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    • 3. 发明申请
    • TECHNIQUES FOR MULTI-LEVEL SERVICE DISCOVERY
    • 多层次服务发现的技术
    • WO2014065897A1
    • 2014-05-01
    • PCT/US2013/048114
    • 2013-06-27
    • INTEL CORPORATIONQI, Emily, H.PARK, MinyoungHUANG, Po-Kai
    • QI, Emily, H.PARK, MinyoungHUANG, Po-Kai
    • H04B7/24
    • H04L67/16H04L61/6004H04W84/18
    • Examples are disclosed for multi-level service discovery. In some examples, a first level of information indicating a service type for a service provided by a first wireless device may be transmitted by the first wireless device to another wireless device. The first level may enable the other wireless device to determine whether the indicated service type at least partially matches a service interest. A second level may then be transmitted by the first wireless device that includes a service identification to enable the other wireless device to determine whether the service substantially matches a service interest for the other wireless device. A third level may then be transmitted from the first wireless device that includes service content information. The third level may be transmitted responsive to the other wireless device requesting the service content information. Other examples are described and claimed.
    • 公开了用于多级服务发现的示例。 在一些示例中,指示由第一无线设备提供的服务的服务类型的第一级信息可以由第一无线设备发送到另一无线设备。 第一级别可以使得其他无线设备能够确定所指示的服务类型是否至少部分地匹配服务兴趣。 然后可以由包括服务标识的第一无线设备发送第二级别,以使其他无线设备能够确定该服务是否与另一无线设备的服务兴趣基本匹配。 然后可以从包括服务内容信息的第一无线设备发送第三级别。 响应于请求服务内容信息的其他无线设备可以发送第三级。 其他的例子被描述和要求保护。
    • 7. 发明申请
    • SYSTEM AND METHOD FOR ENABLING LOW POWER DEVICES
    • 用于启动低功率器件的系统和方法
    • WO2013089747A1
    • 2013-06-20
    • PCT/US2011/065207
    • 2011-12-15
    • INTEL CORPORATIONPARK, MinyoungSTACEY, Robert J.QI, Emily H.
    • PARK, MinyoungSTACEY, Robert J.QI, Emily H.
    • H04W74/06H04W72/12
    • H04W52/0216H04W52/0209H04W74/06H04W84/12Y02D70/00Y02D70/142Y02D70/144Y02D70/146Y02D70/168
    • Various embodiments are directed to a wireless access point capable of reserving a wireless communication channel by sending a quiet message to multiple legacy devices. The quiet message may include data identifying periodic quiet durations during which the legacy devices cannot access the wireless communication channel. The wireless access point may send a polling schedule to the multiple low power wireless devices. The polling schedule may include data identifying the periodic quiet durations. The wireless access point may then poll the multiple low power wireless devices during the periodic quiet durations. The low power wireless devices can exchange data with the wireless access point during the quiet durations. The quiet message sent to the legacy devices guarantees that the legacy devices will not use the specified channel during the quiet durations. Thus, communications with the low power wireless devices may occur without interference from the legacy devices.
    • 各种实施例涉及能够通过向多个传统设备发送安静消息来保留无线通信信道的无线接入点。 静默消息可以包括识别传统设备不能访问无线通信信道的周期性静默持续时间的数据。 无线接入点可以向多个低功率无线设备发送轮询时间表。 轮询时间表可以包括识别周期性安静持续时间的数据。 然后,无线接入点可以在周期性静默期间轮询多个低功率无线设备。 低功率无线设备可以在安静的持续时间内与无线接入点交换数据。 发送到传统设备的安静消息保证传统设备在安静持续时间内不会使用指定的频道。 因此,与低功率无线设备的通信可以在没有来自传统设备的干扰的情况下发生。
    • 9. 发明申请
    • METHODS AND ARRANGEMENTS TO COMPRESS IDENTIFICATION
    • 压缩识别方法和安排
    • WO2014107689A1
    • 2014-07-10
    • PCT/US2014/010390
    • 2014-01-06
    • INTEL IP CORPORATIONPARK, Minyoung
    • PARK, Minyoung
    • H04B7/24
    • H04W48/16H04W48/12
    • Logic to reduce the probability of hashing collisions via a single hash function. Logic may hash the service set identification (SSID) to generate a compressed SSID and determine multiple compressed SSID segments based upon the compressed SSID. Logic may generate multiple SSID segments by hashing modified versions of the SSID or modifying hashed versions of the SSID. And logic may identify the compressed SSID segment with an index number. Logic may receive one or more compressed SSID segments, determine an index number associated with the segment(s) and compare the received SSID segment against a compressed SSID segment of an SSID that is sought. Logic may generate the multiple compressed SSID segments, store the segments in memory, and compare the compressed SSID segment received in a beacon with a corresponding compressed SSID segment in the memory.
    • 通过单个散列函数降低散列碰撞概率的逻辑。 逻辑可以使服务集标识(SSID)散列以生成压缩的SSID,并且基于压缩的SSID来确定多个压缩的SSID段。 逻辑可以通过散列SSID的修改版本或修改散列版本的SSID来生成多个SSID段。 并且逻辑可以用索引号识别压缩的SSID段。 逻辑可以接收一个或多个压缩的SSID段,确定与段相关联的索引号,并将接收到的SSID段与所寻求的SSID的压缩SSID段进行比较。 逻辑可以生成多个压缩的SSID段,将段存储在存储器中,并将在信标中接收的压缩SSID段与存储器中的对应的压缩SSID段进行比较。