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    • 3. 发明授权
    • Configuration management system and method for use in an RFID system including a multiplicity of RFID readers
    • 用于包括多个RFID读取器的RFID系统中的配置管理系统和方法
    • US07567179B2
    • 2009-07-28
    • US11581788
    • 2006-10-16
    • Robert A. StephensenMichael GradyScott BarvickDavid J. HusakLin ZhouNirav R. ShahPattabhiraman KrishnaJeffrey H. FischerChilton L. Cabot
    • Robert A. StephensenMichael GradyScott BarvickDavid J. HusakLin ZhouNirav R. ShahPattabhiraman KrishnaJeffrey H. FischerChilton L. Cabot
    • G08B13/141
    • H04W16/18H04L67/18H04W4/02H04W84/18
    • A system and method that facilitates the configuration and control of components of an RFID system, taking into account how the RFID system components are associated with one or more physical locations within an environment in which the RFID system is deployed. A user provides information specifying associations between the system components and the physical locations within the environment to obtain visual representations of configuration data generated therefrom with reference to a facility view, an RF coverage view, and a location view of the data. The facility view serves as a reference plane for placement and orientation of antennas associated with RFID readers, location benchmark tags, and the physical locations of interest. After each antenna is placed and oriented on the facility view, an estimate of the size and shape of the RF interrogation zone of each antenna is computed, and representations of the RF interrogation zones are provided on the facility view to obtain the RF coverage view of the data. Next, the user provides information specifying the physical locations of interest to obtain the location view of the data. A composite of the facility view, the coverage view, and the location view is then generated to obtain an enhanced visual understanding of how the system components and the physical locations exist within the system environment, and how the components and locations are associated with one another.
    • 考虑到RFID系统组件如何与在其中部署RFID系统的环境中的一个或多个物理位置相关联,便于对RFID系统的组件进行配置和控制的系统和方法。 用户提供指定系统组件与环境内的物理位置之间的关联的信息,以参考参考设施视图,RF覆盖视图和数据的位置视图从其生成的配置数据的视觉表示。 设备视图用作与RFID读取器,位置基准标签和感兴趣的物理位置相关联的天线的放置和定向的参考平面。 在每个天线在设施视图上放置和定向之后,计算每个天线的RF询问区的大小和形状的估计,并且在设施视图上提供RF询问区的表示以获得RF覆盖视图 数据。 接下来,用户提供指定感兴趣的物理位置以获得数据的位置视图的信息。 然后生成设施视图,覆盖视图和位置视图的组合,以获得对系统组件和物理位置如何存在于系统环境中以及组件和位置如何彼此关联的增强的视觉理解 。
    • 5. 发明授权
    • Location virtualization in an RFID system
    • RFID系统中的位置虚拟化
    • US07667575B2
    • 2010-02-23
    • US11194144
    • 2005-07-29
    • David J. HusakPattabhiraman KrishnaPeter SpreadboroughJeffrey H. Fischer
    • David J. HusakPattabhiraman KrishnaPeter SpreadboroughJeffrey H. Fischer
    • H04Q5/22G08B13/14G08C19/00
    • G06K17/0029G01S5/0252G01S5/06G06K7/0008G06K7/10356G06K2017/0045G06K2017/0048G06K2017/0051
    • A system and method of determining locations of one or more RFID tags within an RFID environment. The system includes a plurality of RFID readers, each operative to transmit and receive RF signals for scanning a tag disposed within an RF coverage region associated with the reader, and for receiving tag data in response to the scanning of the tag. A plurality of sub-locations is determined within the environment, each corresponding to at least a portion of at least one of a plurality of RF coverage regions associated with the readers. The sub-locations are mapped to a plurality of predefined locations within the environment. A reader scans a tag, and receives tag scan data from the tag in response to the scanning of the tag. The tag scan data includes a tag identifier associated with the scanned tag. The tag scan data is mapped to the sub-locations based on the RF coverage region associated with the reader. The location of the scanned tag is then determined with reference to the predefined locations within the environment, based on the tag identifier included in the tag scan data, the mapping of the tag scan data to the sub-locations, and the mapping of the sub-locations to the predefined locations.
