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    • 1. 发明授权
    • Light detection and ranging system
    • 光检测和测距系统
    • US08390791B2
    • 2013-03-05
    • US12627442
    • 2009-11-30
    • Alexey Vasily VertSergei Ivanovich Dolinsky
    • Alexey Vasily VertSergei Ivanovich Dolinsky
    • G01C3/08
    • G01S17/10G01S7/4814
    • A method of light detection includes emitting a pulsed light beam from a pulsed light source; splitting the pulsed light beam with a beam splitting device into at least two light beam ray sets, wherein at least one of the ray sets collide with airborne particulates, resulting in backscattered light; which is received through an aperture(s); and detecting the received backscattered light at a detector. A light detection and ranging system is also disclosed. The present invention has been described in terms of specific embodiment(s), and it is recognized that equivalents, alternatives, and modifications, aside from those expressly stated, are possible and within the scope of the appending claims.
    • 一种光检测方法包括从脉冲光源发射脉冲光束; 将分束装置的脉冲光束分成至少两个光束组,其中至少一个光线组与空气中的微粒碰撞,导致背散射光; 其通过孔被接收; 并在检测器处检测接收到的反向散射光。 还公开了光检测和测距系统。 已经根据具体实施例描述了本发明,并且认识到除了明确说明的那些之外的等同物,替代方案和修改是可能的并且在所附权利要求的范围内。
    • 2. 发明申请
    • SYSTEM AND METHOD FOR PIXELATED DETECTOR CALIBRATION
    • 用于像素检测器校准的系统和方法
    • US20130193330A1
    • 2013-08-01
    • US13360381
    • 2012-01-27
    • Ashwin Ashok WagadarikarRavindra Mohan ManjeshwarSergei Ivanovich Dolinsky
    • Ashwin Ashok WagadarikarRavindra Mohan ManjeshwarSergei Ivanovich Dolinsky
    • G01T1/202G01T1/164
    • G01T1/1648
    • Present embodiments relate to the calibration of detectors having one or more arrays of pixelated detectors. According to an embodiment, a method includes detecting optical outputs generated by a plurality of scintillation crystals of a detector with an array of pixelated detectors, generating, with the array of pixelated detectors, respective signals indicative of the optical outputs, generating, from the respective signals, a unique energy spectrum correlated to each of the plurality of scintillation crystals, grouping subsets of the plurality of scintillation crystals into macrocrystals, determining a representative energy spectrum peak for each macrocrystal based on the respective energy spectra of the scintillation crystals in the macrocrystal, comparing a value of the representative energy spectrum peak for each macrocrystal with a target peak value, and adjusting an operating parameter of at least one pixelated detector in the array of pixelated detectors as a result of the comparison.
    • 本实施例涉及具有一个或多个像素化检测器阵列的检测器的校准。 根据实施例,一种方法包括检测由具有像素化检测器阵列的检测器的多个闪烁晶体产生的光输出,利用像素化检测器阵列产生指示光输出的相应信号,从相应的 信号,与多个闪烁晶体中的每一个相关的独特的能量谱,将多个闪烁晶体的子集分组为大的晶体,基于宏晶中的闪烁晶体的各自的能谱确定每个宏晶的代表性能谱峰, 将每个宏晶的代表性能谱峰值与目标峰值进行比较,并且作为比较的结果,调整像素化检测器阵列中的至少一个像素化检测器的操作参数。
    • 3. 发明申请
    • LIGHT DETECTION AND RANGING SYSTEM
    • 光检测和测距系统
    • US20110128524A1
    • 2011-06-02
    • US12627442
    • 2009-11-30
    • Alexey Vasily VertSergei Ivanovich Dolinsky
    • Alexey Vasily VertSergei Ivanovich Dolinsky
    • G01C3/08
    • G01S17/10G01S7/4814
    • A method of light detection includes emitting a pulsed light beam from a pulsed light source; splitting the pulsed light beam with a beam splitting device into at least two light beam ray sets, wherein at least one of the ray sets collide with airborne particulates, resulting in backscattered light; which is received through an aperture(s); and detecting the received backscattered light at a detector. A light detection and ranging system is also disclosed. The present invention has been described in terms of specific embodiment(s), and it is recognized that equivalents, alternatives, and modifications, aside from those expressly stated, are possible and within the scope of the appending claims.
    • 一种光检测方法包括从脉冲光源发射脉冲光束; 将分束装置的脉冲光束分成至少两个光束组,其中至少一个光线组与空气中的微粒碰撞,导致背散射光; 其通过孔被接收; 并在检测器处检测接收到的反向散射光。 还公开了光检测和测距系统。 已经根据具体实施例描述了本发明,并且认识到除了明确说明的那些之外的等同物,替代方案和修改是可能的并且在所附权利要求的范围内。
    • 4. 发明授权
    • System and method for pixelated detector calibration
    • 用于像素化检测器校准的系统和方法
    • US08809793B2
    • 2014-08-19
    • US13360381
    • 2012-01-27
    • Ashwin Ashok WagadarikarRavindra Mohan ManjeshwarSergei Ivanovich Dolinsky
    • Ashwin Ashok WagadarikarRavindra Mohan ManjeshwarSergei Ivanovich Dolinsky
    • G01T1/166
    • G01T1/1648
    • Present embodiments relate to the calibration of detectors having one or more arrays of pixelated detectors. According to an embodiment, a method includes detecting optical outputs generated by a plurality of scintillation crystals of a detector with an array of pixelated detectors, generating, with the array of pixelated detectors, respective signals indicative of the optical outputs, generating, from the respective signals, a unique energy spectrum correlated to each of the plurality of scintillation crystals, grouping subsets of the plurality of scintillation crystals into macrocrystals, determining a representative energy spectrum peak for each macrocrystal based on the respective energy spectra of the scintillation crystals in the macrocrystal, comparing a value of the representative energy spectrum peak for each macrocrystal with a target peak value, and adjusting an operating parameter of at least one pixelated detector in the array of pixelated detectors as a result of the comparison.
    • 本实施例涉及具有一个或多个像素化检测器阵列的检测器的校准。 根据实施例,一种方法包括检测由具有像素化检测器阵列的检测器的多个闪烁晶体产生的光输出,利用像素化检测器阵列产生指示光输出的相应信号,从相应的 信号,与多个闪烁晶体中的每一个相关的独特的能量谱,将多个闪烁晶体的子集分组为大的晶体,基于宏晶中的闪烁晶体的各自的能谱确定每个宏晶的代表性能谱峰, 将每个宏晶的代表性能谱峰值与目标峰值进行比较,并且作为比较的结果,调整像素化检测器阵列中的至少一个像素化检测器的操作参数。