Introduction to Iris Edge™
Camera-based Vibration Analysis to your IOT Platform
RDI Technologies Iris Edge™ is a camera-based vibration analysis tool that collects large-scale data and seamlessly transmits it to your IoT platform. It makes deploying cameras for vibration monitoring easier than ever before while delivering all the benefits of Motion Amplification®. With Iris Edge™, users can monitor, trend, alert, diagnose, and troubleshoot using a single camera to identify faults and prevent unscheduled downtime.
Iris Edge™ Key Highlights include:
- Easy and flexible deployment through PoE, pan-tilt and autofocus
- Incorporate the full power of Motion Amplification® into your IoT strategy
- Integrate vibration data into data systems through MQTT
- Monitor multiple assets with one camera through user defined pan/tilt camera views and virtually unlimited measurement locations
- Trend, historize and display data through easy-to-use dashboards
How does Iris Edge™ work?
Iris Edge™ combines PoE, a pan-tilt mount and auto focus to make deploying cameras for vibration monitoring easier than ever before while delivering all the benefits of Motion Amplification®. With Iris Edge™, users can monitor, trend, alert, diagnose, and troubleshoot an even larger field of view and provide the most flexible, scalable, and easiest deployment method for monitoring your assets. No need to contact your assets or even turn them off during installation, simple install a camera and monitor everything it can see.
How does Motion Amplification® work?
00:00 – A revolutionary way to visualise vibration problems
00:38 – What is Motion Amplifcation technnology?
00:52 – From 2 or 3 sensors on a machine, to 2 million!
01:11 – What applications would this work well on?
01:41 – What is the focal range of the camera?
02:01 – How easy is it to capture the data?
02:30 – Seeing really is believing – it’s so visual!
02:59 – Is it comparable to ODS analysis?
03:14 – What vibration readings can be taken?
04:08 – List of fault types with MA technology
Key Benefits of Iris Edge™
- Find Faults Quicker: Identify equipment faults and defects quicker and easier with the power of Motion Amplification®.
- Time Saving: Eliminate multiple trips to your site for camera and sensor setup and monitor multiple assets without manual adjustments with our new remote pan/tilt and autofocus features.
- Trend Key Data: Trend your data and the performance of assets over time to improve scheduled maintenance.
- Flexible Data Collection: Collect data as frequently as needed with unlimited, contactless vibration data points.
- Automatic Exports: Improve your workflow and save time by automatically exporting data into your existing systems with MQTT publishing.
- Grow the Network: Expand your monitoring system to collect more data by adding more Edge devices over time.
- One Dashboard: Gain actionable insights and improve communications by viewing your data from all Iris Edge™ and Iris CM™ devices in one dashboard.
- Speed to Access: Deploy your new system quickly using one PoE cable for data and power.
Iris Edge™ with Motion Monitor
“Monitoring multiple assets with one camera through user defined pan/tilt camera views and virtually unlimited measurement locations is next level, especially for process monitoring.”
Simplified Deployment
Deploy your new system quickly using one PoE cable for data and power. Make changes quickly with remote access, auto focus, and an optional cellular connection. Collect data as frequently as needed with unlimited, contact-less vibration data points. Expand your monitoring system to collect more data by adding more Iris Edge™ and Iris CM™ devices over time.
Freedom to Move Your Data
Improve your workflow and save time by automatically exporting data into your existing systems with MQTT publishing. Easily send your data AI/ML programs, SCADA systems, historian, or data lake through one protocol. View your data in a dashboard for monitoring and trending.
Motion Amplification®
Visualise machinery and structural movements. Accurately measure displacement data that’s generated by millions of camera pixels. Solve underlying problems.
What is MQTT?
MQTT (Message Queuing Telemetry Transport) is a standardized communication protocol that has become one of the predominant standards used on the Internet of Things (IoT) and other applications. MQTT is commonly used throughout the industry and is easily integrated, making it the preferred data transmission and sharing protocol. Iris Edge™ uses MQTT for data transmission, making it easy to deploy and streamlining the integration of Motion Amplification® into your facility’s AI/ML programs, SCADA, historian, or data lake through one protocol.
