PRM.DEV develops connected vehicle solutions: software and hardware modules that link vehicles to smart city infrastructure. We build systems based on V2X standards and connect vehicles to their surrounding environment: other vehicles (V2V), pedestrians (V2P), road infrastructure (V2I), networks (V2N), and the home or energy grid (V2H).
In automotive connectivity projects, we draw on expertise from the automotive industry, telecom, video and audio processing, embedded development, and cloud development
What Vehicle Connectivity Delivers
V2X communication helps integrate vehicles into the urban ecosystem and address real-world challenges:
Traffic management and transportation flow optimization
Collision and hazardous situation warnings
Predictive maintenance and condition monitoring
IT security auditing and protection against hacking and theft
Efficient use of urban infrastructure (parking facilities, transit stops, and charging stations)
What We Develop
OTA update management services
Telematics: remote diagnostics and vehicle management
Secure vehicle access and access control systems
In-vehicle multimedia (streaming and digital TV)
Toll road and transportation infrastructure solutions
ISA (Intelligent Speed Assistance)
Automotive dashcams and DVR systems
Smart parking: available space monitoring and analytics
Fleet management systems (car-sharing, taxi, and delivery)
Charging solutions and mobile charging systems. Learn more
Multimedia systems with OTA updates via UDS/Vector stack
V2X Directions We Work With
Data exchange with traffic lights, road signs, parking facilities, and other infrastructure objects. Real-world scenarios include route optimization, road event warnings, congestion reduction, and safety improvement.
Vehicle connectivity with management networks and services: updates, telematics, positioning, condition monitoring, and event reporting.
Cellular network-based solutions for real-time data transmission between vehicles, infrastructure, pedestrians, and network services.
Systems designed to protect vulnerable road users. We use cameras, sensors, radar, and LiDAR for pedestrian and cyclist detection and warning generation; automated response scenario integration is available where required.
Bidirectional energy flow scenarios where an electric vehicle can power a home or office during outages, or serve as a grid energy source during peak demand periods — in accordance with project and market requirements.
Technology Stack
Wireless Communication
DSRC/ETSI-G5, C-V2X/LTE-V2X, LTE Cat M1/NB-IoT, 2G/4G/LTE/5G, BLE, Bluetooth 5.x, Wi-Fi 5/6, ZigBee, NFC, and others
Edge and AI for Perception
Ambarella CVflow, TensorFlow, Renesas DRP-AI, PyTorch, OpenVINO, AWS IoT Core, Lattice SenseAI, Google Coral, NVIDIA Jetson, and others
Cloud Platforms
AWS, Microsoft Azure, Google Cloud, IBM Cloud, Oracle Cloud, Bosch IoT Suite
Wired Interfaces
Ethernet, RS-485, CAN/CAN-FD, LIN, FlexRay, USB, FPD-Link, and others
Programming Languages
C/C++/C#, Go, Python, JavaScript/Node.js, Ruby
Databases
PostgreSQL, MongoDB, DynamoDB, MySQL
M2M
DSRC/ETSI-G5, C-V2X, LTE Cat M1
Frameworks
React, Angular, Ionic
Mobile Applications
Android, iOS
Looking to connect your vehicles to smart city infrastructure via V2X? Contact us and we will propose an architecture, work plan, and project timeline.