How Embedos Transformed Maintenance for A

Nuclear Power Plant Steel Supplier!

Executive Summary

Embedos Engineering LLP implemented their advanced asset monitoring solution for a leading steel manufacturer supplying critical components to nuclear power plants.

This case study examines how Embedos’s integrated three-device system—Em Edison (EE), Em Maxwell (EM), and Em Turing (ET), revolutionized the monitoring of high-capacity conveyor belts, preventing costly equipment failures, reducing maintenance costs, and ensuring timely delivery of components.

The Challenge

The steel manufacturer faced unique challenges in their conveyor belt system that directly impacted their nuclear power plant supply chain:

  • Unpredictable conveyor belt failures resulting in production delays for critical nuclear components.
  • High temperatures in the steel production environment causing accelerated bearing wear.
  • Stringent quality and reliability requirements from nuclear power plant clients.
  • Costly emergency maintenance procedures and replacement parts.
  • Need for 24/7 monitoring to maintain continuous production workflows.

The Solution: Conveyor Belt Monitoring System for Nuclear Power Plants

Embedos implemented their comprehensive monitoring solution featuring three specialized devices communicating over MODBUS to ensure reliable operation of the conveyor belt system:

  1. Em Edison (EE) – Master controller handling alerts, data logging, and communication.
  2. Em Maxwell (EM) – Expansion unit for additional I/O and specialized sensor inputs.
  3. Em Turing (ET) – Temperature monitoring unit with RTD inputs for bearing block monitoring.

The system monitors critical conveyor belt parameters including:

  • Temperature readings from 16 critical bearing blocks along the conveyor system.
  • Chain elongation measurements to detect wear before failure.
  • Flow switch status for cooling systems.
  • Water level detection in containment areas.
  • Height proximity sensors for material load monitoring.
  • SOI (Speed Of Impact) sensor inputs for material flow analysis.

Key Features Implemented for the Steel Manufacturer

  1. Nuclear-Grade Alarm System
    • Eight distinct alarm types with configurable thresholds customized for steel production.
    • Time delays calibrated to prevent false alarms in high-temperature environments.
    • Latching alarms that remain active until manually reset by authorized personnel.
    • Prioritized alerts for parameters critical to nuclear-grade steel production.
  2. Redundant Communication Channels for Continuous Monitoring
    • Ethernet connectivity integrated with the plant’s existing network infrastructure.
    • Secured WiFi for wireless monitoring in the steel manufacturing facility.
    • 4G cellular for remote monitoring and emergency SMS alerts to maintenance teams.
    • RS485/Modbus for reliable inter-device communication in electrically noisy environments.
  3. Comprehensive Reporting for Regulatory Compliance
    • Automated data logging at 5-minute intervals for critical bearing temperatures.
    • Complete event and alarm logging with timestamps for audit trails.
    • Shift-wise, daily, weekly, and monthly report generation.
    • Automated email delivery of reports to maintenance teams, management, and quality control.
  4. Steel Industry-Specific Web Interface
    • Real-time monitoring dashboard showing conveyor belt system status.
    • Configuration pages for customizing alarm thresholds to specific production runs.
    • Visual status indicators for maintenance scheduling.
    • Mobile-friendly access for on-floor monitoring by maintenance personnel.

Implementation in the Steel Manufacturing Environment

The implementation process was tailored to the steel manufacturing facility’s specific needs:

  1. Hardware Configuration for High-Temperature Environments
    • High-temperature rated sensors installed at critical bearing points.
    • Redundant power supplies to ensure continuous monitoring.
    • Specialized mounting systems to minimize vibration interference.
  2. Network Integration with Existing Steel Plant Infrastructure
    • Secure connection to the plant’s industrial network.
    • Isolated monitoring subnet to prevent cybersecurity vulnerabilities.
    • Integration with the company’s maintenance management system.
    • Backup communication channels for critical alerts.
  3. Nuclear Supplier Compliance Alarm Configuration
    • Customized alarm thresholds based on conveyor belt manufacturer specifications.
    • Time delays optimized through analysis of historical failure data.
    • Alert routing configured for 24/7 coverage across maintenance shifts.
    • Integration with plant-wide alert systems.
  4. Comprehensive Testing Protocol
    • Simulated failure testing for each monitored parameter.
    • Load testing during actual production conditions.
    • Verification of alert delivery across all communication channels.
    • Validation of data logging accuracy and reporting completeness.

