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    • 1. 发明授权
    • Microwave system utilizing elevational scanning by frequency hopping
    • 微波系统利用跳频进行扫描
    • US08125373B2
    • 2012-02-28
    • US12842078
    • 2010-07-23
    • Jae Seung LeePaul D. Schmalenberg
    • Jae Seung LeePaul D. Schmalenberg
    • G01S13/00G01S13/08
    • G01S13/931G01S13/34G01S13/347G01S13/426
    • For use in conjunction with a microwave antenna having a radiator array configured to scan in a horizontal direction, a method for scanning in the vertical direction. A first FMCW microwave signal having a first bandwidth is transmitted at a first microwave frequency and the echo, if any, is received by the radiator array. A second FMCW microwave signal having a second bandwidth is also transmitted at a different center frequency and the echo, if any, is received by the radiator array. The different frequencies cause an elevational shift in the received signal. The receipt of the echoes is then processed to identify the location or locations of the object or objects causing the echo and communicating such location or locations to a user.
    • 结合具有配置成沿水平方向扫描的散热器阵列的微波天线结合使用在垂直方向扫描的方法。 以第一微波频率发送具有第一带宽的第一FMCW微波信号,并且如果有的话,由散热器阵列接收回波。 具有第二带宽的第二FMCW微波信号也以不同的中心频率发送,并且如果有的话,则由散热器阵列接收回波。 不同的频率导致接收信号的高位偏移。 然后处理回波的接收以识别导致回波的对象或对象的位置或位置,并将这些位置或位置传送给用户。
    • 4. 发明授权
    • Occupant detection and imaging system
    • 乘员检测和成像系统
    • US08260502B2
    • 2012-09-04
    • US12427949
    • 2009-04-22
    • Serdar H. YonakPaul D. Schmalenberg
    • Serdar H. YonakPaul D. Schmalenberg
    • B60R22/00
    • B60R21/0134B60R2021/01272B60R2022/4816B60R2022/4866
    • An active safety system for a machine and a process for operating the active safety system are disclosed. The active safety system an active ultrasonic array having a plurality of ultrasonic transducers. The plurality of ultrasonic transducers can propagate a plurality of sound waves, receive a plurality of echo waves and transform the plurality of echo waves into a plurality of electrical pulses. The plurality of electrical pulses can be transmitted to and received by a three-dimensional imaging circuit. The three-dimensional imaging circuit can generate a 3D image from the plurality of electrical pulses and an electrical control unit can determine a location, size and geometric orientation of the 3D image. The electronic control unit can also provide an occupant safety parameter as a function of the location, size and geometric orientation of the 3D image and transmit the occupant safety parameter or an instruction related to the occupant safety parameter to an occupant safety system and/or an occupant warning system.
    • 公开了一种用于机器的主动安全系统和用于操作主动安全系统的过程。 主动安全系统是具有多个超声换能器的有源超声波阵列。 多个超声换能器可以传播多个声波,接收多个回波并将多个回波变换为多个电脉冲。 多个电脉冲可以传输到三维成像电路并由三维成像电路接收。 三维成像电路可以从多个电脉冲生成3D图像,并且电子控制单元可以确定3D图像的位置,大小和几何取向。 电子控制单元还可以根据3D图像的位置,尺寸和几何取向提供乘员安全参数,并将乘客安全参数或与乘员安全参数相关的指令发送给乘员安全系统和/或 乘客预警系统
    • 7. 发明授权
    • Waveguide to plural microstrip transition
    • 波导到多个微带过渡
    • US08089327B2
    • 2012-01-03
    • US12400027
    • 2009-03-09
    • Alexandros MargomenosPaul D. Schmalenberg
    • Alexandros MargomenosPaul D. Schmalenberg
    • H01P5/107
    • H01P5/107
    • A waveguide to microstrip transition having a waveguide open at one end. A dielectric substrate includes a first and a second side and a ground plane covers the first side of the substrate. The dielectric substrate overlies the waveguide opening so that the ground plane faces the waveguide and an opening in the ground plane registers with the waveguide opening. A back short having a housing is positioned on the second side of the dielectric substrate. The back short housing forms a cavity which registers with at least a portion of the ground plane opening so that microwave energy from the waveguide passes through the dielectric substrate and into the cavity defined by the back short housing. The back short housing has at least one opening to the cavity along the second side of the dielectric substrate. A pair of spaced apart microstrips on the second side of the substrate each have a free end positioned in the cavity so that the free ends of the microstrips are spaced apart from each other.
    • 波导到微带转换,其波导在一端开口。 电介质基板包括第一侧面和第二侧面,并且接地面覆盖基板的第一面。 电介质衬底覆盖波导开口,使得接地平面面向波导,并且接地平面中的开口与波导开口对准。 具有壳体的背部短距离定位在电介质基板的第二侧上。 后短壳体形成空腔,其与接地平面开口的至少一部分对准,使得来自波导的微波能量通过电介质基板并进入由后短壳体限定的空腔中。 后短壳体具有沿着电介质基板的第二侧的至少一个到空腔的开口。 在基板的第二侧上的一对间隔开的微带,每个具有位于空腔中的自由端,使得微带的自由端彼此间隔开。
    • 9. 发明申请
    • OCCUPANT DETECTION AND IMAGING SYSTEM
    • 职业检测与成像系统
    • US20100274449A1
    • 2010-10-28
    • US12427949
    • 2009-04-22
    • Serdar H. YonakPaul D. Schmalenberg
    • Serdar H. YonakPaul D. Schmalenberg
    • G06F17/00
    • B60R21/0134B60R2021/01272B60R2022/4816B60R2022/4866
    • An active safety system for a machine and a process for operating the active safety system are disclosed. The active safety system an active ultrasonic array having a plurality of ultrasonic transducers. The plurality of ultrasonic transducers can propagate a plurality of sound waves, receive a plurality of echo waves and transform the plurality of echo waves into a plurality of electrical pulses. The plurality of electrical pulses can be transmitted to and received by a three-dimensional imaging circuit. The three-dimensional imaging circuit can generate a 3D image from the plurality of electrical pulses and an electrical control unit can determine a location, size and geometric orientation of the 3D image. The electronic control unit can also provide an occupant safety parameter as a function of the location, size and geometric orientation of the 3D image and transmit the occupant safety parameter or an instruction related to the occupant safety parameter to an occupant safety system and/or an occupant warning system.
    • 公开了一种用于机器的主动安全系统和用于操作主动安全系统的过程。 主动安全系统是具有多个超声换能器的有源超声波阵列。 多个超声换能器可以传播多个声波,接收多个回波并将多个回波变换为多个电脉冲。 多个电脉冲可以传输到三维成像电路并由三维成像电路接收。 三维成像电路可以从多个电脉冲生成3D图像,并且电子控制单元可以确定3D图像的位置,大小和几何取向。 电子控制单元还可以根据3D图像的位置,尺寸和几何取向提供乘员安全参数,并将乘客安全参数或与乘员安全参数相关的指令发送给乘员安全系统和/或 乘客预警系统