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    • 1. 发明申请
    • INTER-VEHICLE COMMUNICATION USING DIGITAL SYMBOLS
    • US20200329103A1
    • 2020-10-15
    • US16824271
    • 2020-03-19
    • Weining Tan
    • Weining Tan
    • H04L29/08
    • The disclosure presents a set of novel methods and apparatus designed to add a communication ability to an external surface of a vehicle, using an animated visible light electronic message device, by selectively displaying pre-defined digital symbols. The addition of the display to a vehicle allows the vehicle to communicate with other vehicles, persons, or devices without requiring any functionality change to the other party. The new methods and apparatus also enable two vehicles that are both installed with the message devices to communicate with each other. These message devices can be installed on surfaces which include, but are not limited to, windshields of the vehicle, the top of the vehicle, the front and back bumper of the vehicle or other windows of the vehicle. The digital symbols displayed are pre-defined by the device manufacturer and not modifiable or creatable by the vehicle user. The digital symbol may be in the format of a blockchain asset that is strictly controlled and managed by the device manufacturer's eco-system. However, the vehicle user can choose which symbol to display and the way it is displayed, for example, the color, position, size, animation speed, and time and duration. The animation speed can either be fast or close to still. The display parameters can also be controlled automatically by pre-defined scripts, rules, or an artificial intelligence (A.I.). The new inter-vehicle communication networking topology ranges from point-to-point transmission and single-to-multiple broadcasting, to multiple-to-multiple and nested networks.
    • 2. 发明授权
    • Adding new imaging capabilities to smart mobile device
    • US10757396B2
    • 2020-08-25
    • US15880704
    • 2018-01-26
    • Weining Tan
    • Weining Tan
    • H04N5/225H04M1/725G02B27/01H04N13/282H04M1/05H04N13/218H04N13/344
    • The disclosure presents novel methods and apparatuses to add new imaging functions to an existing smart device, comprising a plate accessory with one or more optical components that is attached to the smart device. The plate can be rotated to the front of the screen and supported at more than one sides of the smart device. The imaging function added could be a virtual reality viewer or a wide light field camera. The plate can also be worn on one's head by self-contained retractable brace, stands and strap. If the plate is moved close to the smart device's cameras, the optical components can form multiple images from multiple viewing angles of the scene onto the camera sensor. The captured images can be used to generate stereoscopic 3D or light field 4D recording of the scene by computational photographic algorithms. The attaching accessory is very light, portable, flexible, affordable and easy to use. Compared to the competitive methods, the present disclosure is a smallest wearable virtual reality smartphone case viewer that can be carried in pockets, and a method and apparatus to enable existing traditional phone cameras to capture light field 4D images and videos.
    • 5. 发明授权
    • Inter-vehicle communication using digital symbols
    • US11146930B2
    • 2021-10-12
    • US16824271
    • 2020-03-19
    • Weining Tan
    • Weining Tan
    • H04W4/46H04L29/08H04W4/48
    • The disclosure presents a set of novel methods and apparatus designed to add a communication ability to an external surface of a vehicle, using an animated visible light electronic message device, by selectively displaying pre-defined digital symbols. The addition of the display to a vehicle allows the vehicle to communicate with other vehicles, persons, or devices without requiring any functionality change to the other party. The new methods and apparatus also enable two vehicles that are both installed with the message devices to communicate with each other. These message devices can be installed on surfaces which include, but are not limited to, windshields of the vehicle, the top of the vehicle, the front and back bumper of the vehicle or other windows of the vehicle. The digital symbols displayed are pre-defined by the device manufacturer and not modifiable or creatable by the vehicle user. The digital symbol may be in the format of a blockchain asset that is strictly controlled and managed by the device manufacturer's eco-system. However, the vehicle user can choose which symbol to display and the way it is displayed, for example, the color, position, size, animation speed, and time and duration. The animation speed can either be fast or close to still. The display parameters can also be controlled automatically by pre-defined scripts, rules, or an artificial intelligence (A.I.). The new inter-vehicle communication networking topology ranges from point-to-point transmission and single-to-multiple broadcasting, to multiple-to-multiple and nested networks.
    • 10. 发明授权
    • Hybrid image decomposition and projection
    • 混合图像分解和投影
    • US09305384B2
    • 2016-04-05
    • US14238585
    • 2012-08-14
    • Weining TanSteven Charles Read
    • Weining TanSteven Charles Read
    • G06T11/60G06T5/00G06T3/00G06T11/00H04N9/31
    • H04N9/3185G06T3/0093G06T5/002G06T5/007G06T11/001G06T11/60H04N9/3147H04N9/3182
    • Hybrid image projection systems and methods can superimpose image components of an input image. An input image can be divided into smaller regions and at least one parameter of each region can be determined. The input image can be decomposed based on the parameter of each region into multiple, less correlated, orthogonal or quasi-orthogonal image components. Each projector can display respective image components so that the images projected may be optically superimposed on a screen. The superposition of orthogonal or quasi-orthogonal image components can result in superposition of images in an existing multi-projector image systems being more insensitive to inter-projector image misalignment. Superimposing orthogonal or quasi-orthogonal images can be used to avoid visible image degradation, and provide more robust image quality in a multiple projector system implementation.
    • 混合图像投影系统和方法可以叠加输入图像的图像分量。 可以将输入图像分割成更小的区域,并且可以确定每个区域的至少一个参数。 输入图像可以基于每个区域的参数分解为多个,较少相关的,正交的或准正交的图像分量。 每个投影仪可以显示相应的图像分量,使得投影的图像可以光学地叠加在屏幕上。 正交或准正交图像分量的叠加可以导致在现有的多投影图像系统中的图像的叠加对于投影机之间的图像失准更不敏感。 可以使用叠加正交或准正交图像来避免可见的图像劣化,并且在多投影仪系统实现中提供更加鲁棒的图像质量。