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    • 21. 发明申请
    • Imaging device with blur reduction system
    • 具有模糊降低系统的成像装置
    • US20070064144A1
    • 2007-03-22
    • US11232319
    • 2005-09-21
    • William TrutnaPeter Cooper
    • William TrutnaPeter Cooper
    • G02B13/16
    • H04N5/23248H04N5/23254H04N5/2328H04N5/335
    • An imaging device having a lens focusing light from a selected scene within an optical footprint, and a substrate including a primary array and at least one navigation array which are positioned within the optical footprint. The primary array acquires a desired image of a portion of the selected scene during an integration period and the at least one navigation array acquires a series of images during the integration period, including a first and a second image having common features from the selected scene. A correlator determines location differences of the common features of the first and second images relative to the at least one navigation array and provides a displacement signal indicative of imaging device translation in two planar dimensions during an interval between the first and second images based on the location differences.
    • 一种成像装置,其具有聚焦来自光学占据空间内的所选场景的光的透镜,以及包括位于光学占空比内的主阵列和至少一个导航阵列的基板。 主阵列在积分期间获取所选场景的一部分的期望图像,并且所述至少一个导航阵列在积分期间获取一系列图像,包括具有来自所选场景的共同特征的第一和第二图像。 相关器确定第一和第二图像相对于至少一个导航阵列的共同特征的位置差异,并且在第一和第二图像之间的间隔期间基于位置提供指示成像设备平移的位移信号,其在两个平面尺寸中 差异
    • 25. 发明申请
    • Optical communication system and method using spread-spectrum encoding
    • 光通信系统和使用扩频编码的方法
    • US20050019040A1
    • 2005-01-27
    • US10626446
    • 2003-07-24
    • William Trutna
    • William Trutna
    • H04B10/155H04B10/04
    • H04B10/541H04B10/5053H04B10/58
    • Using spread-spectrum encoding the spread the spectrum of information signals transmitted in an optical communications system enables significantly higher levels of inter-channel interference to be tolerated than in conventional optical communication systems. This allows the bandwidth of the optical channels of the optical communication system to be increased, and the bit rate of the channels to be increased. Applying spread-spectrum encoding to the information signals increases the bit rate of each information signal by a factor of L, but significantly more than L spread-spectrum information signals can be transmitted in the same optical channel and can be successfully recovered at the receiver. Accordingly, using spread spectrum encoding provides a significant increase in the capacity of the optical communication system.
    • 使用扩频编码,在光通信系统中传输的信息信号的频谱扩展使传统的光通信系统能够容忍明显更高的信道间干扰水平。 这允许增加光通信系统的光信道的带宽,并且增加信道的比特率。 对信息信号应用扩频编码使每个信息信号的比特率增加一个因子L,但是可以在相同的光信道中传输明显多于L个扩频信息信号,并且可以在接收机处成功恢复。 因此,使用扩频编码提供光通信系统的容量的显着增加。