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Autonovous' data collection kit consists of stereo camera, automotive radars, Inertial Measurement Unit (IMU), and WiFi connectivity; and also a bespoke data acquisition software compatible with the hardware components . This data collection kit is portable, fully customizable in terms of the camera and radar lay-out and also offers remot
Autonovous' data collection kit consists of stereo camera, automotive radars, Inertial Measurement Unit (IMU), and WiFi connectivity; and also a bespoke data acquisition software compatible with the hardware components . This data collection kit is portable, fully customizable in terms of the camera and radar lay-out and also offers remote access to the user to control the data collection process.
Our kits are designed to meet these key hardware design requirements:
The camera typically uses visual recognition technology to detect and identify objects, while the radar uses radio waves to measure the distance and speed of objects. Together, they can create a comprehensive picture of the vehicle's surroundings and collect the data in real time. Data collected by the camera and radar can also be used to
The camera typically uses visual recognition technology to detect and identify objects, while the radar uses radio waves to measure the distance and speed of objects. Together, they can create a comprehensive picture of the vehicle's surroundings and collect the data in real time. Data collected by the camera and radar can also be used to develop and improve ADAS technology, as well as to enhance autonomous driving systems.
Our system design's ultimate objective is to have the data acquisition setup capable of synchronous reading and recording data from all sensors at a stable 30 samples/second. To ensure proper system performance, the objective is broken down into requirements, including:
Req. I: The system must capture different sensors' output simultaneou
Our system design's ultimate objective is to have the data acquisition setup capable of synchronous reading and recording data from all sensors at a stable 30 samples/second. To ensure proper system performance, the objective is broken down into requirements, including:
Req. I: The system must capture different sensors' output simultaneously with a delay in the order of microseconds.
Req. II: The system must collect sensor data at a rate of 30 samples/sec.
Req. III: Sensors configurations and data acquisition configurations must be easily adjustable.
Req. IV: The data acquisition system must capture and record sensor data for at least 5 minutes, with a 30 samples/sec rate.
Req. V: Adding and removing sensors should be easy and error-free.
Req. VI: The software should be capable of previewing live sensor data for adjustment purposes.
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