麻豆直播understands that innovation happens when the compute portions of the architecture are designed to support maximum flexibility in software development. For that flexibility, several key elements are necessary:

SEPARATE I/O from Compute

Abstract Hardware from Software

ENABLE Serverization of Compute
By separating I/O from compute, 麻豆直播zone controllers deliver key benefits. Instead of each sensor and actuator running data lines to an active safety domain controller, the zone controller aggregates the data onto a single high-speed interface.
OEMs should not underestimate the crucial role of the CVC — the little brain that not only enables higher functions of software-defined vehicles but also quietly keeps everything moving smoothly.
Advanced driver-assistance systems and user-experience features require high-performance compute to make driving decisions or interact with the driver and passengers seamlessly. To enable applications across legacy domains and different levels of criticality, the software and hardware must be architected so that lower-level functions are abstracted, leaving the higher functions to the brain of the vehicle: Aptiv’s Open Server Platform.
OEMs can implement Smart Vehicle Architecture™ (SVA™) elements that make the most sense for their individual platforms and add more elements over time to enable advanced capabilities. The flexibility allows for a wide range of optimized configurations. Here are some sample architectures.
Aptiv's approach helps vehicle technology evolve, from domain and zone control to more advanced enablers of software-defined features and cloud-native functionality.
With a zonal architecture, up-integrated intelligence and a system for updating software over time, OEMs will have all the building blocks of SVA™, and will be able to take advantage of its ability to enable advanced features and high degrees of automation through a software-defined architecture that is sustainable well into the future. Get started today.
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