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    • 2. 发明授权
    • Power conservation and latency minimization in frequency hopping communication networks
    • 跳频通信网络中的节能和延迟最小化
    • US09450642B2
    • 2016-09-20
    • US13180853
    • 2011-07-12
    • Jonathan W. HuiWei HongLik Chuen Alec Woo
    • Jonathan W. HuiWei HongLik Chuen Alec Woo
    • H04B1/00H04B1/713
    • H04B1/713
    • In one embodiment, a communication device samples a particular frequency hopping sequence during only a particular specified sub-timeslot of a timeslot. If a transmission energy is not detected during the specified sub-timeslot, the device turns off its receiver for a remainder of the timeslot. Otherwise, it continues to sample the particular frequency hopping sequence for at least one or more additional sub-timeslots of the remainder of the timeslot. In another embodiment, a communication device determines whether a neighboring communication device is operating in a first mode or a second mode. If in the second mode, it transmits a transmission to the neighboring communication device starting at any sub-timeslot of the plurality of sub-timeslots. If in the first mode, it transmits the transmission to the neighboring communication device while ensuring that the transmission is actively energized during a particular specified sub-timeslot.
    • 在一个实施例中,通信设备仅在时隙的特定指定子时隙中采样特定的跳频序列。 如果在指定的子时隙期间未检测到传输能量,则该设备在时隙的剩余时间内关闭其接收机。 否则,它继续针对时隙的其余部分的至少一个或多个附加子时隙对特定跳频序列进行采样。 在另一个实施例中,通信设备确定相邻通信设备是否在第一模式或第二模式中操作。 如果在第二模式中,则从多个子时隙的任何子时隙开始向相邻通信设备发送传输。 如果在第一模式中,则将传输发送到相邻通信设备,同时确保在特定指定子时隙期间传输被激活。
    • 4. 发明授权
    • Link reliability metrics in communication networks
    • 通信网络中链路可靠性指标
    • US08699368B2
    • 2014-04-15
    • US13190859
    • 2011-07-26
    • Jonathan W. HuiLik Chuen Alec WooWei Hong
    • Jonathan W. HuiLik Chuen Alec WooWei Hong
    • H04J1/16H04J3/16
    • H04W74/0808H04W4/38H04W74/085H04W74/0891H04W84/18
    • In one embodiment, a transmitter in a communication network receives an indication of active transmission times of a receiver to which the transmitter attempts to reach with first transmissions, the active transmission times indicating respective times of second transmissions initiated by the receiver. Based on determining when the first transmissions occur, the transmitter may then compute a link reliability metric for a link from the transmitter to the receiver by excluding one or more of the first transmissions from the indicated active transmission times of the second transmissions. In one embodiment, the active transmission times are in the past and the reliability metric excludes any first transmissions in the past during those times, while in another embodiment the active transmission times are scheduled in the future and the reliability metric does not include any first transmissions since the first transmissions may be scheduled to avoid the active transmission times.
    • 在一个实施例中,通信网络中的发射机接收发射机尝试通过第一次传输到达接收机的主动传输时间的指示,主动传输时间指示由接收机发起的第二传输的相应时间。 基于确定何时发生第一传输,然后发射机可以通过从指示的第二传输的主动传输时间排除一个或多个第一传输来计算从发射机到接收机的链路的链路可靠性度量。 在一个实施例中,主动传输时间是过去的,并且可靠性度量在那些时间期间排除过去的任何第一传输,而在另一个实施例中,将来调度有效传输时间,并且可靠性度量不包括任何第一传输 因为可以调度第一传输以避免主动传输时间。
    • 5. 发明授权
    • Efficient network discovery in frequency hopping networks
    • 跳频网络中的有效网络发现
    • US09281865B2
    • 2016-03-08
    • US13272841
    • 2011-10-13
    • Jonathan W. HuiLik Chuen Alec WooWei Hong
    • Jonathan W. HuiLik Chuen Alec WooWei Hong
    • H04B1/713
    • H04B1/713
    • In one embodiment, a device in a frequency hopping communication network transmits responsive beacon messages based on adaptive types of responsive beacon message transmission based on a number of received beacon requests within a given time period: the number below a threshold results in synchronized unicast messages; the number above the threshold results in unsynchronized broadcast messages. In another embodiment, the device suppresses unsolicited beacon message transmission based on a density-aware redundancy count of other unsolicited beacon message transmissions from neighboring devices. In another embodiment, the device may transmit unsolicited beacon messages according to an adaptive interval based on stability of the network. In another embodiment, the device may suppress transmission of a beacon request to join the communication network based on a density-aware redundancy count of other beacon requests from neighboring devices, and transmits beacon requests at an adaptive interval that increases in response to each unanswered beacon request.
