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    • 3. 发明申请
    • SCHEDULING BY A FRACTION OF REMAINING TIME TO BE ALLOCATED OVER REMAINING SERVICE INTERVAL
    • 由剩余服务时间间隔分配的时间表分配
    • WO2005125124A1
    • 2005-12-29
    • PCT/IB2005/051934
    • 2005-06-10
    • KONINKLIJKE PHILIPS ELECTRONICS, N.V.SOOMRO, AmjadSCHMITT, Ruediger
    • SOOMRO, AmjadSCHMITT, Ruediger
    • H04L12/56
    • H04L47/826H04L47/14H04L47/50H04L47/56H04L47/623H04L47/626H04L47/6265H04W72/1257
    • A method of scheduling by a fraction of remaining time to be allocated over a remaining service interval, wherein with respect to a minimum of delay bound or a maximum service interval for a traffic stream, servicing first a particular stream "i" with the highest ratio of the remaining channel time to be allocated in a service period S P to the remaining time is to be serviced first before the service period S P elapses. The sub-steps include (a) obtaining a factor U; for each particular traffic stream i of a plurality of traffic streams, wherein U, for each particular traffic stream I of a plurality of traffic streams, wherein (equation I), otherwise U i =1, wherein T i ar is equal to remaining time to be allocated, and T i dr is equal to time before an initial Service period S i p including at least one of a Delay Bound and a Maximum Service Interval elapses; (b) selecting a particular U i factor obtained in step (a) that has a maximum value of the plurality of streams; and (c) servicing the particular stream selected in step (b) by providing channel access time.
    • 一种通过在剩余服务间隔上分配的剩余时间的一小部分进行调度的方法,其中对于业务流的最小延迟限制或最大服务间隔,首先以最高比率服务于特定流“i” 将在服务期间SP中分配到剩余时间的剩余信道时间剩余时间首先在服务周期SP经过之前进行服务。 子步骤包括(a)获得因子U; 对于多个业务流的每个特定业务流i,其中U对于多个业务流的每个特定业务流I,其中(等式I),否则U i = 1,其中T ar等于剩余 时间被分配,T dr等于包括延迟界限和最大服务间隔中的至少一个的初始服务周期S p之前的时间; (b)选择在步骤(a)中获得的具有多个流的最大值的特定Ui因子; 和(c)通过提供频道访问时间为步骤(b)中选择的特定流提供服务。
    • 5. 发明申请
    • IEEE 802.11 WLAN CLIENT DEVICE WITH TWO WIRELESS INTERFACES FOR IMPROVING SCANNING PERFORMANCE DURING ROAMING
    • 具有两个无线接口的IEEE 802.11 WLAN客户端设备,用于在漫游期间提高扫描性能
    • WO2009095832A1
    • 2009-08-06
    • PCT/IB2009/050283
    • 2009-01-23
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.SCHMITT, Ruediger
    • SCHMITT, Ruediger
    • H04W48/16H04W36/08H04W36/18H04W36/36H04W84/12
    • H04W48/16H04W36/08H04W84/12H04W88/06
    • A wireless mobile device interacts with a proximate wireless Local Area Network (WLAN) and Access Points (APs), and uses a scanning interface configured to perform scanning; and, a communication interface configured to perform at least data communication. The two interfaces are expediently co-located in the same wireless device. If the scanning device is dedicated for performing scanning operations, it will free the communication interface from vacating its channel to perform scanning. The dedicated scanning interface generates a more thorough 'picture' of the wireless environment or neighborhood which the wireless device is operating in. This neighborhood information compiled by the scanning interface is then used by the communication interface for making effective decisions on which target AP to connect to during roaming. The invention is applicable to wireless systems that require seamless mobility support, such as in WUSB, 4G cellular and IEEE 802.11. Applications include patient monitoring and VoIP.
    • 无线移动设备与邻近的无线局域网(WLAN)和接入点(AP)进行交互,并使用被配置为执行扫描的扫描接口; 以及被配置为执行至少数据通信的通信接口。 两个接口方便地位于同一无线设备中。 如果扫描设备专用于执行扫描操作,则将使通信接口释放其通道以执行扫描。 专用扫描接口产生无线设备正在操作的无线环境或邻域的更彻底的“图像”。由扫描接口编辑的该邻域信息随后被通信接口用于对哪个目标AP进行连接作出有效的决定 到漫游 本发明适用于需要无缝移动支持的无线系统,例如WUSB,4G蜂窝和IEEE 802.11。 应用包括病人监护和VoIP。