Technology
Radio Frequency & Machine Vision Technologies
Position Imaging brings 20+ years of R&D in radio frequency and machine vision, backing one of the industry’s deepest indoor positioning and computer vision patent portfolios.
Our Foundations
Position Imaging’s patent portfolio is independently cited by 24 of the world’s leading technology, industrial, and logistics companies, spanning Consumer Electronics & Computing, Enterprise & Networking, Logistics & Commerce, and Automotive & Industrial, an independent signal of the reach and relevance of our intellectual property.
Radio Frequency & Signal Processing
GPS doesn’t reach indoors, costing retailers billions in lost inventory, wasted labor, and RTLS systems too fragile to scale. Position Imaging’s foundational patents solve this hard signal-processing problem at the hardware level, delivering centimeter-accurate tracking that’s affordable to scale and robust to real-world interference.
How we did it
13+ patents, granted 2014-2020, forming the signal-processing core beneath every other Position Imaging product.
This is the company’s original IP and its deepest moat: a foundational approach to precisely locating a radio-frequency tag using an array of receiver antennas, engineered from the outset to avoid the expensive per-antenna hardware that made earlier RF positioning systems too costly for mainstream use.
Low-Cost Multiplexed Receivers
A single receiver channel can time-share across an entire array of antennas instead of requiring dedicated hardware per antenna – cutting the electronics cost of a positioning system dramatically while preserving the accuracy needed for real-time tracking. A refined “cycling reference” design later split this into a dedicated reference channel and a measurement channel, further improving precision.
Extending Range Without New Wiring
Wireless relay stations let a positioning system add coverage and precision by introducing additional receive points that communicate wirelessly with a base station, without running new cable, and without the multipath penalty that a wired round-trip would introduce.
Resolving Signal Ambiguity
Phase-based positioning is inherently ambiguous. A phase measurement repeats every wavelength, so the same reading can correspond to multiple possible distances. Position Imaging’s signal-processing patents resolve this ambiguity and disambiguate between candidate solutions, a problem that has to be solved correctly for phase-based RF positioning to be usable at all.
Self-Calibrating Antenna Arrays
Deploying an RF positioning system traditionally required precisely surveying every antenna’s location by hand. Position Imaging’s calibration patents let a receiver array determine its own antennas’ relative position automatically, from a tag walked to a handful of known reference points, cutting installation time from a specialized, hours-long process to a routine setup step.
Sensor Fusion & Continuous Tracking
A raw RF position fix is just one data point; a single fix is easy. What determines whether a deployment survives beyond day one is a tracking system that holds up in a real building, with dead zones, signal collisions, server outages, and forklifts moving at speed. Turning that raw signal into something stable, continuous, and scalable enough to run a warehouse or guide a vehicle is a separate, equally hard problem.
How we did it
15+ patents, granted 2015-2024, extending the core RF engine into stable, scalable tracking systems.
RF & Inertial Fusion
Position Imaging’s tracking devices pair the RF position engine with onboard inertial sensors (accelerometers, gyroscopes, magnetometers), blended through Kalman filtering. The result is a system that keeps tracking smoothly through momentary signal loss or multipath interference, and that can power down its radio when a tag is stationary to extend battery life and waking automatically the instant motion resumes.
Vehicle and Broad-Area Tracking
The same positioning math extends to autonomous and guided vehicles – a vehicle-mounted receiver array determines its position relative to a tracked object or beacon, optionally combined with an absolute reference (e.g., GPS) carried in the same signal – and to broad, non-indoor geographic tracking for augmented and virtual reality applications operating beyond a single room.
Decentralized, Serverless Networks
Rather than relying on a central controller to calculate every position, a mesh of self-configuring nodes can broadcast their own identity and location, letting the system scale, self-heal, and resist RF interference without a single point of failure: a meaningful advantage over conventional real-time locating systems (RTLS) architectures.
The Scanner as a Position Source
A mobile barcode or RFID scanner’s own tracked location can be used to tag the location of whatever it just scanned, letting a handheld device serve as a mobile position source for inventory and asset placement, without requiring every tracked item to carry its own RF tag.
Computer Vision Logistics & Package Intelligence
Not everything worth tracking can carry an RF tag. Packages that go missing between the dock and the door, retail items lost to shrinkage, minutes workers waste searching shelves instead of restocking – these costs pile up because tagging every object isn’t practical. Vision fills that gap: cameras, depth sensors, weight sensors, and machine learning working together to confirm exactly what was placed, moved, or removed.
How we did it
24+ patents, granted 2018-2026, covering the hardware, software, and machine learning behind our smart-room and package-intelligence product lines.
