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    • 24. 发明授权
    • Circuit configuration and method for distributing pulses within a time interval
    • 电路配置及时间间隔内分配脉冲的方法
    • US09000818B2
    • 2015-04-07
    • US13637159
    • 2011-03-16
    • Eberhard BoehlBernard Pawlok
    • Eberhard BoehlBernard Pawlok
    • H03K3/017H03K21/00G06F7/68
    • H03K21/00G06F7/68
    • A circuit configuration for generating pulses within a time interval on the basis of an input signal includes a counting unit, a comparator unit and a first adder circuit; the time interval being predicted on the basis of at least two defined changes in input signals; the circuit configuration being configured for triggering at the beginning of the time interval by the first adder circuit on the basis of clock pulses, for generating and outputting pulses; for counting a number of generated and output pulses using the counting unit; for comparing the counted number to a setpoint value using the comparator unit; and for ending the generation and outputting of the pulses in response to the reaching of the setpoint value or the ending of the time interval.
    • 基于输入信号在时间间隔内产生脉冲的电路结构包括计数单元,比较器单元和第一加法器电路; 基于输入信号中至少两个确定的变化来预测的时间间隔; 所述电路配置被配置为基于时钟脉冲在所述时间间隔开始时由所述第一加法器电路触发,用于产生和输出脉冲; 用于使用所述计数单元计数多个产生和输出脉冲; 用于使用比较器单元将计数的数量与设定值进行比较; 并且响应于达到设定值或结束时间间隔而结束脉冲的产生和输出。
    • 27. 发明申请
    • METHOD FOR PREDICTING THE DURATION OF A FUTURE TIME INTERVAL
    • 预测未来时间间隔时间的方法
    • US20130054666A1
    • 2013-02-28
    • US13577475
    • 2011-01-12
    • Eberhard BoehlBernd BeckerBernard Pawlok
    • Eberhard BoehlBernd BeckerBernard Pawlok
    • G06F7/50G06F7/52G06F7/00
    • H02P6/34F02D41/009F02D41/0097
    • A method for predicting a value for a length of a future time interval in which a physical variable changes is described, in which at least one measured value for the length of a past time interval and an instantaneously measured value for a length of an instantaneous time interval are taken into account, m values for lengths of past time intervals being added. A first value precedes the instantaneously measured value by k−1, and an mth value precedes the instantaneously measured value by k−m. The m added values are divided by a value for a length of a past time interval which precedes the instantaneously measured value by k. A ratio of the mentioned values is formed. For determining the value to be predicted, an average error is initially added to the instantaneously measured value, forming a sum. The formed ratio is subsequently applied to this sum.
    • 描述用于预测物理变量改变的未来时间间隔的长度的值的方法,其中对于过去时间间隔的长度的至少一个测量值和瞬时时间长度的瞬时测量值 考虑间隔时间,添加过去时间间隔的长度的m值。 第一个值先于瞬时测量值k-1,第m个值先于瞬时测量值k-m。 将m个附加值除以在瞬时测量值之前的过去时间间隔的长度的值。 形成上述值的比例。 为了确定要预测的值,首先将平均误差加到瞬时测量值上,形成一个和。 形成的比率随后应用于这个总和。
    • 28. 发明申请
    • DEVICE AND METHOD FOR FORMING A SIGNATURE
    • 用于形成签名的设备和方法
    • US20120173878A1
    • 2012-07-05
    • US13379937
    • 2010-06-08
    • Eberhard BoehlMichael BoehlPaulius Duplys
    • Eberhard BoehlMichael BoehlPaulius Duplys
    • H04L9/32
    • H04L9/3247G09C1/00H04L9/003H04L9/32
    • A device is described for forming a signature from an input signal (input). According to the present invention, a plurality of transformation elements is provided, each having a finite-state machine, to which, on the input end, in each case the input signal (input) and/or a signal (input′), that is a function of the input signal, is able to be fed, all the finite-state machines are similar and are configured in such a way, particularly able to be initialized, that each finite-state machine always respectively has a different state than do all the other finite-state machines, and the signature is formable as a function of state data of at least one finite-state machine.
    • 描述了用于从输入信号(输入)形成签名的装置。 根据本发明,提供了多个转换元件,每个转换元件都具有有限状态机,在输入端,在每种情况下,输入信号(输入)和/或信号(输入'),其中 是输入信号的函数,能够被馈送,所有的有限状态机都是类似的并且被配置成这样一种特别能够被初始化的方式,即每个有限状态机总是分别具有与不同的状态 所有其他有限状态机,并且签名作为至少一个有限状态机的状态数据的函数形成。