Results and Benefits for Nuclear Supply Chain

The Embedos monitoring system delivered substantial improvements to the steel manufacturer’s operations:

  1. 37% Reduction in Conveyor Belt Downtime
    • Early detection of bearing temperature anomalies prevented catastrophic failures.
    • Proactive maintenance scheduling reduced emergency repairs by 64%
    • Critical alerts allowed for planned maintenance during scheduled production breaks.
    • Zero unplanned downtime events affected nuclear component delivery deadlines.
  2. Improved Maintenance Planning for Critical Infrastructure
    • Historical data enabled development of predictive maintenance schedules.
    • Weekly bearing temperature trend reports supported proactive replacement.
    • Complete maintenance history helped identify and resolve recurring issues.
    • 42% reduction in annual maintenance costs for conveyor system.
  3. Enhanced Safety in High-Temperature Steel Production
    • Continuous monitoring of bearing temperatures prevented potential fire hazards.
    • Immediate alerts for dangerous conditions allowed for rapid response.
    • Redundant alarm systems ensured critical parameter monitoring.
    • Zero safety incidents related to conveyor system failure since implementation.
  4. Significant Cost Savings Across Operations
    • 28% extension of conveyor belt and bearing life through optimized maintenance.
    • 64% reduction in emergency repair costs.
    • 37% decrease in spare parts inventory requirements.
  5. Nuclear Industry Supply Chain Reliability
    • Significantly improved conveyor system availability since implementation.
    • Complete documentation of system performance for nuclear industry audits.
    • Enhanced reputation as a reliable supplier to nuclear power plants.
    • Increased competitive advantage in the nuclear-grade steel market.

Technical Specifications for Steel Manufacturing Environment

  • Digital Inputs: Ruggedized 24VDC compatible inputs for proximity sensors, flow switches, and level sensors.
  • Digital Outputs: Industrial-grade 24V NPN outputs (500mA max) for alarms and control signals.
  • Analog Inputs: 4-20mA inputs with 15-bit resolution for precise monitoring.
  • RTD Inputs: 3-wire RTD temperature sensor inputs for bearing monitoring.
  • Communication: Dual isolated RS485 ports with Modbus RTU support.
  • Connectivity: Industrial Ethernet, secured WiFi, and 4G/LTE with backup power.
  • Power Requirements: 24VDC, 1A supply with UPS backup.

Conclusion: Transforming Steel Manufacturing for Nuclear Power Plant Supply

The Embedos monitoring system has transformed this maintenance strategy from reactive to proactive, particularly for critical conveyor belt systems essential to nuclear power plant production.

By providing real-time monitoring, immediate alerts, and comprehensive reporting tailored to the demands of nuclear industry suppliers, the system has significantly improved reliability, reduced costs, and enhanced the company’s competitive position in the nuclear-grade steel market.


Want the full technical details of this conveyor belt monitoring implementation?

Complete the form below to receive the comprehensive case study with technical specifications, configuration guides, and implementation details specific to steel manufacturing facilities supplying nuclear power plants.

  • Customized alarm configuration guidelines for conveyor belt systems.
  • Network security setup instructions for nuclear supplier compliance.
  • Web interface documentation with user permission levels.
  • Complete reporting capabilities for regulatory compliance.

The Embedos conveyor belt monitoring system has transformed our maintenance approach from reactive to proactive. We’ve decreased downtime by 37%, extended equipment life significantly, and maintained our perfect delivery record to nuclear power plant clients.

Grab Your Copy Of The Case Study, Now!

EM, EE & ET Device Connections _ Embedos _Conveyor Monitoring System

Sensor Configuration_ Embedos _Conveyor Monitoring System

Real TIme Display _ Embedos _Iot based Conveyor Monitoring System

SMS Configuration_ Embedos _Iot based Conveyor Monitoring System

Email Configuration_ Embedos _IoT based Conveyor Monitoring System

Your goals are of utmost importance to us

Looking for End to End Industrial Automation & IoT Solutions? 

 

Our Experts Want to speak to You!

Explore Other Case Studies

Air Control Valve Testing Through Automation. Embedos Case Study SS 1

Revolutionizing Air Control Valve Testing Through Automation. An Embedos Case Study

The Embedos ACV Testing Automation System represents a significant advancement in hydraulic component quality assurance.