“We are excited about the potential for process monitoring using Iris Edge™ to capture, visualise and analyse all in one platform, especially because of its easy and flexible deployment through PoE, pan-tilt and autofocus!” – Senior Process Engineer, Food & Beverages
Which software features are available?
Motion Amplification®
TIME, WAVEFORMS, SPECTRA, AND ORBITS: Unlimited number of regions can be drawn in the video to measure displacement. All measurements are simultaneous. | TRANSIENT MOTION AMPLIFICATION®: See Motion Amplification® of small motions as an object moves through the scene. | DATA EXPORT: Export waveform, spectra, orbits, and object paths to .csv file. Data can be exported via MQTT protocol for use in other systems. |
STABILIZATION: Entire frame and region-based image stabilization | TRANSIENT PLOT PATH: Show the path of an object in the video as well as in the plot | MOTION MAPS: Show colorized image overlays of individual frequencies or overall motion. |
TOP FREQUENCY FILTERING: Automatically determine frequencies of interest and create multiple filtered data sets with a single click. |
Iris Edge™
STATUS VIEW: Review data in with dashboards | MONITORING: Pan/Tilt | ROI TRIGGERS: Waveform Pk-Pk; Spectrum Digital Overall; Spectrum Frequency Band |
OPTICAL TRIGGERS: Virtual camera-based sensors | NOTIFICATIONS: Email notifications from triggers with Motion Amplification® videos viewable from the cloud. |
What are the Iris Edge™ specifications?
PAN/TILT Tilt: +70 ° and -70 ° of movement from center Pan: +90 ° and -90 ° of movement from center Required Clearance: 14” L x 14” W x 12” H Power supplied with system: Yes | PAN/TILT ASSEMBLY POE ADAPTER PoE Standard: IEEE® 802.3bt, PoE ++ Type 3 Splitter Minimum Output Power: 12V, 40W, Integrated | PAN/TILT ASSEMBLY AC ADAPTER Power Input: 100-240V, 50-60Hz, 1A max @ 100V Power Output: 12V, 60W |
IoT DATA TRANSMISSION Data transmitted over MQTT | FREQUENCY RANGE 0 CPM (0 Hz) at 5,100 CPM (85 Hz) at 170 fps Maximum: 39,000 CPM (650 Hz) at 1,300 fps with reduced resolution | INDUSTRIAL GRADE CAMERA High resolution CMOS sensor, high definition with auto-focus, Environmental Rating: IP51 |
CAMERA POE ADAPTER PoE Standard: IEEE® 802.3bt, PoE ++ Type 4 Splitter Minimum Output Power: 19V, 60W, Integrated | CAMERA AC ADAPTER Power Input: 100-240V, 50-60 Hz, 2A max @ 100V Power Output: 19V, 120W | SAMPLE RATE 170 fps in high definitions, up to 1,300 fps at reduced resolution. |
MOTION AMPLIFICATION FACTOR® 1-500X |
Iris Edge™ Webinars
February 27th, 6pm GMT, via Zoom
Introduction to the Iris Edge™ from RDI Technologies founder and CEO, Jeff Hay and Mike Ciocys. The Webinar covers Iris Edge™ in depth and includes examples of the technology in use.
Motion Amplification® Case Studies
Case 1 – Vertical Water Pump Running in a Resonant Condition
A combination of the use of variable speed drives and swapping out old heavy cast motors for lightweight energy efficient ones which change the system natural frequency is a common problem. Some significant stiffing is required on this one to move the natural frequency away from the operating speed range of the pump.
This video shows how Motion Amplification® technology can be used for resonance bump testing of components.
Case 2 – Resonance Bump Testing of Components
Case 3 – Transient and Bump Test Readings
Baselining a print machine, using traditional Vibration Analysis. Then Utilizing the IRIS M camera to visualize the problem. Followed up with Transient and bump test readings.
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Last updated: 19th September 2024
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