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    • 82. 发明申请
    • SYSTEM AND METHOD FOR REMOTELY OPERATING A WIRELESS DEVICE USING A SERVER AND CLIENT ARCHITECTURE
    • 使用服务器和客户端架构远程操作无线设备的系统和方法
    • US20130185351A1
    • 2013-07-18
    • US13788027
    • 2013-03-07
    • Kwang Wee Lee
    • Kwang Wee Lee
    • H04L29/06
    • H04W80/06G06F12/14H04L29/06047H04L67/42
    • The present disclosure relates to a system and method for remotely operating one or more peripheral devices of a wireless device using a server and client architecture. In one aspect, the system may comprise a wireless device that includes a processor, a memory, a peripheral device, and a server adapted to communicate with the peripheral device; and a removable media device that includes a memory, a processor, and a client adapted to communicate with the server of the wireless device. In another aspect, the method may comprise the steps of emulating a hardware interface on a removable media device; mapping a peripheral device of a wireless device to the interface; mapping a processor of the media device to the peripheral device; wrapping and sending hardware commands from a client of the media device to a server of the wireless device; and executing the commands on the peripheral device.
    • 本公开涉及一种用于使用服务器和客户端体系远程操作无线设备的一个或多个外围设备的系统和方法。 在一个方面,系统可以包括无线设备,其包括处理器,存储器,外围设备和适于与外围设备通信的服务器; 以及可移动媒体设备,其包括适于与无线设备的服务器进行通信的存储器,处理器和客户端。 在另一方面,该方法可以包括在可移动介质设备上仿真硬件接口的步骤; 将无线设备的外围设备映射到所述接口; 将媒体设备的处理器映射到外围设备; 将媒体设备的客户端的硬件命令包装并发送到无线设备的服务器; 并在外围设备上执行命令。
    • 87. 发明申请
    • THROUGHPUT ENHANCEMENT BY ACKNOWLEDGMENT SUPPRESSION
    • 通过确认抑制进行强化增强
    • US20130010775A1
    • 2013-01-10
    • US13548798
    • 2012-07-13
    • William S. KishJohn Chanak
    • William S. KishJohn Chanak
    • H04W24/02
    • H04W4/06H04L1/1607H04L69/16H04L69/163H04L2001/0097H04W28/06H04W80/06H04W84/12H04W88/04H04W88/06
    • Systems and methods for improving data transmission rates in communication networks are disclosed. In an 802.11 wireless communication network, where a source node of the wireless network transmits TCP data to a destination node of the wireless network, the destination node does not transmit TCP acknowledgments (ACKs) for the TCP data if 802.11 ACKs indicate that the destination node received the TCP data. If a source outside the wireless network transmits TCP data to the destination node within the wireless network through an intermediate device, such as an access point, the destination node suppresses transmitting TCP ACKs. The intermediate device transmits TCP ACKs as proxy for the destination node to the source. The intermediate device also suppresses TCP ACKs where a source node within the wireless network sends the TCP data to a destination node outside of the wireless network.
    • 公开了用于提高通信网络中的数据传输速率的系统和方法。 在802.11无线通信网络中,其中无线网络的源节点向无线网络的目的地节点发送TCP数据,如果802.11 ACK指示目的地节点,则目的地节点不传送TCP数据的TCP确认(ACK) 收到TCP数据。 如果无线网络外的源将无线网络中的TCP数据通过中间设备(例如接入点)发送到无线网络内的目的地节点,则目的节点抑制发送TCP ACK。 中间设备将作为目的地节点的代理的TCP ACK作为源发送。 中间设备还抑制TCP ACK,其中无线网络内的源节点将TCP数据发送到无线网络外部的目的地节点。
    • 89. 发明授权
    • Lightweight mobility architecture
    • 轻量级移动架构
    • US08325626B2
    • 2012-12-04
    • US12523664
    • 2008-01-14
    • Gábor TóthAndrás CsászárAttila MihalyZoltán Richárd Turányi
    • Gábor TóthAndrás CsászárAttila MihalyZoltán Richárd Turányi
    • H04J1/16H04L12/56
    • H04W8/087H04L29/12028H04L61/103H04L61/2015H04W80/06
    • Mobility between access domains in an Internet Protocol (IP) network can be supported by introducing a so-called Mobility Manager (MM) that maintains a database of currently attached devices and their current access domain location. The mobility manager may then detect, for a device registered in the database, a change of access domain from a first access domain to a second access domain by monitoring connection maintenance signaling related to the considered device. The mobility manager should at least obtain an indication of such a change of access domain. In response to a detected change of access domain, the mobility manager arranges for a reconfiguration of the network to forward traffic destined to an IP address of the device in the first access domain to a new location in the second access domain. In this way, the mobility manager allows the device to keep its IP address when moving between access domains.
    • 可以通过引入维护当前连接的设备的数据库及其当前访问域位置的所谓的移动管理器(MM)来支持互联网协议(IP)网络中的接入域之间的移动性。 然后,移动性管理器可以通过监视与所考虑的设备相关的连接维护信令来检测对于在数据库中注册的设备,从第一接入域到第二接入域的接入域的改变。 移动管理员至少应该获得访问域这种更改的指示。 响应于检测到的接入域的改变,移动性管理器布置网络的重新配置以将目的地为第一接入域中的设备的IP地址的流转发到第二接入域中的新位置。 以这种方式,移动管理器允许设备在接入域之间移动时保持其IP地址。
    • 90. 发明申请
    • MAXIMUM TRANSFER UNIT (MTU) OPTIMIZATION FOR ADVANCED WIRELESS NETWORKS
    • 用于高级无线网络的最大传输单元(MTU)优化
    • US20120281559A1
    • 2012-11-08
    • US13102096
    • 2011-05-06
    • Haim S. NERSagiv DRAZNIN
    • Haim S. NERSagiv DRAZNIN
    • H04W24/02
    • H04W28/06H04L69/162H04L69/163H04W80/06
    • A network device is configured to identify a configured maximum segment size value, for a wireless access network associated with the network device, which is calculated to prevent fragmentation over the wireless access network. The network device is configured to receive, from a first computing device, a synchronization message including an initial maximum segment size value for a Transmission Control Protocol (TCP) socket connection between the first computing device and a second computing device that uses the wireless access network. When the initial maximum segment size value is larger than the configured maximum segment size value, the network device is configured to replace the initial maximum segment size value with the configured maximum segment size value to create a modified synchronization message, and send the modified synchronization message to the second computing device for establishing the TCP socket connection.
    • 网络设备被配置为针对与网络设备相关联的无线接入网络识别配置的最大段大小值,其被计算为防止在无线接入网络上的分段。 网络设备被配置为从第一计算设备接收包括用于第一计算设备与使用无线接入网络的第二计算设备之间的传输控制协议(TCP)套接字连接的初始最大段大小值的同步消息 。 当初始最大段大小值大于配置的最大段大小值时,网络设备被配置为用配置的最大段大小值替换初始最大段大小值,以创建修改的同步消息,并发送修改的同步消息 到第二计算设备以建立TCP套接字连接。