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    • 1. 发明授权
    • Battery assisted RFID command set and interference control
    • 电池辅助RFID命令集和干扰控制
    • US08436714B2
    • 2013-05-07
    • US12432342
    • 2009-04-29
    • Alfonso RodriguezFarron DacusJohannes Albertus van Niekerk
    • Alfonso RodriguezFarron DacusJohannes Albertus van Niekerk
    • H04Q5/22
    • G06K7/10009H04Q9/00H04Q2209/47H04Q2209/75H04Q2209/88
    • Specialized battery assisted command set design methods are disclosed that provide for interference rejection using highly sensitive but relatively broadband RFID tags. The command set design also supports RFID system RF power control for further interference control. The command set design also allows for convenient expansion to active transmitters and receivers in tags operating within the same system. Embodiments of the present invention provide RFID systems having battery-assisted, Semi-Passive RFID tags that operate with sensitive transistor based square law tag receivers utilizing a plurality of tag receiver dynamic range states. Additional enhancement attained via power leveling methods that optimize the amount of transmitted power and interference from a reader in relation to the sensitivity of the RFID tags, their ranges from the reader, and the unique physics of the backscatter RFID radio link.
    • 公开了专门的电池辅助命令集设计方法,其提供使用高度灵敏但相对宽的RFID标签的干扰抑制。 命令集设计还支持RFID系统RF功率控制,进一步进行干扰控制。 命令集设计还允许在同一系统内操作的标签中方便地扩展到主动发射机和接收机。 本发明的实施例提供具有电池辅助的半无源RFID标签的RFID系统,其利用多个标签接收器动态范围状态使用基于灵敏晶体管的平方律标签接收器进行操作。 通过功率调整方法获得的附加增强,其优化与RFID标签的灵敏度相关的发送功率和干扰量,读取器的范围以及反向散射RFID无线电链路的独特物理性能。
    • 2. 发明授权
    • Battery assisted RFID system RF power and interference control
    • 电池辅助RFID系统RF功率和干扰控制
    • US08421598B1
    • 2013-04-16
    • US12478672
    • 2009-06-04
    • Farron DacusJohannes Albertus van NiekerkAlfonso Rodriguez
    • Farron DacusJohannes Albertus van NiekerkAlfonso Rodriguez
    • H04Q5/22
    • G06K19/0701G06K7/10039G06K19/0715H04Q2213/13095
    • The present invention discloses battery assisted RFID system RF power control implementations that optimize the amount of transmitted power and interference from a reader in relation to the sensitivity of the RFID tags, their ranges from the reader, and the unique physics of the backscatter RFID radio link. Tag transmit power control implementations are also disclosed. These methods enhance system reliability when employing battery assisted RFID tags that operate with sensitive transistor based square law tag receivers and highly sensitive RFID readers intended to take advantage of outstanding tag sensitivity. Further enhancement is achieved via implementation of specialized commands that optimally support the power control operations, otherwise control system interference, and allow maximum usage of high sensitivity in both tags and readers.
    • 本发明公开了电池辅助RFID系统RF功率控制实现,其优化了与RFID标签的灵敏度相关的发送功率和来自读取器的干扰量,读取器的范围以及反向散射RFID无线电链路的独特物理 。 还公开了标签发射功率控制实现。 这些方法在采用电磁辅助RFID标签时可以提高系统的可靠性,该标签采用敏感晶体管的平方律标签接收器和高灵敏度RFID读取器,旨在利用突出的标签灵敏度。 通过实施最佳支持功率控制操作的专用命令,否则控制系统干扰,并允许在标签和读取器中最大限度地使用高灵敏度来实现进一步的增强。
    • 3. 发明授权
    • Battery assisted RFID tag with square-law receiver and optional part time active behavior
    • 电池辅助RFID标签与平方律接收器和可选的兼职活动行为
    • US09367711B1
    • 2016-06-14
    • US12204774
    • 2008-09-04
    • Farron DacusJoseph BouchezJohannes Albertus van NiekerkAlfonso Rodriguez
    • Farron DacusJoseph BouchezJohannes Albertus van NiekerkAlfonso Rodriguez
    • H04Q5/22G06K7/00G06K19/077
    • G06K7/0008G06K19/0702G06K19/07749
    • Embodiments of the present invention provide RFID systems having battery-assisted, Semi-Passive RFID tags that operate with sensitive transistor based square law tag receivers utilizing a plurality of tag receiver dynamic range states. Embodiments of the present invention are also enhanced with receiver training and synchronizing methods suited to the high tag sensitivity and need for dynamic range state switching. These enhancements may employ pseudo-random sequence based receiver training, activation signaling, and frame synchronizing. Further enhancement is achieved via design of system command sets and tag state machine behavior that control system interference and allow maximum usage of high sensitivity. Command set design also allows for convenient expansion to active transmitters and receivers in tags operating within the same system. Additional enhancement attained via power leveling methods that optimize the amount of transmitted power and interference from a reader in relation to the sensitivity of the RFID tags, their ranges from the reader, and the unique physics of the backscatter RFID radio link.
