximise Investment

Enhance existing CCTV infrastructure through AI without unnecessary hardware replacement.

Improved Response

Provide timely alerts to responsible personnel when configured events occur.

Smart Port Transformation

Create an AI-enabled foundation that can progressively support Bintulu Port's digital journey.

Deployment Strategy

DIGITAL AI ROADMAP FOR BINTULU PORT

SUMIRA's intention is to work with Bintulu Port progressively to enhance, integrate and expand the Digital AI capability according to actual operational requirements.

1

INTEGRATE

Existing CCTV & Infrastructure

2

INTELLIGENCE

AI Detection & Analytics

3

INTEGRATION

Systems + Dashboard

4

OPTIMISE

Additional Algorithms / Locations / Apps

5

CONTINUOUS IMPROVEMENT

Data → Insights → Improvement

Commitment: SUMIRA is committed to continuously improve and enhance the Digital AI solution in line with Bintulu Port's operational requirements and Smart Port development.

Long-term Vision

THE BEGINNING OF A LONGER TECHNOLOGY PARTNERSHIP

"
"

Our intention is not to treat Digital AI as a one-off system implementation. We see this as a platform that can continuously improve together with Bintulu Port.

Once the initial system is established, additional algorithms, locations and integrations can be introduced based on actual operational requirements and priorities.

SUMIRA would like to be Bintulu Port's local engineering and integration partner in that continuous improvement journey.

Framework

Objective

To enable PUSAKA to improve the accuracy, traceability and accountability of physical assets and inventory through AI-enabled monitoring and automation.

Initial Application:

LPG Cylinder Inventory & Asset Tracking

Key Objectives

  • Reduce dependence on manual inventory monitoring
  • Improve visibility of asset movement
  • Minimise inventory discrepancies
  • Strengthen asset accountability and traceability
  • Provide real-time operational visibility

Identified Operational Challenge

LPG CYLINDER INVENTORY & TRACKING

LPG cylinder inventory can become difficult to manage when physical movement and manual records are not fully synchronised.

i

Physical stock may not tally with recorded inventory

ii

Manual recording can result in gaps or inconsistencies

iii

Difficult to determine the current location of cylinders

iv

Movement between locations can be difficult to track

v

Stock reconciliation requires significant manual effort

vi

Limited real-time visibility for management

Key Question:

"Can we know, at any point in time, what assets we have, where they are, and whether the physical inventory matches the recorded inventory?"

Architecture

Proposed Digital AI Solution

From Manual Tracking to Intelligent Asset Visibility

Physical Asset

Identification

QR/Barcode/RFID/Visual

AI Monitoring

Camera + AI Analytics

Movement Capture

IN / OUT / TRANSFER

Inventory Database

Reconciliation & Exceptions

Management Dashboard

Resulting In

REAL-TIME VISIBILITY TRACEABILITY ACCOUNTABILITY
Actionable Info

Inventory & Asset Dashboard

One View of Physical Inventory and Asset Movement. From periodic manual checking to continuous operational visibility.

INVENTORY

  • ▸ Total stock
  • ▸ Available stock
  • ▸ Issued stock
  • ▸ Returned & In-transit

ASSET STATUS

  • ▸ Current location
  • ▸ Movement history
  • ▸ Last recorded activity
  • ▸ Asset ageing

CONTROL

  • ▸ Inventory variance
  • ▸ Unrecorded movement
  • ▸ Missing assets
  • ▸ Abnormal activity
Value Proposition

EXPECTED BENEFITS TO PUSAKA

1. Inventory Accuracy

Improve reconciliation between physical and recorded stock.

2. Operational Efficiency

Reduce repetitive manual checking and reconciliation.

3. Asset Traceability

Know exactly where an asset is and how it moved.

4. Accountability

Improve visibility of asset issuance, transfer and return.

5. Exception Management

Identify discrepancies and unusual movements faster.

6. Management Visibility

Provide reliable information for operational decision-making.

Beyond Inventory Management

Additional AI capabilities for safety, security and operation.

SAFETY

  • ▸ PPE detection
  • ▸ Smoking detection
  • ▸ Fire & smoke detection
  • ▸ Unsafe-zone monitoring

SECURITY

  • ▸ Intrusion detection
  • ▸ Restricted-area monitoring
  • ▸ Unauthorised access
  • ▸ Abnormal activity

OPERATIONS

  • ▸ Vehicle & pedestrian monitoring
  • ▸ Loading / unloading activity
  • ▸ Warehouse activity monitoring
  • ▸ Operational event detection

Digital AI becomes more than CCTV...
it becomes an intelligent operational monitoring layer.

How Digital AI Complements PUSAKA

Connecting the Physical World with Digital Management

Existing Digital Systems

Records

Data

Transactions

Reports

Digital systems tell PUSAKA what is recorded.

+

Digital AI

Physical observation

Asset movement

Visual intelligence

Real-time events

Digital AI helps PUSAKA understand what is physically happening.

INTEGRATED OPERATIONAL INTELLIGENCE

Deployment Strategy

SUMIRA'S PROPOSED APPROACH

1. UNDERSTAND

Understand PUSAKA's existing operational processes, systems and requirements.

