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    • 33. 发明申请
    • Input-device movement to cursor movement correlator
    • 输入设备移动到光标移动相关器
    • US20070085825A1
    • 2007-04-19
    • US11250406
    • 2005-10-17
    • Steven GeffinCraig SiegmanBrian StewartJohn Reed
    • Steven GeffinCraig SiegmanBrian StewartJohn Reed
    • G09G5/08
    • G06F3/038
    • A method and system to detect a correlation of movements of an input device, sent from a first location, with at least one configurable movement parameter set on a remote computer at a second location remote from the first location, wherein the method includes: (a) sending first movement information from the first location to the remote computer at the second location, the first movement information corresponding to a first movement of the input device; (b) tracking a resulting movement of a cursor of the remote computer at the second location in response to the remote computer having received the first movement information and utilized the at least one configurable movement parameter; (c) calculating predicted movements utilizing at least two possible values for the at least one configurable movement parameter; and (d) determining which of the at least two possible values provides the predicted movement most closely matching the resulting movement of the cursor.
    • 一种检测从第一位置发送的输入设备的移动与远程计算机上在远离第一位置的第二位置处设置的至少一个可配置移动参数的相关性的方法和系统,其中所述方法包括:(a) )在第二位置从第一位置向远程计算机发送第一移动信息,第一移动信息对应于输入设备的第一移动; (b)响应于所述远程计算机已经接收到所述第一移动信息并且利用所述至少一个可配置移动参数来跟踪所述远程计算机在所述第二位置处的光标的所得运动; (c)利用所述至少一个可配置运动参数的至少两个可能值来计算预测的运动; 以及(d)确定所述至少两个可能值中的哪一个提供与所导致的光标移动最接近匹配的预测运动。
    • 34. 发明申请
    • PRECISION LOW NOISE DELTA-SIGMA ADC WITH AC FEED FORWARD AND MERGED COARSE AND FINE RESULTS
    • 精密低噪声DELTA-SIGMA ADC,具有交流进给和合并粗细和精细结果
    • US20070052570A1
    • 2007-03-08
    • US11221620
    • 2005-09-08
    • Ronald SwerleinBrian Stewart
    • Ronald SwerleinBrian Stewart
    • H03M1/12
    • H03M3/322H03M3/424H03M3/46
    • A delta-sigma converter has coarse and fine ADCs, wherein an integrated error signal is coupled to the coarse ADC whose output drives a DAC to create feedback that achieves loop balance. The coarse ADC provides the most significant bits of the result. The integrated error signal is also applied to a fine ADC whose output bits are not incorporated into the feedback, but which are combined with those of the coarse ADC and the combination applied to a filter that averages the hunting that represents loop balance. A DC feed forward circuit shunts the integrator with a replica of the applied input signal to apply it to the coarse ADC through a summer, allowing its output to be just the integrated error signal without including the applied input. If continuous integration is used, an AC feed forward circuit provides a compensatory voltage that is removed from the integrator output (or alternatively, is added to its input) and that corrects for a frequency dependent error.
    • Δ-Σ转换器具有粗略和精细的ADC,其中集成误差信号耦合到粗略ADC,其输出驱动DAC以产生实现环路平衡的反馈。 粗略的ADC提供最高有效位的结果。 积分误差信号也适用于其输出位未并入反馈中的精密ADC,但与粗略ADC的组合以及应用于平均表示环路平衡的狩猎的滤波器的组合。 直流前馈电路将积分器与施加的输入信号的复制品分流,以通过加法器将其应用于粗略的ADC,从而允许其输出仅为积分误差信号,而不包括所输入的输入。 如果使用连续积分,则AC前馈电路提供从积分器输出中移除的补偿电压(或者添加到其输入端),并补偿频率相关误差。
    • 36. 发明申请
    • UPPER-BODY EXERCISE CYCLE
    • 上肢锻炼周期
    • US20060116248A1
    • 2006-06-01
    • US10904785
    • 2004-11-29
    • Michael LofgrenBrian StewartSean Harrington
    • Michael LofgrenBrian StewartSean Harrington
    • A63B22/06A63B22/12
    • A63B22/0605A63B21/015A63B21/225A63B22/0002A63B22/0005A63B23/0211A63B23/0233A63B2022/0035A63B2022/0041A63B2022/0658A63B2208/0214A63B2208/0238A63B2225/09Y10T74/1556
    • Exercise device using rotating hand pedals against a variable resistance for the purpose of exercising the upper-body on an upper-body spinning cycle and incorporating a seating mechanism providing for placement of the operator's body to permit the conditioning of the upper portions of the operator's body including abdominal muscles, hip flexors, back, arms, wrists and hands by pedaling against a resistance to the accompaniment of music or instruction in a class type setting or at home without instruction. The embodiment of the invention allows for adjustment of the resistance to provide both aerobic and anaerobic exercise providing both muscle development and cardio-vascular conditioning. The embodiment of the invention allows the cranks to be rotated in an opposed or reciprocating position similar to conventional bicycles or the cranks can be rotated instantly and freely to be side by side in tandem or any orientation between opposed or tandem. The embodiment of the invention allows the cranks to be pedaled simultaneously or individually with one crank stationary while the other crank is pedaled. The switching of pedaling from one crank individually to two cranks simultaneously can be performed at the direction of the instructor in a class setting.
    • 运动装置使用旋转手踏板抵抗可变阻力,以在上身旋转周期上行使上身,并且包括安置机构,用于放置操作者的身体以允许操作人员身体的上部的调节 包括腹部肌肉,臀部屈肌,背部,手臂,手腕和手,通过踩踏抵抗音乐或教学的伴奏类型设置或家中无指示。 本发明的实施例允许调整抵抗力以提供需氧和无氧运动,同时提供肌肉发育和心血管调理。 本发明的实施例允许曲柄在与传统自行车类似的相对或往复位置中旋转,或者曲柄可以立即和自由地并排地并排地相互并排或相对或串联的任何取向。 本发明的实施例允许曲柄同时或单独地用一个曲柄固定而另一个曲柄被踩踏。 可以在课堂设置中在指导员的方向上执行从一个曲柄单独切换到两个曲柄的同时切换。
    • 37. 发明申请
    • Method of determining a measure of edge strength and focus
    • 确定边缘强度和焦点度量的方法
    • US20060029284A1
    • 2006-02-09
    • US11198650
    • 2005-08-05
    • Brian Stewart
    • Brian Stewart
    • G06K9/40
    • H04N5/23212G02B7/365G06T7/13
    • The method of determining a focus measure from an image includes detecting one or more edges in the image by processing the image with one or more first order edge detection kernels adapted to reject edge phasing effects. A first measure of the strength of each of the edges, and the contrast of each of the edges may be determined. The method may include normalizing the first measure of the strength of each of the edges by the contrast of each of the edges to obtain a second measure of the strength of each of the edges, and resealing the second measure of the strength of each of the edges. The method may also include selecting one or more of the edges from the image in accordance with the second measure of their strengths, and calculating the focus measure from the second measure of the strengths of the selected edges.
    • 从图像确定焦点测量的方法包括通过利用适于拒绝边缘相位效应的一个或多个第一阶边缘检测内核来处理图像来检测图像中的一个或多个边缘。 可以确定每个边缘的强度的第一测量以及每个边缘的对比度。 该方法可以包括通过每个边缘的对比来归一化每个边缘的强度的第一测量,以获得每个边缘的强度的第二测量,并且重新密封第二测量的每个边缘的强度 边缘。 该方法还可以包括根据其强度的第二测量从图像中选择一个或多个边缘,以及根据所选边缘的强度的第二测量来计算聚焦度量。