Novel binary and n-state Linear Feedback Shift Registers (LFSRs)
    41.
    发明申请
    Novel binary and n-state Linear Feedback Shift Registers (LFSRs) 审中-公开
    新的二进制和n状态线性反馈移位寄存器(LFSR)

    公开(公告)号:US20130230172A1

    公开(公告)日:2013-09-05

    申请号:US13846296

    申请日:2013-03-18

    Applicant: Peter Lablans

    Inventor: Peter Lablans

    CPC classification number: H04L9/0662 G06F7/584 G06F2207/583

    Abstract: N-state with n equal or greater than 2 modified Linear Feedback Shift Registers (mLFSRs) having a non-reversible n-state switching function have been disclosed. An mLFSR can also contain a device that implements an n-state logic function of which one input is provided with a signal external to the mLFSR. The mLFSR can be in Fibonacci or in Galois configurations. N-state scramblers and corresponding descramblers applying an mLFSR are provided. N-state coding boxes apply non-reversible switching functions connected to n-state scrambling or descrambling functions. Sequence generators and detectors are also disclosed.

    Abstract translation: 已经公开了具有n等于或大于2的具有不可逆n状态切换功能的修正的线性反馈移位寄存器(mLFSR)的N态。 mLFSR还可以包含实现n状态逻辑功能的器件,其中一个输入端提供有一个在mLFSR外部的信号。 mLFSR可以在斐波纳契或Galois配置中。 提供了N态扰频器和应用mLFSR的相应的解扰器。 N态编码框应用连接到n状态加扰或解扰功能的不可逆切换功能。 序列发生器和检测器也被公开。

    Methods and Systems for Rapid Error Location in Reed-Solomon Codes
    42.
    发明申请
    Methods and Systems for Rapid Error Location in Reed-Solomon Codes 审中-公开
    Reed-Solomon码快速误差位置的方法与系统

    公开(公告)号:US20120233527A1

    公开(公告)日:2012-09-13

    申请号:US13479641

    申请日:2012-05-24

    Applicant: Peter Lablans

    Inventor: Peter Lablans

    Abstract: An encoder creates an (p,k,n) n-state codeword with p n-state symbols of which k n-state symbols are data symbols, an n-state symbol being represented by a signal with n>2, p>2 and k>(p−k). Intermediate states of an encoder in forward and in reverse direction are provided in a comparative n-state expression and implemented on a processor. A plurality of signals representing a codeword with at least one n-state symbol in error is processed by the processor by evaluating the comparative n-state expression. A partial result of an expression is determined after a symbol has been received. An error location and an error magnitude or error value are determined. The error is corrected by the processor.

    Abstract translation: 编码器创建具有p个n状态符号的(p,k,n)n状态码字,其中n个N状态符号是数据符号,n状态符号由n> 2,p> 2的信号表示 和k>(p-k)。 在正向和反向的编码器的中间状态被提供在比较的n状态表达式中并在处理器上实现。 通过评估比较的n态表达式,处理器处理表示具有错误的至少一个n状态符号的码字的多个信号。 在接收到符号之后确定表达式的部分结果。 确定错误位置和误差幅度或误差值。 错误由处理器更正。

    Encipherment of digital sequences by reversible transposition methods
    43.
    发明授权
    Encipherment of digital sequences by reversible transposition methods 有权
    通过可逆转置方法加密数字序列

    公开(公告)号:US08180817B2

    公开(公告)日:2012-05-15

    申请号:US13081806

    申请日:2011-04-07

    Applicant: Peter Lablans

    Inventor: Peter Lablans

    CPC classification number: H04B1/7143

    Abstract: Methods for transposing elements of a sequence according to a rule, wherein the rule is derived from pseudo-noise or pseudo-noise like binary and non-binary sequences are disclosed. Sequences of transposed symbols can be recovered by applying a reversing rule. Sets of orthogonal hopping and transposition rules are created by applying transposition rules upon themselves. Sets of orthogonal hopping and transposition rules are also created from binary and non-binary Gold sequences.

    Abstract translation: 公开了根据规则来转移序列元素的方法,其中规则是从伪噪声或伪噪声得到的,如二进制和非二进制序列。 可以通过应用反转规则来恢复转置符号的序列。 通过对其自身应用换位规则创建正交跳跃和转置规则的集合。 正交跳变和转置规则的集合也是从二进制和非二进制Gold序列创建的。

    Systems and methods for concurrently playing multiple images from a storage medium
    44.
    发明授权
    Systems and methods for concurrently playing multiple images from a storage medium 有权
    用于从存储介质同时播放多个图像的系统和方法

    公开(公告)号:US08164655B2

    公开(公告)日:2012-04-24

    申请号:US12435624

    申请日:2009-05-05

    Applicant: Peter Lablans

    Inventor: Peter Lablans

    Abstract: Methods for storing on a storage or memory medium, and retrieving, and displaying of multiple images in a registered manner, the images have been recorded concurrently. The images may comprise at least 2 video programs. A camera system for recording multiple concurrent images is also disclosed. Lenses and corresponding image sensors are calibrated to have calibrated and associated settings for recording multiple images that are substantially registered images. A registered image may be displayed on a single display. It may also be displayed on multiple displays. A camera for recording and displaying registered multiple images may be part of a mobile phone.