    • 一种确定RFID环境中的一个或多个RFID标签的位置的系统和方法。 该系统包括多个RFID读取器,每个RFID读取器用于发送和接收RF信号,用于扫描布置在与读取器相关联的RF覆盖区域内的标签,以及响应于标签的扫描而接收标签数据。 在环境中确定多个子位置,每个子位置对应于与读取器相关联的多个RF覆盖区域中的至少一个的至少一部分。 子位置被映射到环境中的多个预定位置。 读取器扫描标签,并且响应于标签的扫描从标签接收标签扫描数据。 标签扫描数据包括与扫描的标签相关联的标签标识符。 基于与读取器相关联的RF覆盖区域,标签扫描数据被映射到子位置。 然后,基于包括在标签扫描数据中的标签标识符,标签扫描数据到子位置的映射以及子区域的映射,参考环境中的预定义位置来确定扫描标签的位置 - 定位到预定义的位置。
    • 7. 发明授权
    • Wireless communications system for transmitting and receiving data with
increased data rates and robustness
    • 无线通信系统,用于以更高的数据速率和鲁棒性发送和接收数据
    • US6067313A
    • 2000-05-23
    • US102416
    • 1998-06-22
    • John H. CafarellaJeffrey H. Fischer
    • John H. CafarellaJeffrey H. Fischer
    • H04B1/707H04J11/00H04J13/00H04J13/12H04J13/18H04L23/02H04B1/69
    • H04L23/02H04J13/004H04J13/12H04J13/18
    • A data communications system for conveying a series of input data symbols includes a transmitter subsystem and a receiver subsystem. The transmitter subsystem generates a series of composite waveforms corresponding to a series of input data symbols by selecting from a set of mutually orthogonal component waveforms, then combines contemporaneous portions of at least two of the component waveforms so as to form a composite waveform which is unique to the data symbol. The transmit subsystem uses the composite waveform to modulate a carrier signal and transmits the carrier signal over a communications channel. The receiver subsystem receives the carrier signal and recovers the composite waveform from the carrier signal. The receiver subsystem identifies the data symbol by, at least in part, decompositioning the composite waveforms into their constituent component waveforms so as to identify which composite waveforms have been transmitted.
    • 用于传送一系列输入数据符号的数据通信系统包括发射机子系统和接收机子系统。 发射机子系统通过从一组相互正交的分量波形中选择,产生一系列对应于一系列输入数据符号的复合波形,然后组合至少两个分量波形的同时部分,以形成独特的复合波形 到数据符号。 传输子系统使用复合波形来调制载波信号,并通过通信信道发送载波信号。 接收机子系统接收载波信号,并从载波信号中恢复复合波形。 接收器子系统通过至少部分地将复合波形分解成其组成分量波形来识别数据符号,以便识别哪些复合波形已被发送。
    • 8. 发明授权
    • Compilable address magnitude comparator for memory array self-testing
    • 可编程地址幅度比较器用于存储器阵列自检
    • US07073112B2
    • 2006-07-04
    • US10681856
    • 2003-10-08
    • Chiaming ChaiJeffrey H. FischerMichael R. OuelletteMichael H. Wood
    • Chiaming ChaiJeffrey H. FischerMichael R. OuelletteMichael H. Wood
    • G01R31/28
    • G01R31/3187G01R31/3193G11C29/26G11C2029/1802
    • An apparatus that improves Built-In-Self-Test (BIST) flexibility. A compilable address magnitude comparator facilitates BIST testing of different size memory arrays without requiring customization of the BIST controller. The compilable address magnitude comparator is compiled within the compilable memory arrays of the ASIC to allow a single BIST controller to test multiple sizes of memory arrays without requiring that the BIST controller be compilable. The compilable magnitude address comparator overrides the self-test signal from the BIST when the BIST attempts to test addresses not existing in the memory. The BIST is prevented from writing to addresses that do not exist, and does not receive error signals from those addresses. The BIST controller is able to test memory arrays without regard for their particular size. A single BIST controller can be used to test multiple memory arrays of different sizes in the ASIC, reducing device complexity.
    • 一种改进内置自检(BIST)灵活性的设备。 可编译的地址幅度比较器便于对不同大小的存储器阵列进行BIST测试,而无需定制BIST控制器。 可编译地址幅度比较器在ASIC的可编译存储器阵列中编译,以允许单个BIST控制器测试多个大小的存储器阵列,而不需要BIST控制器可编译。 当BIST尝试测试存储器中不存在的地址时,可编译幅度地址比较器会覆盖BIST的自检信号。 BIST被阻止写入不存在的地址,并且不会从这些地址接收到错误信号。 BIST控制器能够测试存储器阵列,而不考虑其特定大小。 单个BIST控制器可用于在ASIC中测试不同大小的多个存储器阵列,从而降低器件的复杂性。