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    • 2. 发明申请
    • DISPLAY APPARATUS FOR DISPLAYING 3D IMAGES
    • 显示3D图像的显示设备
    • US20140253699A1
    • 2014-09-11
    • US14233513
    • 2012-07-17
    • Rainer SchaferPeter Tho Pesch
    • Rainer SchaferPeter Tho Pesch
    • H04N13/04H04N13/00
    • H04N13/122H04N13/106H04N13/111H04N13/139H04N13/341H04N13/398
    • Recent production methods for 3D video as a general rule generate stereo images in a same phase of movement. The left and right images of a stereo pair thus image the recorded (or rendered) scene at a same point of time. Correct reproduction consequently requires the two images to be shown concurrently. This is, however, not true for all apparatuses such as, for example, 3D television sets including the so-called shutter technology, which show the left and right images in temporal succession. This temporally offset reproduction of the two stereo images results in clearly perceivable image errors. The invention describes a method for compensating such image errors. This is achieved by interpolating the images of one of the channels.
    • 作为一般规则的3D视频的最近生产方法在相同的运动阶段产生立体图像。 立体声对的左右图像因此在同一时间点对记录(或呈现)的场景进行成像。 因此,正确的再现需要同时显示两个图像。 然而,对于所有装置,例如包括所谓的快门技术的3D电视机,这在时间上依次显示左图像和右图像,这是不正确的。 这种两个立体图像的时间偏移再现导致明显可感知的图像误差。 本发明描述了一种用于补偿这种图像误差的方法。 这是通过内插一个通道的图像来实现的。
    • 4. 发明申请
    • Foreign Body Detector For An Agricultural Harvester
    • 农业收割机异物检测仪
    • US20080078153A1
    • 2008-04-03
    • US11835477
    • 2007-08-08
    • Rainer Schafer
    • Rainer Schafer
    • A01D75/18
    • A01D75/187
    • A foreign body detector for an agricultural harvester is provided having a sensing element which is fitted such that it is movable transversely to a direction of conveyance of the crop and which, during the harvesting operation, bears against the received crop. The foreign body detector has a position sensor set up to register the position of the sensing element, and an evaluation circuit, which can be operated to calculate, on the basis of the signals of the position sensor, information relating to the velocity and/or acceleration of the sensing element and, for the purpose of generating a signal value indicating the take-up of a foreign body, to make a comparison with a threshold value.
    • 提供了一种用于农业收割机的异物检测器,其具有传感元件,该感测元件被装配成使其能够横向于作物的传送方向移动,并且在收获操作期间承载在接收的作物上。 异物检测器具有设置为记录感测元件的位置的位置传感器,以及评估电路,其可以被操作以基于位置传感器的信号来计算与速度和/或 感测元件的加速度,为了产生表示异物吸收的信号值,与阈值进行比较。
    • 5. 发明申请
    • Field chopper
    • 现场砍刀
    • US20070137160A1
    • 2007-06-21
    • US11633828
    • 2006-12-05
    • Rainer Schafer
    • Rainer Schafer
    • A01D45/02
    • A01F29/10
    • The invention relates to a field chopper having at least one rotatable lower rough-press roll and at least one rotatable upper rough-press roll. Between the rough-press rolls crop is pressed and fed to a chopping drum where blades chop the crop. A space is defined down stream of the moveable rough-pressing roll between the chopping drum, the stream of pressed crop and the movable rough-press roll. Located in this space is a pressing element that acts on the pressed crop and which exerts a rough-pressing effect on the pressed crop downstream of the movable rough-press roll and upstream of the chopping drum.
    • 本发明涉及一种具有至少一个可旋转的下部粗糙压榨辊和至少一个可旋转的上部粗糙压榨辊的野外斩波器。 在粗压榨辊之间,压榨作物并将其送入切割鼓,其中叶片切碎作物。 在切割滚筒,压榨作物流和可移动粗压辊之间的可移动粗压辊的下游定义空间。 位于该空间中的按压元件是作用在压制的作物上的按压元件,并且对压榨的作物在可移动的粗压辊的下游和切片鼓的上游施加粗压作用。
    • 7. 发明申请
    • Feeding device for a field chopper
    • 田野斩波器的送料装置
    • US20070113533A1
    • 2007-05-24
    • US11525299
    • 2006-09-22
    • Rainer SchaferMatthew Dold
    • Rainer SchaferMatthew Dold
    • A01D61/00
    • A01F29/10
    • The invention relates to a feeding device (32) for a field chopper (10), comprising: at least one rotatable lower feedroll (34, 35), at least one rotatable upper feedroll (36, 37), between which a windrow can be fed and led to a chopping device (22), and an external force-activated adjustment drive (68), with which the position of at least one of the feedrolls (36, 37) can be changed relative to the other feedroll (34, 35). It is proposed that a spring (58) be arranged between the adjustment drive (68) and the feedroll (36, 37) that can be moved by this drive. The spring (58) enables the movable feedroll (36, 37) to react more quickly or immediately to sudden changes in windrow height independent of the inertia of the adjustment drive (68).