    Abstract translation: 用于存储在存储介质上的方法,以及以注册方式检索和显示多个图像的方法已被同时记录。 图像可以包括至少两个视频节目。 还公开了用于记录多个并发图像的相机系统。 镜头和相应的图像传感器被校准以具有用于记录基本上记录的图像的多个图像的校准和相关联的设置。 注册的图像可以显示在单个显示器上。 它也可以显示在多个显示器上。 用于记录和显示注册的多个图像的相机可以是移动电话的一部分。

    Method and Apparatus for Rapid Synchronization of Shift Register Related Symbol Sequences
    45.
    发明申请
    Method and Apparatus for Rapid Synchronization of Shift Register Related Symbol Sequences 有权
    移位寄存器相关符号序列快速同步的方法和装置

    公开(公告)号:US20110293062A1

    公开(公告)日:2011-12-01

    申请号:US13118767

    申请日:2011-05-31

    Applicant: Peter Lablans

    Inventor: Peter Lablans

    Abstract: A sequence generator implemented on a receiver is synchronized with a sequence generator at a transmitter. The receiver receives k n-state symbols, with k>1 and n>1 wherein each of the k n-state symbols is associated with a generating state of the sequence generator at the transmitter. A processor in the receiver evaluates an n-state expression that generates an n-state symbol that is associated with a synchronized state of the receiver. Coefficients related to the n-state expression are stored on a memory and are retrieved by the processor. The synchronized state in one embodiment is part of a code hop. The sequence generator in the receiver may be part of a descrambler, of a communication device, of a data storage device and/or of an opening mechanism.

    Abstract translation: 在接收机上实现的序列发生器与发射机的序列发生器同步。 接收机接收k个n状态符号,其中k> 1且n> 1,其中k个n状态符号中的每一个与发射机处的序列发生器的生成状态相关联。 接收器中的处理器评估产生与接收器的同步状态相关联的n状态符号的n状态表达式。 与n状态表达式相关的系数存储在存储器中,并由处理器检索。 一个实施例中的同步状态是代码跳的一部分。 接收机中的序列发生器可以是数据存储设备和/或打开机构的通信设备的解扰器的一部分。

    Methods and Systems for Rapid Error Correction by Forward and Reverse Determination of Coding States
    46.
    发明申请
    Methods and Systems for Rapid Error Correction by Forward and Reverse Determination of Coding States 失效
    通过正向和反向确定编码状态进行快速纠错的方法和系统

    公开(公告)号:US20110276854A1

    公开(公告)日:2011-11-10

    申请号:US13103300

    申请日:2011-05-09

    Applicant: Peter Lablans

    Inventor: Peter Lablans

    Abstract: An encoder creates an (p,k,n) n-state codeword with p n-state symbols of which k n-state symbols are data symbols, an n-state symbol being represented by a signal with n>2, p>2 and k>(p-k). Intermediate states of an encoder in forward and in reverse direction are provided in a comparative n-state expression and implemented on a processor. A plurality of signals representing a codeword with at least one n-state symbol in error is processed by the processor by evaluating the comparative n-state expression. A partial result of an expression is determined after a symbol has been received. An error location and an error magnitude are determined. The error is corrected by the processor.

    Abstract translation: 编码器创建具有p个n状态符号的(p,k,n)n状态码字,其中n个N状态符号是数据符号,n状态符号由n> 2,p> 2的信号表示 和k>(pk)。 在正向和反向的编码器的中间状态被提供在比较的n状态表达式中并在处理器上实现。 通过评估比较的n态表达式,处理器处理表示具有错误的至少一个n状态符号的码字的多个信号。 在接收到符号之后确定表达式的部分结果。 确定错误位置和误差幅度。 错误由处理器更正。

    Methods and Systems for Rapid Error Correction of Reed-Solomon Codes
    47.
    发明申请
    Methods and Systems for Rapid Error Correction of Reed-Solomon Codes 有权
    Reed-Solomon码快速纠错方法与系统

    公开(公告)号:US20110214038A1

    公开(公告)日:2011-09-01

    申请号:US13103309

    申请日:2011-05-09

    Applicant: Peter Lablans

    Inventor: Peter Lablans

    Abstract: An encoder creates an (p,k,n) n-state codeword with p n-state symbols of which k n-state symbols are data symbols, an n-state symbol being represented by a signal with n>2, p>2 and k>(p−k). Intermediate states of an encoder in forward and in reverse direction are provided in a comparative n-state expression and implemented on a processor. A plurality of signals representing a codeword with at least one n-state symbol in error is processed by the processor by evaluating the comparative n-state expression. A partial result of an expression is determined after a symbol has been received. An error location and an error magnitude are determined. The error is corrected by the processor.

