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    • 1. 发明授权
    • Automated configuration of RF WLANs via selected sensors
    • 通过选择的传感器自动配置RF WLAN
    • US07567822B2
    • 2009-07-28
    • US11247123
    • 2005-10-11
    • Brian Donald HartTimothy S. OlsonJames AmosDavid McClead TheoboldBretton Lee Douglas
    • Brian Donald HartTimothy S. OlsonJames AmosDavid McClead TheoboldBretton Lee Douglas
    • H04M1/00H04W24/00H04W4/00
    • H04W16/18H04B17/318H04B17/3913H04W16/10H04W64/003H04W88/08
    • In a wireless LAN (WLAN), methods, apparatuses and systems directed to facilitating configuration of a wireless network is provided. According to one implementation of the present invention, sensors are used to collect data associated with locations and other properties of access points of the wireless network. The collected data can then be used to assist in automatically configuring one or more aspects of the wireless network. In some implementations, the collected data can be used to dynamically re-configure the wireless network in real time. According to another implementation of the present invention, location computation mechanisms are used to collect data associated with the location of one or more wireless clients, and the data is used to dynamically adjust one or more radio frequency (RF) coverage maps in real time. The revised RF coverage maps can then be used to re-configure one or more operational parameters of the wireless network. Implementations of the present invention provide many advantages, such as automating the configuration of the wireless network in real time and facilitating network management decisions.
    • 在无线LAN(WLAN)中,提供了有助于无线网络的配置的方法,装置和系统。 根据本发明的一个实施方式,传感器用于收集与无线网络的接入点的位置和其他属性相关联的数据。 收集的数据然后可用于帮助自动配置无线网络的一个或多个方面。 在一些实现中,所收集的数据可以用于实时动态地重新配置无线网络。 根据本发明的另一实施方式,使用位置计算机制来收集与一个或多个无线客户端的位置相关联的数据,并且该数据被用于实时动态地调整一个或多个射频(RF)覆盖图。 然后可以使用经修订的RF覆盖图来重新配置无线网络的一个或多个操作参数。 本发明的实现提供了许多优点,例如实时地自动化无线网络的配置并且促进网络管理决策。
    • 2. 发明授权
    • Relative location of a wireless node in a wireless network
    • 无线节点在无线网络中的相对位置
    • US07626969B2
    • 2009-12-01
    • US11542739
    • 2006-10-04
    • Brian Donald HartBretton Lee Douglas
    • Brian Donald HartBretton Lee Douglas
    • H04L12/58
    • H04W64/00H04W16/20
    • In one embodiment, a method includes computing a probability surface corresponding to the location probability of the wireless node within a physical region based on the received signal strength data associated with a wireless node and an RF model of the physical region; computing, based on the probability surface, an aggregate probability (Pin) of the wireless node being inside a perimeter defined with the physical region; computing, based on the probability surface, an aggregate probability (Pout) of the wireless node being outside the perimeter; computing a probability ratio of the aggregate probabilities Pin to Pout; and determining whether the wireless node is inside or outside the perimeter based on a comparison of Pout and Pin.
    • 在一个实施例中,一种方法包括基于与无线节点相关联的接收信号强度数据和物理区域的RF模型来计算与物理区域内的无线节点的位置概率相对应的概率表面; 基于所述概率表面计算所述无线节点在由所述物理区域定义的周边内的聚合概率(Pin); 基于概率表面计算无线节点在外围之外的聚合概率(Pout); 计算总概率Pin与Pout的概率比; 以及基于Pout和Pin的比较来确定无线节点是在内部还是外部。
    • 5. 发明授权
    • Locally adjusted radio frequency coverage maps in wireless networks
    • 无线网络中本地调整的无线电频率覆盖图
    • US07904092B2
    • 2011-03-08
    • US11619939
    • 2007-01-04
    • Brian Donald HartBretton Lee Douglas
    • Brian Donald HartBretton Lee Douglas
    • H04W40/00
    • H04W16/18
    • In one embodiment, a method for adjusting a radio-frequency coverage map. The method includes receiving calibration data comprising observed received signal strength values at one or more calibration points corresponding to a radio frequency transmitter, and identifying an applicable coverage map, where the coverage map provides, for the radio frequency transmitter, estimated received signal strength values at one or more locations. The method also includes determining one or more offset values at the one or more calibration points, where an offset value is based on a difference between an observed received signal strength value and an estimated received signal strength value at a given calibration point. The method also includes adjusting one or more estimated received signal strength values at one or more location bins of the coverage map based on a distance from the one or more calibration points and the one or more offset values.
