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Cross-domain computing has become a new trend in autonomous driving chips

Jan 10 2024 2024-01 Connectors Analog Devices
Article Cover
With the rapid development of autonomous driving technology, cars are transforming from traditional mechanized transportation to intelligent mobile terminals. One of the core technologies to achieve automatic driving is chip technology. In recent years, with the rapid development of artificial intelligence and big data technology, the demand and application of autonomous driving chips are also increasing.

With the rapid development of autonomous driving technology, cars are transforming from traditional mechanized transportation to intelligent mobile terminals. One of the core technologies to achieve automatic driving is chip technology. In recent years, with the rapid development of artificial intelligence and big data technology, the demand and application of autonomous driving chips are also increasing.

Black Sesame Intelligence is an innovative company focused on the research and development of artificial intelligence chips, and they recently released a new automatic driving chip - Wudang series C1200. This chip uses cross-domain computing technology to promote the architectural innovation of autonomous driving chips.

Cross-domain computing refers to the data interaction and calculation between different computing domains, which can effectively integrate computing resources and data resources to achieve efficient computing and data processing. In the field of autonomous driving, due to the need to process large amounts of sensor data and real-time decision-making and control, the computing power and processing speed of the chip become key. The traditional centralized computing architecture often can not meet the requirements, but the cross-domain computing technology can assign computing tasks to multiple computing nodes for parallel processing, which greatly improves the computing efficiency.

Wudang series C1200 chip adopts advanced multi-core architecture and hardware accelerator, with powerful computing power and efficient data processing capability. At the same time, the chip also integrates a variety of sensor interfaces and communication interfaces, which can exchange high-speed and stable data with other systems of the vehicle. This allows the autonomous driving system to more accurately perceive the surrounding environment, track and analyze road conditions in real time, and make decisions and controls accordingly.

Compared with traditional autonomous driving chips, Wudang series C1200 chips have higher computing performance, lower power consumption and stronger reliability. Through the application of cross-domain computing technology, it can give full play to the advantages of multi-core processor and hardware accelerator, and realize efficient data processing and decision calculation. At the same time, the chip also supports a variety of programming models and development tools, which is convenient for developers to develop and optimize software.

There are several reasons why cross-domain computing has become a new trend in autonomous driving chips:

First of all, the automatic driving system needs to process a large amount of sensor data and complex algorithm calculation, which puts higher requirements on the computing power and processing speed of the chip. Traditional centralized computing architecture is often difficult to meet the requirements, but cross-domain computing technology can allocate computing tasks to multiple computing nodes for parallel processing, which improves computing efficiency.

Secondly, cross-domain computing technology can effectively integrate the resources of different computing domains to achieve the optimal allocation of global resources. In an autonomous driving system, different computing tasks may require different computing and storage resources, and cross-domain computing technology can dynamically allocate computing and storage resources according to the requirements of tasks, improving the overall performance of the system.

Thirdly, cross-domain computing technology can provide highly reliable computing and communication environment. In autonomous driving systems, the reliability of computing and communication is essential for safe driving. The cross-domain computing technology can distribute computing tasks to multiple computing nodes. Even if a node fails, the system can still run normally, improving system reliability.

Finally, cross-domain computing can provide a flexible environment for software development and optimization. In the autonomous driving system, different application scenarios may require different algorithms and software models, and cross-domain computing technology can support a variety of programming models and development tools, which is convenient for developers to develop and optimize software.

In short, the application of cross-domain computing technology will promote the architecture innovation of the automatic driving chip, improve the computing power and processing speed of the chip, and achieve a more accurate, safer and more reliable automatic driving system. Black Sesame Intelligent's Wudang series C1200 chip is based on this technology and is expected to make a breakthrough in the field of autonomous driving.

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