Smart Shelving & Light Guidance
A shelf-mounted camera with a field of view fixed on the shelf below it can detect, from image comparisons alone, whether an object has been placed, moved, or removed – and a co-located directional light source (laser or LED) can then guide a person’s hand to exactly the right spot, whether that’s a drop-off location or the item they’ve come to retrieve.
Weight & Video Confirmation
Weight sensors cross-check what the camera sees, flagging a mismatch between the expected and actual handling of an item, catching errors or improper removal that vision alone might miss. Continuous video monitoring adds a further layer, detecting rule-violating handling (a thrown package, the wrong item taken) and triggering real-time alerts.
Purpose-Built Hardware
The camera, depth sensor, and directional light live together in a single, rail-mountable module, engineered for fast retrofit into existing shelving, with a companion calibration technique that aims the light precisely at a target in one motion, without the trial-and-error most laser-guidance systems require.
Self-Improving Machine Learning
A deep neural network identifies objects and reads their labels or barcodes automatically. When it fails to recognize something, the system asks a person once, then retains itself on that image, compounding accuracy over time across every deployed unit without manual retraining cycles.
Package Rooms & Kiosks
The same underlying technology powers full package-management deployments: cameras and beam-break sensors (for thin items like envelopes that vision alone tends to miss) register drop-offs and pickups, notify recipients, and guide them to the correct location – deployable as a wall-mounted system or a free-standing kiosk with an integrated scanner.
Enterprise Navigation, AR/VR & Retrieval Systems
Raw data sets aren’t enough; applied direction is. A shopper who can’t find what they came for, curbside pickup delayed by a misplaced bag, an AR/VR experience that breaks immersion when tracking loses line of sight – these moments drive people away. The technologies above become genuinely differentiated when combined into deployable answers to problems like these, not left as standalone components.
How we did it
20+ patents, granted 2017-2026, covering three applied product lines built on the platforms above.
Personalized Indoor Navigation
Combining RF-based identification at a building’s entrance with computer-vision tracking once inside, this system recognizes a visitor’s mobile device, retrieves their shopping list or service request, and guides them individually through a store or facility – using infrastructure (RF nodes, cameras) many enterprises already have in place.
AR/VR Tracking & Haptic Feedback
The same RF positioning core tracks a handheld controller or headset for virtual and augmented reality applications, registering its position within a virtual environment without the lighting and line-of-sight limitations that constrain camera-only tracking, and can trigger haptic feedback the instant a tracked device reaches a point of interest in the virtual world.
Retrieval Hardware for Curbside & In-Store Pickup
A compact tag – closer to a security clip than a barcode label – attaches to an item set aside for pickup and lights up or sounds when the correct customer approaches, flagging a mismatch if the wrong person tries to take it. Companion patents cover a ratcheting attachment mechanism for securing the tag to luggage, equipment, or shelving, and an RF/NFC wake-up circuit that meaningfully extends battery life by keeping the tag’s processor asleep until a signal actually arrives.
IP Portfolio
72 Granted Patents.
61 Pending Applications.
Position Imaging’s patent portfolio spans all seven technology areas above — representing over two decades of proprietary innovation in RF positioning, computer vision, and AI. If you’re researching licensing opportunities or evaluating PI’s IP for your industry, the patent portfolio is where to start.
Third-Party Validation
Independently Cited by the World’s Leading Technology Companies
Consumer Electronics & Computing
- Apple
- Samsung
- Sony
- LG
- Canon
- Panasonic
- Intel
- Qualcomm
Enterprise & Networking
- Hewlett Packard Enterprise
- Aruba Networks
- Juniper Networks
- Honeywell
- Bosch
- Siemens
Logistics & Commerce
- Amazon
- FedEx
- UPS
- Zebra Technologies
- Under Armour
Automotive & Industrial
- Nissan
- Toyota Industries
- Mitsubishi Electric
- Rockwell Automation
- Schneider Electric
Where This Technology Ships Today
Smart Package Room™
Secure package management and retrieval for multi-residential and business properties. Built on: Computer Vision & Package Intelligence.
iPickup™
Scalable BOPIS and eCommerce fulfillment for boutique and big-box retail stores. Built on: Enterprise Navigation, AR/VR & Retrieval Systems; Computer Vision & Package Intelligence.
Amoeba™ RTLS
Accurate real-time asset location for warehousing, logistics, and manufacturing. Built on: Radio Frequency Positioning & Signal Processing; Sensor Fusion & Continuous Tracking.
Position Imaging’s patent portfolio is actively growing. For a full, current list of issued and pending patents, or to discuss a licensing opportunity, contact our licensing team.
Ready to Go Deeper?
Our engineering team is available to discuss specific technology applications, licensing opportunities, or partnership inquiries.