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    • 1. 发明授权
    • Method and filter arrangement for digital recursive filtering in the time domain
    • 时域中数字递归滤波的方法和滤波器布置
    • US07290022B2
    • 2007-10-30
    • US10714811
    • 2003-11-17
    • Heinz MattesPeter GregoriusPaul Georg Lindt
    • Heinz MattesPeter GregoriusPaul Georg Lindt
    • G06F17/10
    • H03H17/0223H03H17/04
    • A method and apparatus for fast digital filtering that requires only filter stages of first and second order. A desired rational filter transfer function is represented as a sum of first and second order intermediate transfer functions. A time dependent input signal is first fed in parallel into a plurality of first and second order intermediate recursive filter stages. Then, the outputs of the intermediate filter stages are summed up to an output filter signal that corresponds to the desired rational filter transfer function. The method and apparatus reduces the amount of calculational effort to the order of O(N), where N denotes the number of sampling points in the time domain, because the digital filtering is based on a discrete recursive convolution in the time domain.
    • 用于快速数字滤波的方法和装置,其仅需要一阶和二阶滤波器阶段。 期望的合理滤波传递函数被表示为第一和第二阶中间传递函数的和。 首先将依赖于时间的输入信号并入多个第一和第二阶中间递归滤波器级。 然后,将中间滤波器级的输出相加到对应于期望的有理滤波器传递函数的输出滤波器信号。 该方法和装置将计算努力的量减少到O(N)的阶数,其中N表示时域中的采样点的数量,因为数字滤波是基于时域中的离散递归卷积。
    • 3. 发明授权
    • Method and device for estimating channel properties of a transmission channel
    • 用于估计传输信道的信道特性的方法和装置
    • US07561639B2
    • 2009-07-14
    • US10970516
    • 2004-10-21
    • Peter GregoriusPaul Georg LindtHeinz Mattes
    • Peter GregoriusPaul Georg LindtHeinz Mattes
    • H04L27/06
    • H04L47/10
    • To estimate physical properties of a wired or wireless transmission channel it is proposed to sample a signal, received via the transmission channel, for example a system response of the corresponding transmission system, in order, on the basis of the sampled values thus obtained, to ascertain the moments of the order 0 . . . n of the received signal. Using these moments of the order 0 . . . n, n parameters of a transmission function of the transmission channel can be determined, wherein the parameters can be polynomial coefficients, zero points or coefficients of a residual notation of the transmission function. Using this transmission function the physical properties of the transmission channel, such as the attenuation and dispersion properties, can be determined exactly or at least approximately assessed.
    • 为了估计有线或无线传输信道的物理特性,提出了通过传输信道接收的信号,例如相应传输系统的系统响应,以这样获得的采样值为基础 确定订单的时刻0。 。 。 n的接收信号。 使用订单0的这些时刻。 。 。 可以确定传输信道的传输函数的n,n个参数,其中参数可以是传输函数的多项式系数,零点或残差符号的系数。 使用这种传输功能,传输通道的物理特性,如衰减和色散特性,可以精确地或至少近似评估来确定。
    • 5. 发明授权
    • Synchronization of a digital circuit
    • 数字电路的同步
    • US07764755B2
    • 2010-07-27
    • US11644084
    • 2006-12-22
    • Michael BrünnertPaul Georg Lindt
    • Michael BrünnertPaul Georg Lindt
    • H04L7/00
    • H04L7/0008
    • A method of synchronization of a digital circuit includes selecting a first site and a second site from a plurality of different sites of the digital circuit where a signal to be synchronized occurs; passing a first signal, which is the signal to be synchronized of the first site, via a first line that starts at the first site, ends at the second site, and contacts each of the sites just once, to the second site; passing a second signal, which is the signal to be synchronized of the second site, via a second line that starts at the second site, ends at the first site, and contacts each of the sites just once, to the first site; determining, for each site, a first phase shift between the signal to be synchronized of this site and the first signal, and a second phase shift between the signal to be synchronized of this site and the second signal; and determining, from the first and second phase shifts of each site, a delay for each site, with which the signal to be synchronized of the respective site is delayed for the synchronization.
    • 数字电路的同步方法包括从数字电路的多个不同位置选择第一位置和第二位置,其中发生待同步的信号; 通过从第一站点开始的第一行传送作为第一站点同步的信号的第一信号在第二站点终止,并将每个站点一次接通到第二站点; 将通过第二站开始的第二行通过第二站点的同步信号的第二信号结束于第一站点,并将每个站点一次接通到第一站点; 为每个站点确定要同步的信号与第一信号之间的第一相移以及该站点的同步信号与第二信号之间的第二相移; 并且从每个站点的第一和第二相移确定延迟相应站点的要被同步的信号用于同步的每个站点的延迟。
    • 6. 发明授权
    • Method for measuring and compensating for skews of data transmission lines by compensating for skew by delay elements switched in response to the calculated reative skew
    • 用于通过响应于所计算的反向偏斜而切换的延迟元件补偿偏斜来测量和补偿数据传输线的偏斜的方法
    • US07275173B2
    • 2007-09-25
    • US10808145
    • 2004-03-24
    • Paul Georg Lindt
    • Paul Georg Lindt
    • G06F1/00
    • G11C7/1048G11C5/04G11C5/063G11C7/02G11C7/22G11C11/401G11C11/4076G11C11/4093G11C11/4096G11C29/02G11C29/023G11C29/025G11C29/028G11C29/50012G11C2207/2254
    • Method for measuring and compensating skews of data transmission lines connecting at least one data transmission device with a data reception device via a parallel data bus comprising for each data transmission line the following steps: measuring the relative time delay of the data transmission line by transmitting a determined sequence of measurement vectors (MV) each consisting of an alternating bit pattern via said data transmission line, wherein the bit alternation frequency is halfed with every transmitted measurement vector (MV); comparing the received measurement vectors (MV′) transmitted via said data transmission line with corresponding reference vectors (RV) stored in said data reception device; shifting the received measurement vectors by inserting data unit intervals (UI) until a received measurement vector (MV′) matches a corresponding reference vector (RV); calculating a relative skew of the data transmission line depending of the number of inserted data unit intervals (UI) with respect to a slowest data transmission line; and compensating the calculated relative skew of the data transmission line by means of delay elements switched in response to the calculated relative skew.
    • 用于经由并行数据总线测量和补偿至少一个数据传输装置与数据接收装置的偏差的数据传输线的偏差的方法,包括针对每个数据传输线的以下步骤:通过发送数据传输线来测量数据传输线的相对时间延迟 确定每个由经由所述数据传输线的交替位图案组成的测量向量(MV)序列,其中所述位交替频率与每个发送的测量向量(MV)一半; 将经由所述数据传输线路发送的所接收的测量矢量(MV')与存储在所述数据接收装置中的对应的参考矢量(RV)进行比较; 通过插入数据单元间隔(UI)来移动所接收的测量向量,直到所接收的测量向量(MV')与对应的参考矢量(RV)匹配为止; 根据插入的数据单元间隔(UI)相对于最慢的数据传输线的数量计算数据传输线的相对偏差; 以及通过响应于所计算的相对偏差而切换的延迟元件来补偿所计算的数据传输线的相对偏差。