    • 本发明涉及一种用于野外斩波器(10)的进给装置(32),其包括:至少一个可旋转的下进料辊(34,35),至少一个可旋转的上进料辊(36,37) 进给并被引导到斩波装置(22)和外力驱动调节驱动器(68),使得至少一个给料辊(36,37)的位置能够相对于另一个进给辊(34,34)改变, 35)。 建议在调节驱动器(68)和可由该驱动器移动的馈送辊(36,37)之间布置弹簧(58)。 弹簧(58)使得可移动进料辊(36,37)能够更快速地或立即地反作用于起重机高度的突然变化,而与调节驱动器(68)的惯性无关。
    • 8. 发明申请
    • Self-propelled harvesting machine
    • 自走式收割机
    • US20050279070A1
    • 2005-12-22
    • US11156515
    • 2005-06-20
    • Peter PirroJurgen HoferStefan BohrerRainer SchaferSteffen Clauss
    • Peter PirroJurgen HoferStefan BohrerRainer SchaferSteffen Clauss
    • A01D34/00A01D41/127
    • A01D69/005A01D41/1274
    • A self-propelled harvesting machine having an internal combustion engine, a propulsion system that can be operated to cause the harvesting machine to move across a field with a propulsion speed, a crop material pick-up device for picking up the crop material from a field, a crop material processing device for processing the crop material that has been picked up, a control unit for specifying the speed of the internal combustion engine, and a through-put measurement device for determining the through-put of the harvesting machine. The control unit can be operated to vary the speed of the internal combustion engine depending on the signal from the through-put measurement device. In this manner the RPM of the internal combustion engine that is most favorable in terms of fuel consumption and that corresponds to the power to be applied at a given through-put can be specified.
    • 一种具有内燃机,推进系统的自走式收割机,其可以被操作以使收割机以推进速度移动穿过田地,用于从田地拾取作物材料的作物材料拾取装置 ,用于处理被拾取的作物材料的作物材料处理装置,用于指定内燃机的速度的控制单元和用于确定收获机的通过量的通过量测量装置。 控制单元可以被操作以根据来自通量测量装置的信号来改变内燃机的速度。 以这种方式,可以规定在燃料消耗方面最有利的内燃机的RPM和对应于在给定通过量中施加的功率的RPM。
    • 9. 发明授权
    • Method for the analytical determination of the concentration of a
component of a medical sample
    • 用于分析测定医用样品的成分浓度的方法
    • US5420042A
    • 1995-05-30
    • US84008
    • 1993-06-29
    • Rainer SchaferChristoph BerdingFridl LangWilheim KleiderPeter Wolf
    • Rainer SchaferChristoph BerdingFridl LangWilheim KleiderPeter Wolf
    • G01N33/536G01N33/543G01N33/68G01N33/96G01N33/557
    • G01N33/54313G01N33/68G01N33/96Y10S436/909Y10T436/11
    • Method for the analytical determination of the concentration of a component of a medical sample, in which a reaction of the sample with reagents leads to a time-dependent change S(t) in a measured quantity S and the concentration C correlates according to an evaluation curve C(X) with an input variable X derived from S(t), in which the calibration curve is ambiguous for at least a portion of the possible X values. In order to assign an input variable X to one of the sub-sections and thereby to obtain an unambiguous correlation to a particular concentration C, a training run and an analysis run are performed. In the training run, a discrimination algorithm is performed at least once, in which a discriminator set is generated from measurements of S(t), a score is generated in each case from the latter with a multivariate statistical technique and it is checked whether the scores can be divided into separate subsets, in which the concentrations are correctly assigned to the sub-sections of the calibration curve. The discrimination algorithm is repeated with different discriminator sets generated according to different generation methods from the measurements of S(t), in order to establish an operative discrimination algorithm. In the analysis run, an analysis score is calculated from measurements of S(t) according to the operative discrimination algorithm, the analysis score is compared with the boundary score and the measurement result is assigned to one of the sub-curves of the calibration curve by comparison of the analysis score with the boundary score.
    • 用于分析测定样品与试剂反应导致测量量S和浓度C中的时间依赖性变化S(t)的药物样品成分浓度的分析方法根据评价 具有从S(t)导出的输入变量X的曲线C(X),其中校准曲线对于可能的X值的至少一部分是不明确的。 为了将输入变量X分配给一个子部分,从而获得与特定浓度C的明确相关性,执行训练运行和分析运行。 在训练运行中,至少执行一次鉴别算法,其中通过S(t)的测量产生鉴别器集合,在每种情况下,使用多变量统计技术从后者生成分数,并且检查是否 分数可以分为单独的子集,其中浓度被正确分配到校准曲线的子部分。 根据不同的生成方法从S(t)的测量中产生的不同鉴别器集重复鉴别算法,以便建立可操作的鉴别算法。 在分析运行中,根据手术识别算法从S(t)的测量中计算分析得分,将分析得分与边界得分进行比较,并将测量结果分配给校准曲线的一个子曲线 通过比较分析得分与边界得分。