Intelligent cabin system for automobile and automobile adopting system
An intelligent and cockpit technology, applied to vehicle components, electrical components, circuits or fluid pipelines, etc., can solve the problems of lack of comprehensive means and difficulty in overcoming power consumption and heat of chip integration
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Embodiment 1
[0068] Reference attached figure 1 , showing the intelligent cockpit system of one machine with multiple frequencies of the present invention, including vehicle infotainment system, digital virtual instrument panel, left rear seat entertainment system, right rear seat entertainment system, vehicle navigator, SOC chip (IntelApollo lake) and MCU chip. It is characterized in that the intelligent cockpit system is connected to the above five subsystems through a SOC chip, receives information sent by each subsystem, and controls each subsystem, thereby integrating the above five subsystems into a unified intelligent cockpit system. The smart cockpit system virtualizes the hardware resources of the SOC chip through virtualization technology, abstracts the physical resources into a virtual resource pool, then divides the virtual resources, and creates two virtual machines on the virtual resource pool according to user needs. Each virtual machine runs a different operating system ...
Embodiment 2
[0070] 50 mL of excess propionic acid was added to 4 g of beryllium oxide ceramic powder (obtained from Jiangsu Dingqi Technology Co., Ltd., with an average particle size of about 15 nm), and after stirring at room temperature for 24 hours, the precipitate formed was collected by centrifugation as a wet filter cake, and washed 3 times with ethyl acetate to remove excess propionic acid, the wet filter cake of undried beryllium oxide ceramic powder modified by propionic acid was added to 50 g of n-butanol and toluene in a weight ratio of 1:1 In the co-solvent, it was ultrasonically treated for 1 hour, and the precipitated solid was completely dispersed in the co-solvent of n-butanol and toluene to obtain a colloidal solution of nano-beryllium oxide ceramic powder particles modified by propionic acid.
[0071] 30g poly(bisphenol A-co-epichlorohydrin) is dissolved in the co-solvent of 200mL n-butanol and toluene, the nano-beryllium oxide ceramic powder particle colloidal solution i...
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