    • 在一个实施例中,一种用于调整射频覆盖图的方法。 该方法包括接收包括在对应于射频发射机的一个或多个校准点处观察到的接收信号强度值的校准数据,以及为射频发射机识别覆盖图提供的适用覆盖图,其中估计接收信号强度值为 一个或多个位置。 该方法还包括确定一个或多个校准点处的一个或多个偏移值,其中偏移值基于观测到的接收信号强度值与给定校准点处的估计接收信号强度值之间的差异。 该方法还包括基于距离一个或多个校准点和一个或多个偏移值的距离来调整覆盖图的一个或多个位置仓上的一个或多个估计的接收信号强度值。
    • 6. 发明申请
    • Locally Adjusted Radio Frequency Coverage Maps in Wireless Networks
    • 无线网络中本地调整的射频覆盖图
    • US20080166973A1
    • 2008-07-10
    • US11619939
    • 2007-01-04
    • Brian Donald HartBretton Lee Douglas
    • Brian Donald HartBretton Lee Douglas
    • H04B17/00
    • H04W16/18
    • In one embodiment, a method for adjusting a radio-frequency coverage map. The method includes receiving calibration data comprising observed received signal strength values at one or more calibration points corresponding to a radio frequency transmitter, and identifying an applicable coverage map, where the coverage map provides, for the radio frequency transmitter, estimated received signal strength values at one or more locations. The method also includes determining one or more offset values at the one or more calibration points, where an offset value is based on a difference between an observed received signal strength value and an estimated received signal strength value at a given calibration point. The method also includes adjusting one or more estimated received signal strength values at one or more location bins of the coverage map based on a distance from the one or more calibration points and the one or more offset values.
    • 在一个实施例中,一种用于调整射频覆盖图的方法。 该方法包括接收包括在对应于射频发射机的一个或多个校准点处观察到的接收信号强度值的校准数据,并且为射频发射机识别覆盖图提供的适用覆盖图,其中估计的接收信号强度值在 一个或多个位置。 该方法还包括确定一个或多个校准点处的一个或多个偏移值,其中偏移值基于观测到的接收信号强度值与给定校准点处的估计接收信号强度值之间的差异。 该方法还包括基于距离一个或多个校准点和一个或多个偏移值的距离来调整覆盖图的一个或多个位置仓上的一个或多个估计的接收信号强度值。
    • 8. 发明申请
    • Relative location of a wireless node in a wireless network
    • 无线节点在无线网络中的相对位置
    • US20080084858A1
    • 2008-04-10
    • US11542739
    • 2006-10-04
    • Brian Donald HartBretton Lee Douglas
    • Brian Donald HartBretton Lee Douglas
    • H04B7/216
    • H04W64/00H04W16/20
    • In one embodiment, a method includes computing a probability surface corresponding to the location probability of the wireless node within a physical region based on the received signal strength data associated with a wireless node and an RF model of the physical region; computing, based on the probability surface, an aggregate probability (Pin) of the wireless node being inside a perimeter defined with the physical region; computing, based on the probability surface, an aggregate probability (Pout) of the wireless node being outside the perimeter; computing a probability ratio of the aggregate probabilities Pin to Pout; and determining whether the wireless node is inside or outside the perimeter based on a comparison of Pout and Pin.
    • 在一个实施例中,一种方法包括基于与无线节点相关联的接收信号强度数据和物理区域的RF模型来计算与物理区域内的无线节点的位置概率相对应的概率表面; 基于所述概率表面计算所述无线节点在由所述物理区域定义的周边内的聚合概率(Pin); 基于概率表面计算无线节点在外围之外的聚合概率(Pout); 计算总概率Pin与Pout的概率比; 以及基于Pout和Pin的比较来确定无线节点是在内部还是外部。