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    • 4. 发明申请
    • Adaptive network and method
    • 自适应网络和方法
    • US20070132846A1
    • 2007-06-14
    • US11433194
    • 2006-05-11
    • Alan BroadRahul KapurJaidev PrabhuMartin TuronNing XuXin YangMatt Miller
    • Alan BroadRahul KapurJaidev PrabhuMartin TuronNing XuXin YangMatt Miller
    • H04N7/18H04N9/47
    • G08B25/009G08B25/10G08B29/188H04W52/0216H04W84/18Y02D70/22
    • A plurality of modules interact to form an adaptive network in which each module transmits and receives data signals indicative of proximity of objects. A central computer accumulates the data produced or received and relayed by each module for analyzing proximity responses to transmit through the adaptive network control signals to a selectively-addressed module to respond to computer analyses of the data accumulated from modules forming the adaptive network. Interactions of local processors in modules that sense an intrusion determine the location and path of movements of the intruding object and control cameras in the modules to retrieve video images of the intruding object. Multiple operational frequencies in adaptive networks permit expansions by additional networks that each operate at separate radio frequencies to avoid overlapping interaction. Additional modules may be introduced into operating networks without knowing the operating frequency at the time of introduction. Remote modules operating as leaf nodes of the adaptive network actively adapt to changed network conditions upon awaking from power-conserving sleep mode. New programs are distributed to all or selected modules under control of the base station.
    • 多个模块交互以形成自适应网络,其中每个模块发送和接收指示对象接近的数据信号。 中央计算机累积由每个模块生成或接收和中继的数据,用于分析接近响应,以通过自适应网络控制信号传送到选择性寻址的模块,以响应从形成自适应网络的模块累积的数据的计算机分析。 感知入侵的模块中的本地处理器的交互决定了模块中入侵物体和控制摄像机的移动的位置和路径,以检索入侵物体的视频图像。 自适应网络中的多个操作频率允许通过附加网络进行扩展,每个网络在不同的射频频率下操作以避免重叠的交互。 在不知道引入时的工作频率的情况下,可以将额外的模块引入到操作网络中。 作为自适应网络的叶节点运行的远程模块在从省电休眠模式唤醒时主动适应变化的网络状况。 新程序分配给基站控制下的所有或所选模块。
    • 7. 发明申请
    • ADAPTIVE NETWORK AND METHOD
    • 自适应网络和方法
    • US20120290857A1
    • 2012-11-15
    • US13533428
    • 2012-06-26
    • Alan BroadRahul KapurJaidev PrabhuMartin Albert TuronNing XuXin YangMatt Miller
    • Alan BroadRahul KapurJaidev PrabhuMartin Albert TuronNing XuXin YangMatt Miller
    • G06F1/26
    • H04W52/0216G08B25/009G08B25/10G08B29/188H04W84/18Y02D70/22
    • A plurality of modules interact to form an adaptive network in which each module transmits and receives data signals indicative of proximity of objects. A central computer accumulates the data produced or received and relayed by each module for analyzing proximity responses to transmit through the adaptive network control signals to a selectively-addressed module to respond to computer analyses of the data accumulated from modules forming the adaptive network. Interactions of local processors in modules that sense an intrusion determine the location and path of movements of the intruding object and control cameras in the modules to retrieve video images of the intruding object. Multiple operational frequencies in adaptive networks permit expansions by additional networks that each operate at separate radio frequencies to avoid overlapping interaction. Additional modules may be introduced into operating networks without knowing the operating frequency at the time of introduction. Remote modules operating as leaf nodes of the adaptive network actively adapt to changed network conditions upon awaking from power-conserving sleep mode. New programs are distributed to all or selected modules under control of the base station.
    • 多个模块交互以形成自适应网络,其中每个模块发送和接收指示对象接近的数据信号。 中央计算机累积由每个模块生成或接收和中继的数据,用于分析接近响应,以通过自适应网络控制信号传送到选择性寻址的模块,以响应从形成自适应网络的模块累积的数据的计算机分析。 感知入侵的模块中的本地处理器的交互决定了模块中入侵物体和控制摄像机的移动的位置和路径,以检索入侵物体的视频图像。 自适应网络中的多个操作频率允许通过附加网络进行扩展,每个网络在不同的射频频率下操作以避免重叠的交互。 在不知道引入时的工作频率的情况下,可以将额外的模块引入到操作网络中。 作为自适应网络的叶节点运行的远程模块在从省电休眠模式唤醒时主动适应变化的网络状况。 新程序分配给基站控制下的所有或所选模块。
    • 9. 发明授权
    • Delivery notice and method of using same
    • US06634551B2
    • 2003-10-21
    • US09815745
    • 2001-03-23
    • Craig BartaMatt MillerDaniel GarciaScott Aubuchon
    • Craig BartaMatt MillerDaniel GarciaScott Aubuchon
    • G06F1760
    • G06Q10/08
    • Generally described, under on aspect of the invention, a single unique delivery notice is left at the particular location. However, just before it is left, this notice is electronically “linked” to the parcel(s) which were undeliverable. This can be done by a handheld portable data acquisition device which includes a conventional scanning means, allowing information to be scanned from the delivery notice as well as labels on the parcels, and stored on the handheld portable data acquisition device. If ten parcels were undeliverable, only one delivery notice is left behind but is electronically “linked” to all ten packages. The intended recipient can then contact the delivery service via the internet (or other suitable network) or by phone, by using information provided on the delivery notice. By providing the delivery service with unique information from the delivery notice, the intended recipient can get valuable information regarding the undelivered parcels. Such information can include shipper name, how many packages from each shipper, time of attempted delivery, COD status, etc. Arrangements can then be made to have the package(s) redelivered, held at a local operation center, redirected, or returned.