Artificial Intelligence: From Design to Deployment
Demo Booth Title |
Demo Description |
Surrogate AI Models for CAE Applications |
- Build a design of experiments (DOE) table for component design
- Create surrogate AI models from FEA/CFD simulations
- Run multiobjective design optimization studies using AI models
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Enabling Industry 4.0 |
- Secure data exchange with smart industrial plant sensors and servers
- Develop predictive maintenance, smart manufacturing, and SCADA applications
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Hardware Deployment of AI Models |
- Low-code aspect of AI workflow
- Scope of hardware selection within the auto-code generation workflow
- AI models to target hardware deployment
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Communications and Radar Systems: From Design to Deployment
Demo Booth Title |
Demo Description |
System-Level Simulation of 5G, WLAN, and Bluetooth Networks |
- Model 5G networks: MU-MIMO, scheduling, PHY abstraction
- Model WLAN 802.11be networks: 320MHz, 4096-QAM, and multi-link operation (MLO)
- Model Bluetooth networks: piconet, LE audio, mesh
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RF System Design and Analysis |
- Model large arrays
- Design feeding networks using RF PCB components
- Optimize antenna performance using machine learning algorithms
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Mission Engineering Analysis for System-of-Systems |
- Evaluate system-of-systems for combat and rescue missions
- Decompose mission requirements across engineering levels for better behavioral models
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Design and Verification of Mixed-Signal Systems Through MATLAB and Simulink Integration Workflows |
- Designing PLLs, ADCs, and DACs using Mixed-Signal Blockset
- Performing verification of mixed-signal integrated circuits
- Performing post-processing using the Mixed-Signal Analyzer app
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Design and Test Wireless Applications Using MATLAB and SDR |
- Spectrum monitoring: Signal classification using deep learning
- Satellite communication: End-to-end DVB-S2 design and test
- Wireless LAN: Recover and analyze WiFi packets
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MATLAB to C/C++ and SystemC |
- Generate efficient C/C++ and SystemC code from MATLAB for embedded systems
- Use an easy workflow to deploy generated code on embedded CPUs or FPGAs
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Implementing Adaptive Beamformers on RFSoCs |
- ZCU111 RFSoC Adaptive Beamformer with 4 channels
- Places nulls in interference locations and maximizes beam pattern for steering direction
- Interactively steers angles for interference and beam pattern at run time
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Implement a QPSK Transmitter and Receiver on Zynq |
- Deploy QPSK transmitter and receiver HDL algorithms on Zynq ZC706
- Transmit a text message and recover it using receiver
- Visualize received QPSK constellation
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Rapid Prototyping of Radar, Satcom, and Wireless Applications on RFSoCs |
- Wideband radar signal detection using RFSoC
- DVBS2 receiver on RFSoC
- WLAN 802.11AC receiver on RFSoC
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Electrification: From Prototyping to Production
Demo Booth Title |
Demo Description |
Accelerating Electric Vehicle Development and Testing Using System-Level Simulation |
- Performance analysis: Component sizing and selection, range prediction
- Ride and handling analysis: Riders' comfort, speed bumps, ABS testing
- Controller development and testing: Vehicle control unit, battery management and thermal management
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Multicore Modeling on Infineon AURIX TC4x for Motor Control |
- Partition the control algorithm to run on multiple CPUs to achieve higher loop rate
- Multicore modeling overview
- Parallel processing modeling overview
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Motor Control: From Modeling to Deployment |
- Model and parameterize your motors
- Autotune your speed and current controllers with Field Oriented Control Autotuner
- Deploy your motor control algorithms to your desired target hardware
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Model and Deploy Power Conversion Applications on TI C2000 Hardware |
- Implement power conversion algorithms on TI C2000 processors
- Make use of co-processors (CLA) to improve the efficiency of algorithm execution
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Model and Deploy IoT Applications on STM32 Processors |
- Model and deploy IoT applications on STM32 processors
- Sensors and communication peripheral supports for STM32
- Optimized code generation for STM32
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Real-Time HIL Testing on FPGAs |
- Real-time HIL simulation on FPGA
- Simscape HDL workflow
- Workflow extending support for linear and non-linear networks including motor models
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Robotics and Autonomous Systems: Development to Testing and Deployment
Demo Booth Title |
Demo Description |
Simulate and Deploy UAV Applications with SIL and HIL Workflows |
- Set up communication with PX4, MAVLink, and QGroundControl
- Simulate safe vertical takeoff and landing of UAVs using lidar data
- Inspect the flight behavior in Unreal Engine
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Virtual World and Algorithm Development for Automated Driving |
- Create virtual world (scene/scenarios) from specifications and recorded data
- Interoperate with ASAM standards and build road networks from HD map services
- Develop algorithms for perception, sensor fusion, planning and control systems
- Test algorithms with a virtual testing environment
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HIL Testing for an ADAS ECU in a Virtual Environment |
- Establish interfaces for ECU under test
- Generate code and deploy subcomponents on HIL machines
- Address synchronization in a closed loop setup with multiple machines
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Intelligent Bin Picking with a Semi-Randomized Distribution Using Universal Robots UR5e Cobot |
- Detect the positions and orientations of objects in a semi-randomized distribution
- Create motion planning and trajectory generation for the cobot
- Pick and place object commanding Universal Robot UR5e cobot
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Service-Oriented Architectures (SOA) for Designing and Deployment in Automated Driving |
- Architect services for adaptive cruise control using System Composer
- Design and simulate algorithm behavior for vehicle actuation (brakes, acceleration)
- Use automatic code generation and deployment as service (Adaptive AUTOSAR, ROS 2, DDS, etc.)
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Model-Based Systems and Software Engineering
Demo Booth Title |
Demo Description |
System Thinking Approach for Complex Systems Development |
- MBSE implementation for complex automotive and aerospace development
- Requirements authoring and management
- System architecture development and trade study
- MBSE to Model Based-Design transitioning
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Software Security and Safety for Modern Embedded Software |
- Addressing software issues using formal methods–based testing
- Testing software in continuous integration (on premises, cloud) and left-shift verification
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