    • 本发明的实施例提供具有电池辅助的半无源RFID标签的RFID系统,其利用多个标签接收器动态范围状态使用基于灵敏晶体管的平方律标签接收器进行操作。 本发明的实施例还通过适用于高标签灵敏度的接收机训练和同步方法以及对动态范围状态切换的需要而增强。 这些增强可以采用基于伪随机序列的接收机训练,激活信令和帧同步。 通过设计系统命令集和标签状态机行为来实现进一步的增强,可以控制系统的干扰并允许最大限度地使用高灵敏度。 命令集设计还允许在同一系统内操作的标签中方便地扩展到主动发射机和接收机。 通过功率调整方法获得的附加增强,其优化了与RFID标签的灵敏度相关的发送功率和干扰的量级,读取器的范围以及反向散射RFID无线电链路的独特物理学特性。
    • 6. 发明授权
    • Battery assisted RFID system RF power control and interference mitigation methods
    • 电池辅助RFID系统RF功率控制和干扰减轻方法
    • US08410906B1
    • 2013-04-02
    • US12205718
    • 2008-09-05
    • Farron DacusJohannes Albertus van NiekerkAlfonso Rodriguez
    • Farron DacusJohannes Albertus van NiekerkAlfonso Rodriguez
    • H04Q5/22
    • G06K19/0701G06K7/10039G06K19/0715H04Q2213/13095
    • The present invention discloses battery assisted RFID system RF power leveling methods that optimize the amount of transmitted power and interference from a reader in relation to the sensitivity of the RFID tags, their ranges from the reader, and the unique physics of the backscatter RFID radio link. These methods enhance system reliability when employing battery assisted RFID tags that operate with sensitive transistor based square law tag receivers and highly sensitive RFID readers intended to take advantage of outstanding tag sensitivity. Further enhancement is achieved via design of system command sets and tag state machine behavior that optimally support the power level operations, power level operations that span across tag hibernation and normal modes, and that otherwise control system interference. Embodiments of the present invention are also enhanced with receiver training and synchronizing methods suited to the high tag sensitivity and need for dynamic range state switching. These enhancements may employ pseudo-random sequence based receiver training, activation signaling, and frame synchronizing.