    • 在一个实施例中,跳频​​通信网络中的设备基于在给定时间段内的接收到的信标请求的数量,基于自适应类型的响应信标消息传输来发送响应信标消息:低于阈值的数量导致同步的单播消息; 超过阈值的数字导致不同步的广播消息。 在另一实施例中,设备基于来自相邻设备的其他未经请求的信标消息传输的密度感知冗余计数来抑制主动信标消息传输。 在另一个实施例中,设备可以基于网络的稳定性,根据自适应间隔发送未经请求的信标消息。 在另一个实施例中,设备可以基于来自相邻设备的其他信标请求的密度感知冗余计数来抑制加入通信网络的信标请求的传输,并以响应于每个未​​应答信标而增加的自适应间隔发送信标请求 请求。
    • 6. 发明授权
    • Collecting power outage notifications in a frequency hopping communication network
    • 在跳频通信网络中收集停电通知
    • US09001676B2
    • 2015-04-07
    • US13192802
    • 2011-07-28
    • Jonathan W. HuiWei HongLik Chuen Alec Woo
    • Jonathan W. HuiWei HongLik Chuen Alec Woo
    • G01R31/08H04B1/713
    • H04B1/713
    • In one embodiment, a device in a frequency hopping communication network operate in a first mode according to a common broadcast schedule for the network that simultaneously overlays a first configured portion of all independently determined unicast listening schedules in the network. In response to determining a power outage condition, the device switches to operation in a power outage mode where the common broadcast schedule for the network in the power outage mode simultaneously overlays a second configured portion of all independently determined unicast listening schedules in the network, the second configured portion greater than the first configured portion. In one embodiment, the device broadcasts one or more power outage notifications (PONs) in response to determining the power outage condition as a reduction of a main power supply at the device. In another embodiment, the device receives a PON while powered as the power outage condition.
    • 在一个实施例中,跳频​​通信网络中的设备根据网络的公共广播调度以第一模式操作,该网络同时覆盖网络中所有独立确定的单播监听时间表的第一配置部分。 响应于确定停电状况,设备切换到停电模式中的操作,其中停电模式下的网络的公共广播调度同时覆盖网络中所有独立确定的单播监听时间表的第二配置部分, 第二构造部分大于第一构造部分。 在一个实施例中,响应于将停电状况确定为设备上的主电源的减少,设备广播一个或多个断电通知(PON)。 在另一个实施例中,设备在停电状态下被接通时接收PON。
    • 10. 发明申请
    • EFFICIENT NETWORK DISCOVERY IN FREQUENCY HOPPING NETWORKS
    • 频繁搜索网络中有效的网络发现
    • US20130094536A1
    • 2013-04-18
    • US13272841
    • 2011-10-13
    • Jonathan W. HuiLik Chuen Alec WooWei Hong
    • Jonathan W. HuiLik Chuen Alec WooWei Hong
    • H04B1/713
    • H04B1/713
    • In one embodiment, a device in a frequency hopping communication network transmits responsive beacon messages based on adaptive types of responsive beacon message transmission based on a number of received beacon requests within a given time period: the number below a threshold results in synchronized unicast messages; the number above the threshold results in unsynchronized broadcast messages. In another embodiment, the device suppresses unsolicited beacon message transmission based on a density-aware redundancy count of other unsolicited beacon message transmissions from neighboring devices. In another embodiment, the device may transmit unsolicited beacon messages according to an adaptive interval based on stability of the network. In another embodiment, the device may suppress transmission of a beacon request to join the communication network based on a density-aware redundancy count of other beacon requests from neighboring devices, and transmits beacon requests at an adaptive interval that increases in response to each unanswered beacon request.
    • 在一个实施例中,跳频​​通信网络中的设备基于在给定时间段内的接收到的信标请求的数量,基于自适应类型的响应信标消息传输来发送响应信标消息:低于阈值的数量导致同步的单播消息; 超过阈值的数字导致不同步的广播消息。 在另一实施例中,设备基于来自相邻设备的其他未经请求的信标消息传输的密度感知冗余计数来抑制主动信标消息传输。 在另一个实施例中,设备可以基于网络的稳定性,根据自适应间隔发送未经请求的信标消息。 在另一个实施例中,设备可以基于来自相邻设备的其他信标请求的密度感知冗余计数来抑制加入通信网络的信标请求的传输,并以响应于每个未​​应答信标而增加的自适应间隔发送信标请求 请求。