    Abstract translation: 编码器创建具有p个n状态符号的(p,k,n)n状态码字,其中n个N状态符号是数据符号,n状态符号由n> 2,p> 2的信号表示 和k>(p-k)。 在正向和反向的编码器的中间状态被提供在比较的n状态表达式中并在处理器上实现。 通过评估比较的n态表达式,处理器处理表示具有错误的至少一个n状态符号的码字的多个信号。 在接收到符号之后确定表达式的部分结果。 确定错误位置和误差幅度。 错误由处理器更正。

    Methods and Systems for Error-Correction in Convolutional and Systematic Convolutional Decoders in Galois Configuration
    48.
    发明申请
    Methods and Systems for Error-Correction in Convolutional and Systematic Convolutional Decoders in Galois Configuration 审中-公开
    在Galois配置中卷积和系统卷积解码器中误差校正的方法和系统

    公开(公告)号:US20100299579A1

    公开(公告)日:2010-11-25

    申请号:US12774092

    申请日:2010-05-05

    Applicant: Peter Lablans

    Inventor: Peter Lablans

    CPC classification number: H03M13/235 H03M13/3983

    Abstract: Convolutional coders having an n-state with n≧2 Linear Feedback Shift Registers (LFSR) in Galois configuration with k shift register elements with k>1 are provided. Corresponding decoders are also provided. A convolutional coder generates a sequence of coded n-state symbols. A content of a starting position of an LFSR in a decoder is determined when sufficient error free coded symbols are available. Up to k symbols in error are corrected. A systematic convolutional coder and decoder are also provided.

    Abstract translation: 提供具有n≥2的具有n≥2的线性反馈移位寄存器(LFSR)在具有k> 1的k个移位寄存器元件的Galois配置中的卷积编码器。 还提供了相应的解码器。 卷积编码器生成编码的n态符号序列。 当有足够的无差错编码符号可用时,确定解码器中LFSR的起始位置的内容。 纠正错误的k个符号。 还提供了系统卷积编码器和解码器。

    N-State Ripple Adder Scheme Coding with Corresponding N-State Ripple Adder Scheme Decoding
    49.
    发明申请
    N-State Ripple Adder Scheme Coding with Corresponding N-State Ripple Adder Scheme Decoding 有权
    N状态波纹加法器方案编码与相应的N状态波纹加法器方案解码

    公开(公告)号:US20100271243A1

    公开(公告)日:2010-10-28

    申请号:US12827465

    申请日:2010-06-30

    Applicant: Peter Lablans

    Inventor: Peter Lablans

    CPC classification number: G06F7/503

    Abstract: Methods and apparatus for implementing an n-state ripple-adder scheme coder with n≧2 using an n-state reversible switching function and a non-reversible n-state switching function acting upon a first and a second word of at least 2 n-state symbols are disclosed. Corresponding decoding methods and apparatus are also disclosed. A resulting codeword may be a codeword which can be decoded by using the identical or different n-state switching functions in a corresponding ripple adder scheme decoder. Feistel networks and LFSRs apply the coding and decoding. Systems using the coding and decoding methods may be communication, storage and/or financial systems.

    Abstract translation: 使用n状态可逆切换功能实现n≥2的n状态波纹加法器方案编码器的方法和装置,以及作用于至少2n的第一和第二字的不可逆n状态切换功能, 状态符号被公开。 还公开了相应的解码方法和装置。 所产生的码字可以是可以通过在对应的纹波加法器解码器中使用相同或不同的n状态切换功能来解码的码字。 Feistel网络和LFSR应用编码和解码。 使用编码和解码方法的系统可以是通信,存储和/或金融系统。

    N-state ripple adder scheme coding with corresponding n-state ripple adder scheme decoding
    50.
    发明授权
    N-state ripple adder scheme coding with corresponding n-state ripple adder scheme decoding 有权
    N态波纹加法器编码与相应的n态波纹加法器解码

    公开(公告)号:US07772999B2

    公开(公告)日:2010-08-10

    申请号:US12330255

    申请日:2008-12-08

    Applicant: Peter Lablans

    Inventor: Peter Lablans

    CPC classification number: G06F7/503

    Abstract: Methods and apparatus for implementing an n-state ripple-adder scheme coder with n≧2 using an n-state reversible switching function and a non-reversible n-state switching function acting upon a first and a second word of at least 2 n-state symbols are disclosed. Corresponding decoding methods and apparatus are also disclosed. A resulting codeword may be a codeword which can be decoded by using the identical or different n-state switching functions in a corresponding ripple adder scheme decoder. Feistel networks and LFSRs apply the coding and decoding. Systems using the coding and decoding methods may be communication, storage and/or financial systems.

    Abstract translation: 使用n状态可逆切换功能实现n≥2的n状态波纹加法器方案编码器的方法和装置,以及作用于至少2n的第一和第二字的不可逆n状态切换功能, 状态符号被公开。 还公开了相应的解码方法和装置。 所产生的码字可以是可以通过在对应的纹波加法器解码器中使用相同或不同的n状态切换功能来解码的码字。 Feistel网络和LFSR应用编码和解码。 使用编码和解码方法的系统可以是通信,存储和/或金融系统。

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