2. INTEGRATE

Complement existing infrastructure and digital systems with AI-enabled capabilities.

3. ENHANCE

Improve asset visibility, inventory control, traceability and operational intelligence.

4. SCALE

Extend proven capabilities across other assets, warehouses and operational environments.

THE WAY FORWARD

From a Specific Operational Challenge to a Scalable Digital Platform

LPG CYLINDER MANAGEMENT ASSET & INVENTORY VISIBILITY WAREHOUSE INTELLIGENCE SAFETY & SECURITY ANALYTICS SMART OPERATIONAL MANAGEMENT
Executive Summary

Digital AI Proof of Concept

The Digital AI-Powered Surveillance Analytics Proof of Concept (POC) was conducted at the Malaysia LNG Sdn. Bhd. (MLNG) Complex, Bintulu, specifically within the Contractor Yard (CY)_1 area, including the designated smoking area, to demonstrate the application of Digital AI technology in supporting Occupational Safety and Health (OSH), safety compliance, and security surveillance.

POC Execution Details

  • Location:MLNG Complex, Bintulu (Contractor Yard CY_1 Area & Smoking Area)
  • Client:Malaysia LNG Sdn. Bhd. (MLNG)
  • Execution Date:13th August 2026
  • Technology:MEGVII AI Solution
Primary Goals

POC Objectives

To demonstrate and verify the practical applicability of the currently available Digital AI capabilities for supporting OSH, safety compliance, and security surveillance.

Demonstrate AI capability to analyze surveillance camera feeds and identify predefined events in real time.

Verify face detection and face recognition capabilities within the designated surveillance area.

Verify basic PPE compliance detection (missing safety helmets and face masks).

Verify mobile phone usage detection (operating a phone or engaging in a call).

Verify intrusion and access-related detection (movement into restricted areas, unauthorized persons).

Verify perimeter monitoring via AI-based detection across defined perimeter boundaries.

Verify smoking detection capability outside the designated smoking areas.

Demonstrate generation of AI events and alerts following successful detections.

Parameters

POC Scope & Testing Boundaries

Functional Areas Assessed

1 Personnel ID
5 Unauthorized Person
2 Basic PPE Compliance
6 Perimeter Monitoring
3 Mobile Phone Usage
7 Smoking Compliance
4 Intrusion/Access
8 Event/Alert Generation

Capability Demonstration

This POC was limited to AI detection capabilities available within the system configuration at the time of testing. It serves as a practical capability demonstration and does not constitute a full-scale operational deployment or final performance acceptance.

Test Results

AI Parameter Evaluation Matrix

Demonstrated Parameters

0 / 8

Face Detection Performance

~ 0 %

Behavioral Est. Accuracy

~ 0 %

Face Detection

Evaluation of detection and recognition capability.

ACHIEVED

Safety Helmet

Detection of personnel missing safety helmets.

ACHIEVED

Face Mask

Detection of personnel missing face masks.

ACHIEVED

Mobile Phone

Detection of personnel operating a mobile phone.

ACHIEVED

Intrusion

Movement into defined restricted areas.

ACHIEVED

Unauthorized Person

Persons without required authorization.

ACHIEVED

Perimeter

Movement across defined boundaries.

ACHIEVED

Smoking Detection

Detection within non-designated areas.

ACHIEVED
Key Takeaways

Observations & Conclusion

Key Observations

  • Digital AI system successfully demonstrated all 8 identified AI detection parameters.
  • System automatically detected predefined safety/security events and generated corresponding alerts.
  • Observed face detection performance was approximately 99%.
  • Selected behavioral detection functions demonstrated an observed performance of ~75-80%.

Conclusion

The POC successfully demonstrated the currently available AI detection capabilities identified for the MLNG Complex CY_1 area.

It demonstrates the potential of Digital AI-Powered Surveillance Analytics to provide an additional intelligent monitoring capability in support of existing OSH, safety compliance, and security surveillance practices.

Overall POC Status

SUCCESSFULLY DEMONSTRATED

Business Impact

Added Value to Client

Transforming existing surveillance infrastructure into a proactive, intelligent, and highly efficient OSH management asset.

Capital Efficiency

The system leverages existing IP CCTV infrastructure (e.g., standard Hikvision cameras) and adds an AI intelligence layer without requiring unnecessary hardware replacement.

Continuous Safety Visibility

Shifts Occupational Safety and Health (OSH) management from subjective, periodic manual audits to 24/7 autonomous monitoring with real-time alert generation.

Data-Driven Accountability

Converts visual events into measurable KPIs, providing centralized tracking of contractor safety records, compliance rates, and incident history.

Operational Resource Optimization

Automates routine surveillance tasks, allowing safety personnel to focus on high-value incident response and critical decision-making rather than continuous screen monitoring.

Infrastructure

Network System Design Architecture

FIELD TIER
PoE Switch (IEEE 802.3at)
CENTRAL INGESTION
L3 Core Switch/Router
NVR
HCP VMS
MEGVII AI
AUTOMATION
16-Ch DI/DO Module
DCS
HMI

System Topology

Field Tier (Edge Capture)

Standard Hikvision IP cameras and specialized AI CCTV units connect via CAT-6 to field-hardened PoE switches; high-draw cameras receive up to 30W/60W IEEE 802.3at/bt power.

