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    • 2. 发明授权
    • No-multiply digital signal processing method
    • 无乘数数字信号处理方法
    • US08706794B1
    • 2014-04-22
    • US13216030
    • 2011-08-23
    • Gregory K. FleizachRalph W. HuntBarry R. Hunt
    • Gregory K. FleizachRalph W. HuntBarry R. Hunt
    • G06F7/487
    • G06F7/4806
    • A method for processing a digital signal, comprising the following steps: receiving a complex-valued input data array with a processor; converting the complex-valued input data array into a quantized polar domain by approximating magnitude and quantizing the phase data of the input data array with the processor; storing the approximated magnitude in a phase-column indexed matrix in a memory store that is operatively coupled to the processor; processing the input data array with the processor such that all multiplications and summations that would occur during signal processing of the input data array in the Cartesian domain are substituted with circular row shifts and additions of phase-column indexed values in the quantized polar domain; and converting the processed input data array back into the Cartesian domain.
    • 一种用于处理数字信号的方法,包括以下步骤:用处理器接收复值输入数据阵列; 通过用处理器逼近大小和量化输入数据阵列的相位数据,将复值输入数据阵列转换成量化极坐标域; 将所述近似量值存储在可操作地耦合到所述处理器的存储器存储器中的相位列索引矩阵中; 使用处理器处理输入数据阵列,使得在笛卡尔域中的输入数据阵列的信号处理期间将发生的所有乘法和求和被量化极地域中的循环行移位和相位列索引值的相加替代; 并将经处理的输入数据阵列转换回笛卡尔域。
    • 3. 发明授权
    • Secure information transmission over a network
    • 通过网络安全的信息传输
    • US08601603B1
    • 2013-12-03
    • US12957505
    • 2010-12-01
    • Gregory K. Fleizach
    • Gregory K. Fleizach
    • H04K1/00H04L29/06G06F15/16
    • H04L63/0428H04L63/062H04L2463/062
    • Architecture for secure transmission of data from a sender to a receiver can include multiple network server nodes and a processor that contains computer instructions stored therein for causing the processor to accomplish the methods for secure transmission. The methods can include the initial step of generating a nonce at a server node. A copy of the nonce can be securely transmitted to the intended recipient of the information. The nonce can then be encrypted at the server node using an encryption means that is remotely located from the server node. The actual information is then transmitted from the sender to the server node. The server node decrypts the nonce at the server node using the encryption means, and encodes the information using the decrypted nonce, which is then deleted. The receiver then accesses the server node and decodes the information using its last remaining copy of the nonce.
    • 用于从发送方到接收方的数据的安全传输的架构可以包括多个网络服务器节点和包含存储在其中的计算机指令的处理器,用于使处理器完成用于安全传输的方法。 这些方法可以包括在服务器节点处生成随机数的初始步骤。 随机数的副本可以安全地传输到信息的预期收件人。 然后可以使用远离服务器节点的加密手段在服务器节点处加密随机数。 然后将实际信息从发送方发送到服务器节点。 服务器节点使用加密装置解密服务器节点处的随机数,并使用解密的随机数对信息进行编码,然后被删除。 然后,接收器访问服务器节点,并使用其最后剩余副本对该信息进行解码。