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    • 2. 发明授权
    • Configurable infinite logic signal processing network and genetic computing method of designing the same
    • 可配置的无限逻辑信号处理网络和遗传算法的设计方法相同
    • US07761392B2
    • 2010-07-20
    • US11554734
    • 2006-10-31
    • Magdi A. MohamedWeimin XiaoChi Zhou
    • Magdi A. MohamedWeimin XiaoChi Zhou
    • G06N3/00G06N3/02G06F15/18
    • G06N3/126
    • Signal processing networks (700, 800, 1008, 1010, 1012) that include a configurable infinite logic aggregator (100) that can be configured as an infinite logic AND gate and infinite logic OR gate or as other gates along a continuum of function between the two by adjusting control signal magnitudes and a configurable infinite logic signal inverter (500) are provided. A method of designing such networks that includes a genetic programming program (1802) e.g., a gene expression programming program (1600), for designing the network topology, in combination with a numerical optimization (1804), e.g., a hybrid genetic algorithm/differential evolution numerical optimization (1700) for setting control signal values of the network and optionally other numerical parameters is provided.
    • 信号处理网络(700,800,1008,1010,1012),其包括可配置的无限逻辑聚合器(100),其可被配置为无限逻辑与门和无限逻辑“或”门,或者沿着连续的功能的其他门 提供两个通过调节控制信号幅度和可配置的无限逻辑信号反相器(500)。 一种设计这样的网络的方法,其包括遗传编程程序(1802),例如用于设计网络拓扑的基因表达编程程序(1600),结合数字优化(1804),例如混合遗传算法/差分 提供了用于设置网络的控制信号值和可选的其他数值参数的演进数值优化(1700)。
    • 4. 发明申请
    • CONFIGURABLE INFINITE LOGIC SIGNAL PROCESSING NETWORK AND GENETIC COMPUTING METHOD OF DESIGNING THE SAME
    • 可配置无限逻辑信号处理网络及其设计的遗传计算方法
    • US20080103995A1
    • 2008-05-01
    • US11554734
    • 2006-10-31
    • Magdi A. MohamedWeimin XiaoChi Zhou
    • Magdi A. MohamedWeimin XiaoChi Zhou
    • G06F3/02G06F15/18
    • G06N3/126
    • Signal processing networks (700, 800, 1008, 1010, 1012) that include a configurable infinite logic aggregator (100) that can be configured as an infinite logic AND gate and infinite logic OR gate or as other gates along a continuum of function between the two by adjusting control signal magnitudes and a configurable infinite logic signal inverter (500) are provided. A method of designing such networks that includes a genetic programming program (1802) e.g., a gene expression programming program (1600), for designing the network topology, in combination with a numerical optimization (1804), e.g., a hybrid genetic algorithm/differential evolution numerical optimization (1700) for setting control signal values of the network and optionally other numerical parameters is provided.
    • 信号处理网络(700,800,1008,1010,1012),其包括可配置的无限逻辑聚合器(100),其可被配置为无限逻辑与门和无限逻辑“或”门,或者沿着连续的功能的其他门 提供两个通过调节控制信号幅度和可配置的无限逻辑信号反相器(500)。 一种设计这样的网络的方法,其包括遗传编程程序(1802),例如用于设计网络拓扑的基因表达编程程序(1600),结合数字优化(1804),例如混合遗传算法/差分 提供了用于设置网络的控制信号值和可选的其他数值参数的演进数值优化(1700)。
    • 6. 发明申请
    • Gene expression programming with enhanced preservation of attributes contributing to fitness
    • 基因表达编程与增强保存属性有助于健身
    • US20060200436A1
    • 2006-09-07
    • US11073828
    • 2005-03-07
    • Chi ZhouWeimin Xiao
    • Chi ZhouWeimin Xiao
    • G06N3/12
    • G06N3/126
    • A Gene Expression Programming method evolves a population of chromosomes which are arrays of integer index references to genes including operand and operator genes. The mathematical expressions are encoded in the chromosomes according to linear Polish notation, according to which expression, trees representing mathematical expression encoded in the chromosomes are developed in a depth-first manner from the sequence of genes in each chromosome. This type of Polish notation makes it more likely that sub-expressions that contribute to fitness will survive evolutionary operations which can be performed at a low computational cost on array chromosomes. Additionally subexpressions or the mathematical structure of subexpressions which are assumed to contribute significantly to fitness based on the frequency of their appearance in elite members are protected from alteration by evolutionary operations, by representing each such mathematical structure by a single derived gene while the evolutionary operations are performed.