Transmission Tier (Backbone)

Field PoE links to the central server room through armored Single-Mode FO cables via SFP transceivers, isolating field traffic from EMI.

Central Ingestion & Analytics

Fiber runs terminate at the Layer 3 Core Router. Traffic splits: raw streams route to NVR (storage) & HCP (VMS), while secondary RTSP streams route to MEGVII AIoT engine.

Automation & Control Tier

Violations trigger hardware relays via an Ethernet-based DI/DO module, delivering dry-contact signals directly into the plant DCS and local operator HMIs.

End-to-End Process Flow

Optical Acquisition

Standard and thermal cameras capture high-definition RTSP streams and route them over CAT-6 to the nearest field PoE switch.

Backbone Transport & Ingestion

Video data aggregates across the fiber-optic ring through the core router, directing primary recording streams to the NVR and management to HCP.

Real-Time AI Inference

The MEGVII AIoT Engine pulls video channels directly, running deep learning models locally for PPE compliance, phone usage, and boundary violations.

DCS Interlock & HMI Annunciation

Upon detection, MEGVII broadcasts JSON webhooks and triggers the DI/DO module to close physical dry-contact circuits wired to DCS I/O cards.

Communication Matrix

CAT-6 Copper

Camera-to-PoE switch runs (<100m) and rack equipment interconnects.

Fiber Optic (FO)

Long-distance field cabinet-to-control room backbone carrying 10 Gbps uplinks.

RTSP / ONVIF

Video transmission between cameras, HCP, NVR, and the MEGVII AIoT engine.

HTTP REST / WebSocket

MEGVII Open API integration broadcasting alert payloads to web dashboards.

Modbus TCP / Dry Contact

16-Channel DI/DO output to DCS digital input terminal blocks for physical fail-safe triggers.

Boundaries & Realities

Project Limitations

Operating parameters and inherent considerations to acknowledge when scaling Digital AI surveillance platforms.

01

Environmental Dependencies

AI detection performance is inherently subject to external variables, including camera positioning, line-of-sight occlusions, lighting quality, and adverse weather conditions.

02

Behavioral Accuracy Ceilings

While facial detection achieves ~99% accuracy, complex behavioral anomalies (such as mobile phone usage) currently yield 75-80% precision and require ongoing optimization.

03

Validation for Complex Variables

Specific parameters, such as smoking detection in non-designated areas, are highly susceptible to environmental interference and require further field validation during active operations (e.g., Shutdown MOD 6).

04

Decision Support Nature

The Digital AI is an intelligence and alerting layer; it does not physically prevent incidents and still requires human intervention for enforcement and emergency response.

Strategic Roadmap

Future Recommendations

1

Algorithm Customization

Train and deploy site-specific AI models tailored to emerging operational risks, such as chemical spill detection, specific heavy machinery proximity, or advanced ergonomic strain analysis.

2

Progressive Scalability

Expand the proven AI ecosystem from the initial pilot zones (e.g., Contractor Yard 1) to encompass critical manufacturing areas, storage terminals, and offloading perimeters.

3

Enterprise Integration

Synchronize the AI Command Dashboard with the client's existing Human Resources databases, contractor permit systems, and automated access control gates for seamless identity management.

4

Biometric Telemetry

Enhance predictive safety capabilities by outfitting high-risk personnel with IoT wearables to continuously track Heart Rate Variability (HRV) and physiological data for proactive fatigue intervention.

SAFETY INSIGHTS

PLANT DIGITAL TWIN // LIVE TELEMETRY

SYSTEM: ONLINE

FIELD OPERATION OVERVIEW

Total124
11Delay
54Finished
40In Prog.
19Pending

NON-COMPLIANCE TOPS

No Helmet30
No Face Mask24
Alarms0
Field Ops0
DRAG TO ROTATE // CLICK NODES FOR CCTV FEED
CAM_FEED_ACTIVE
CCTV Simulation
UNAUTHORISED_PERSON

IOT STATISTICS

Device Online / Total589/800

ALARM CENTER

Total Alarms0
REAL-TIME NOTIFICATION
High Temperature Anomaly 10:15:00

THE END

DIGITAL AI, IoT & SMART TECHNOLOGY

Engineering Expertise. Intelligent Solutions.

Expanding our multidisciplinary engineering capabilities into intelligent, connected and technology-driven solutions.

Sumira Engineering Sdn. Bhd.

Exploring Strategic Collaboration

Logo

INTELLIGENT COMMAND CENTER

LIVE SYSTEM METRICS

AI SURVEILLANCE MATRIX

CAM_01
CAM_02
CAM_03_THERMAL
CAM_04_PERIMETER

PREDICTIVE RISK ENGINE

Probability Index68%
Violation Trend12%

LIVE INCIDENT LOG

[CRITICAL] 10:29:14
Detection Match - Zone A
Dashboard Example Reference