EE+EM _ Use case for HUL _ Embedos

IoT-Based Washing Machine Testing: FMCG Performance Monitoring Case Study

Optimize your washing machine testing with IoT monitoring solutions that track water usage, RPM, temperature, and power consumption.

This case study showcases implementation of real-time data collection and comprehensive performance analysis for quality control and efficiency improvements.”

Vertical Tank Monitoring - Embedos - Em Bose ( EB ) 3.2″ HMI

Industrial Tank Level Monitoring with IoT

1) The Embedos EB Series ( EM Bose ) calcuates the volume of the liquid in the tank & displays its level. The calculation is done based on the inputs from a Pressure sensor that is mounted at the bottom of the tank.

2) The device displays real time values & level of the tank with a view of set points or Threshold Limits between which the liquid of interest should remain.

3) If the Liquid crosses either of the two setpoints, the device sets of a relay which is connected to a high wattage Industrial Lamp ( Bulb ) to indicate that the threshold has been crossed. Also, the device has a buzzer that goes off on the crossing.

Embedos Maxwel - EM - Modbus / CAN bus / IO Expander

Embedos IO Data Logger + 4G Gateway

The Embedos IO data logger is designed to log data to device as analog inputs, a pulse input which is to be converted to RPM value. The logger is able to also display real-time data on a webpage based utility.

The user can interact with the data-logger to configure and view all the settings and device parameters currently running on the device. The logger can store real-time data and send the same data via MQTT to a broker.

Embedo Em Dian – ( ED ) Enclosure

Dual Channel Analog Data Logger + 7” HMI

Deployment Type: Data Logger +7 Inch HMI Display

“Embedos Engineering – 7 inch Data logger HMI, Model ERA021. (Simultaneous 2 channels)

It has 7 inch touch screen display to monitor sensor data graphically. It has options to start and stop data logging facility.

(External Start Stop for each channel via DI) Has USB port for pen drive connection. You can download the data log in excel format for selected date and time. 2 nos. Digital outputs for set point. – Just NPN outputs.

Embedos_CAN based Forklift Reach Height Controller Display - main page

Can Forklift Controller – Reach Height Display

Deployment Year: 2018

Deployment Type: Data Logger + Display

Problem Statement: In narrow warehouses with high racks, the view and space to maneuver are often restricted.

The Embedos Forklift controller and display based on CAN Bus helps the driver with appropriate displays and assistance systems. This makes load handling safer and more efficient.

Embedos_CAN - J1939 Datalogging Dashboard showing decoded parameters in varied widgets

CAN-J1939 Data Logger & Modbus – TCP Gateway

This was deployed in 2021, to log a particular set of parameters from a Caterpillar Engine ECU and display logged data.

The Embedos Monitoring Software was used to visualize logged data from the ECU in the form of charts and gauges, display log files in .csv formats and give options & download all log files into the system

Embedos_Connection Diagram between Datalogger & Expansion Unit

Real Time Data Logger with Embedded Web App

Embedos Data Logger + Embedos Expansion IO Card take in an RS-485 input and  4 Analog Inputs Each to display Guages for 8 Analog Channels. Similarly displays a graph of the last 100 values of corresponding channels.

The Embedos Real Time software running on an Embedded Web Server on the master Data logger allows you to download data shown on the table in Excel, CSV or PDF formats directly.

Embedos_EDGE

Edge_Glove Test Controller

Deployment Year: 2019 – 2022

Deployment Type: Multiple IO Data Logger + Browser based Web App.

The EDGE as a GLT controller provides an internal Modbus Server to read the analog and Digital inputs and control digital outputs.

EDGE calibration, test and network configuration options have been added to the latest iteration of this application of the EDGE.

EmView-Vibration Monitoring Software - Spindle 1

Vibration Monitoring Software

The monitoring software stores historical data of each of the vibration units connected to it.

You can view this data in graphical form by right clicking on a card and selecting View History (Alternately, you can also Double Click on a card to open Graph window)

Embedos Engineering LLP

Embedos is an enabler of Edge Computing, Industrial IoT & Industry 4.0 - Hardware & Software Solutions.

Kindly enter details to allow a 1 - 1 personal consultation on Industry 4.0 Solutions.

Help us Help You leverage the power of IIoT!