    • 基因表达编程方法将染色体群体演化为包括操作数和运营商基因在内的基因整数索引引用数组。 数学表达式根据线性波兰符号编码在染色体中,根据该表达式,表示在染色体中编码的数学表达的树以每个染色体中的基因序列以深度优先的方式发展。 这种类型的波兰符号使得有助于适应度的子表达更有可能在演化操作中存活,这可以在阵列染色体上以低的计算成本执行。 另外,子表达式或子表达式的数学结构被假定为基于其在精英成员中的出现频率显着地对健康有贡献的子表达式通过进化操作来保护免受改变,通过用单个导出的基因表示每个这样的数学结构,而进化操作是 执行。
    • 8. 发明申请
    • DIGITAL MASK-IMAGE-PROJECTION-BASED ADDITIVE MANUFACTURING THAT APPLIES SHEARING FORCE TO DETACH EACH ADDED LAYER
    • 基于数字图像投影的添加剂制造,适用于切割每个添加层的剪切力
    • US20130295212A1
    • 2013-11-07
    • US13872954
    • 2013-04-29
    • Yong ChenChi Zhou
    • Yong ChenChi Zhou
    • B29C67/00
    • B29C67/0088B29C64/129B33Y10/00B33Y30/00B33Y50/02
    • A three-dimensional object may be produced in cascaded layers from a liquid resin that solidifies upon exposure to light. A translation stage may be positioned relative to a vat that is suitable for solidifying the highest un-solidified layer of the three-dimensional object directly beneath any existing, solidified layers of the three-dimensional object. A mask image projection system may project a two-dimensional image of the highest un-solidified layer through a transparent bottom of the vat and into the liquid resin. This may cause at least a portion of the liquid resin to solidify in the shape of the two-dimensional image and to adhere to the bottom of a surface beneath the solidified layer. A shearing force may be applied between the bottom surface of the solidified layer and the surface beneath that is great enough to detach the solidified layer from the surface beneath.
    • 可以在液体树脂的级联层中产生三维物体,其在暴露于光时固化。 翻译阶段可以相对于适合于在三维物体的任何现有的,固化的层的任何固化层的正下方固化三维物体的最高未固化层的槽来定位。 掩模图像投影系统可以将最高未固化层的二维图像投射到桶的透明底部并进入液体树脂中。 这可能导致液体树脂的至少一部分以二维图像的形状固化并粘附到凝固层下面的表面的底部。 可以在固化层的底表面和下面的表面之间施加剪切力,其足够大以使固化层从下面的表面分离。
    • 9. 发明授权
    • Digital mask-image-projection-based additive manufacturing that applies shearing force to detach each added layer
    • 基于数字掩模图像投影的添加剂制造,其应用剪切力以分离每个添加层
    • US09120270B2
    • 2015-09-01
    • US13872954
    • 2013-04-29
    • Yong ChenChi Zhou
    • Yong ChenChi Zhou
    • B29C47/04B29C67/00
    • B29C67/0088B29C64/129B33Y10/00B33Y30/00B33Y50/02
    • A three-dimensional object may be produced in cascaded layers from a liquid resin that solidifies upon exposure to light. A translation stage may be positioned relative to a vat that is suitable for solidifying the highest un-solidified layer of the three-dimensional object directly beneath any existing, solidified layers of the three-dimensional object. A mask image projection system may project a two-dimensional image of the highest un-solidified layer through a transparent bottom of the vat and into the liquid resin. This may cause at least a portion of the liquid resin to solidify in the shape of the two-dimensional image and to adhere to the bottom of a surface beneath the solidified layer. A shearing force may be applied between the bottom surface of the solidified layer and the surface beneath that is great enough to detach the solidified layer from the surface beneath.
    • 可以在液体树脂的级联层中产生三维物体,其在暴露于光时固化。 翻译阶段可以相对于适合于在三维物体的任何现有的,固化的层的任何固化层的正下方固化三维物体的最高未固化层的槽来定位。 掩模图像投影系统可以将最高未固化层的二维图像投射到桶的透明底部并进入液体树脂中。 这可能导致液体树脂的至少一部分以二维图像的形状固化并粘附到凝固层下面的表面的底部。 可以在固化层的底表面和下面的表面之间施加剪切力,其足够大以使固化层从下面的表面分离。
    • 10. 发明申请
    • METHOD AND APPARATUS FOR CONTROLLED DEVICE SELECTION BY A PORTABLE ELECTRONIC DEVICE
    • 用于由便携式电子设备选择的控制设备的方法和装置
    • US20090052899A1
    • 2009-02-26
    • US11843192
    • 2007-08-22
    • Swee MOKZili LlTom SchirtzingerChi Zhou
    • Swee MOKZili LlTom SchirtzingerChi Zhou
    • H04B10/10
    • G08C17/02G08C23/04G08C2201/30G08C2201/50G08C2201/71
    • The present application discloses a method and apparatus for controlled device selection by a portable electronic device (110). The method may include transmitting, from the portable electronic device, a first wireless signal (140) requesting information corresponding to remote controlled devices (132, 134, 136, 138), sending an optical signal (150) over the air to at least one remote controlled device, receiving a second wireless signal including information corresponding to at least one specific remote controlled device in response to sending the optical signal, adjusting settings, in response to receiving the second wireless signal, on the portable electronic device to enable remote control of at least one selected remote controlled device (134) of the at least one specific remote controlled device based on the information corresponding to the at least one specific remote controlled device.
    • 本申请公开了一种用于由便携式电子设备(110)进行受控设备选择的方法和装置。 该方法可以包括从便携式电子设备发送请求与远程受控设备(132,134,136,138)相对应的信息的第一无线信号(140),将空中的光信号(150)发送到至少一个 远程控制设备,响应于发送光信号,接收包括与至少一个特定遥控设备相对应的信息的第二无线信号,响应于接收到第二无线信号调整设置,以便能够远程控制 基于与所述至少一个特定遥控设备相对应的信息,所述至少一个特定遥控设备的至少一个选定的远程受控设备(134)。