    • 本发明公开了一种电池辅助RFID系统RF功率调平方法,其优化了RFID标签的灵敏度,读取器的灵敏度以及反向散射RFID无线电链路的独特物理性质的读取器的发射功率和干扰量 。 这些方法在采用电磁辅助RFID标签时可以提高系统的可靠性,该标签采用敏感晶体管的平方律标签接收器和高灵敏度RFID读取器,旨在利用突出的标签灵敏度。 通过设计系统命令集和标签状态机行为来实现进一步的增强,其最佳地支持功率电平操作,横跨标签休眠和正常模式的功率电平操作,以及否则控制系统干扰。 本发明的实施例还通过适用于高标签灵敏度的接收机训练和同步方法以及对动态范围状态切换的需要而增强。 这些增强可以采用基于伪随机序列的接收机训练,激活信令和帧同步。
    • 7. 发明授权
    • Battery assisted RFID system command set
    • 电池辅助RFID系统命令集
    • US08384523B1
    • 2013-02-26
    • US12205745
    • 2008-09-05
    • Alfonso RodriquezFarron DacusJohannes Albertus van Niekerk
    • Alfonso RodriquezFarron DacusJohannes Albertus van Niekerk
    • H04Q5/22
    • G06K7/10009H04Q9/00H04Q2209/47H04Q2209/75H04Q2209/88
    • Specialized battery assisted command set design methods are disclosed that provide for interference rejection using highly sensitive but relatively broadband RFID tags. The command set design also supports RFID system RF power control for further interference control. The command set design also allows for convenient expansion to active transmitters and receivers in tags operating within the same system. Embodiments of the present invention provide RFID systems having battery-assisted, Semi-Passive RFID tags that operate with sensitive transistor based square law tag receivers utilizing a plurality of tag receiver dynamic range states. Embodiments of the present invention are also enhanced with receiver training and synchronizing methods suited to the high tag sensitivity and need for dynamic range state switching. These enhancements may employ pseudo-random sequence based receiver training, activation signaling, and frame synchronizing. Additional enhancement attained via power leveling methods that optimize the amount of transmitted power and interference from a reader in relation to the sensitivity of the RFID tags, their ranges from the reader, and the unique physics of the backscatter RFID radio link.
    • 公开了专门的电池辅助命令集设计方法,其提供使用高度灵敏但相对宽的RFID标签的干扰抑制。 命令集设计还支持RFID系统RF功率控制,进一步进行干扰控制。 命令集设计还允许在同一系统内操作的标签中方便地扩展到主动发射机和接收机。 本发明的实施例提供具有电池辅助的半无源RFID标签的RFID系统,其利用多个标签接收器动态范围状态使用基于灵敏晶体管的平方律标签接收器进行操作。 本发明的实施例还通过适用于高标签灵敏度的接收机训练和同步方法以及对动态范围状态切换的需要而增强。 这些增强可以采用基于伪随机序列的接收机训练,激活信令和帧同步。 通过功率调整方法获得的附加增强,其优化与RFID标签的灵敏度相关的发送功率和干扰量,读取器的范围以及反向散射RFID无线电链路的独特物理性能。
    • 8. 发明申请
    • Battery Assisted RFID Command Set and Interference Control
    • 电池辅助RFID命令集和干扰控制
    • US20100060425A1
    • 2010-03-11
    • US12432342
    • 2009-04-29
    • Alfonso RodriguezFarron DacusJohannes Albertus Van Niekerk
    • Alfonso RodriguezFarron DacusJohannes Albertus Van Niekerk
    • H04Q5/22
    • G06K7/10009H04Q9/00H04Q2209/47H04Q2209/75H04Q2209/88
    • Specialized battery assisted command set design methods are disclosed that provide for interference rejection using highly sensitive but relatively broadband RFID tags. The command set design also supports RFID system RF power control for further interference control. The command set design also allows for convenient expansion to active transmitters and receivers in tags operating within the same system. Embodiments of the present invention provide RFID systems having battery-assisted, Semi-Passive RFID tags that operate with sensitive transistor based square law tag receivers utilizing a plurality of tag receiver dynamic range states. Additional enhancement attained via power leveling methods that optimize the amount of transmitted power and interference from a reader in relation to the sensitivity of the RFID tags, their ranges from the reader, and the unique physics of the backscatter RFID radio link.
    • 公开了专门的电池辅助命令集设计方法,其提供使用高度灵敏但相对宽的RFID标签的干扰抑制。 命令集设计还支持RFID系统RF功率控制,进一步进行干扰控制。 命令集设计还允许在同一系统内操作的标签中方便地扩展到主动发射机和接收机。 本发明的实施例提供具有电池辅助的半无源RFID标签的RFID系统,其利用多个标签接收器动态范围状态使用基于灵敏晶体管的平方律标签接收器进行操作。 通过功率调整方法获得的附加增强,其优化与RFID标签的灵敏度相关的发送功率和干扰量,读取器的范围以及反向散射RFID无线电链路的独特物理性能。