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    • 6. 发明申请
    • Muliple Receiver Aggregation (Mra) with Different Data Rates for Ieee 802.11N
    • Ieee 802.11N具有不同数据速率的多路接收器汇聚(Mra)
    • US20080049654A1
    • 2008-02-28
    • US11569039
    • 2005-05-12
    • Begonya OtalJoerg HabethaFrancesc DalmasesPen LiMonisha GhoshParag Garg
    • Begonya OtalJoerg HabethaFrancesc DalmasesPen LiMonisha GhoshParag Garg
    • H04L12/28H04L29/06
    • H04W28/06H04W48/08H04W52/0216H04W52/0219H04W64/00H04W84/12Y02D70/142
    • Method, frame definitions (300 400 500 700 800 1000 1200 1300 1400) and system for transmission of an aggregation of packets which includes a plurality of Medium Access Control (MAC) Protocol Data Units (MPDUs) or PLCP (Physical Layer Convergence Protocol) Protocol Data Units (PPDUs) intended for one or several receivers and transmitted at one or several different Physical (PHY) rates. In some aspects of the invention, a pre-amble, rsp. mid-amble (415.i 515.i 715.i 815.i 1015.i 1215.i 1315.i) is transmitted in-between each or between multiples of MPDUs or PPDUs allowing receiver devices to go into sleep mode and wake-up during the aggregate or packet burst. Furthermore, information is transmitted at the beginning of the aggregate/packet burst, which allows devices to deduce the position of MPDUs/PPDUs or multiples of MPDUs/PPDUs in the aggregate. MPDUs or PPDUs are grouped in order to enable efficient sleep times of the receiving devices. The receiving devices decode the information at the beginning of the aggregate/burst, fall into sleep-mode and wake up shortly before their packets have to be received.
    • 方法,帧定义(300 400 500 700 800 1000 1200 1300 1400)以及用于传输分组聚合的系统,包括多个介质访问控制(MAC)协议数据单元(MPDU)或PLCP(物理层会聚协议)协议 数据单元(PPDU),用于一个或多个接收器,并以一个或多个不同的物理(PHY)速率传输。 在本发明的一些方面,一种前缀,rsp。 中间码(415. i 515. i 715. i 815. i 1015. i 1215. i 1315. i)在MPDU或PPDU之间的每个或多个之间传输,允许接收机设备进入睡眠模式, 在聚合或分组突发期间。 此外,在聚合/分组突发的开始处发送信息,这允许设备在聚合中推断出MPDU / PPDU的位置或MPDU / PPDU的倍数。 MPDU或PPDU被分组以便实现接收设备的有效睡眠时间。 接收设备在聚合/突发的开始处对信息进行解码,在分组必须被接收之前不久就会进入休眠模式并唤醒。
    • 7. 发明授权
    • Method of distributive reservation of a medium in a radio communications network
    • 无线电通信网络中介质的分布式预留方法
    • US08400960B2
    • 2013-03-19
    • US11568583
    • 2005-05-04
    • Guido HiertzBegonya OtalJörg HabethaFrancesc DalmasesKlaus Peter May
    • Guido HiertzBegonya OtalJörg HabethaFrancesc DalmasesKlaus Peter May
    • H04W4/00
    • H04W74/02H04W84/12
    • Method for reservation of a medium in a radio communication network for data transmission between stations (A-E) of the network comprising at least one station (A, B, E) operating according to a first protocol (DRP) and a second station (C, D) operating according to a second protocol (802.11), the method comprises the steps of: providing a contention free period (23) within the first and second protocol; performing the reservation of the medium for the first station (A, B, E) according to the first protocol; and performing the reservation of the medium for the second station (C, D) according to the second protocol, announcing the contention free period for the first and second protocol by use of the same signal (21, 22, 31, 33). In particular a beacon signal is used, wherein the beacon includes a signal (488) which is recognized and accepted by the second stations (C, D). Further information (404) is added into the beacon frame (41) for reserving reservation periods (23) for the first stations (A, B, E).
    • 用于在包括至少一个根据第一协议(DRP)操作的站(A,B,E)和第二站(C,C)的站(A,B,E)的网络的站(AE)之间进行数据传输的无线电通信网络中的介质的预留方法, D)根据第二协议(802.11)操作,所述方法包括以下步骤:在所述第一和第二协议内提供无争用时段(23); 根据第一协议执行第一站(A,B,E)的介质的预留; 以及根据第二协议执行第二站(C,D)的介质的预留,通过使用相同的信号(21,22,33,33)来通知第一和第二协议的无争用时段。 特别地,使用信标信号,其中信标包括由第二站(C,D)识别和接受的信号(488)。 进一步的信息(404)被添加到信标帧(41)中,用于保留第一站(A,B,E)的预留时段(23)。
    • 8. 发明申请
    • Method Of Distributive Reservation Of A Medium In A Radio Communications Network
    • 无线电通信网络中媒体分配预留方法
    • US20090010210A1
    • 2009-01-08
    • US11568583
    • 2005-05-04
    • Guido HiertzBegonya OtalJorg HabethaFrancesc DalmasesKlaus May
    • Guido HiertzBegonya OtalJorg HabethaFrancesc DalmasesKlaus May
    • H04Q7/00H04J3/00
    • H04W74/02H04W84/12
    • Method for reservation of a medium in a radio communication network for data transmission between stations (A-E) of the network comprising at least one station (A, B, E) operating according to a first protocol (DRP) and a second station (C, D) operating according to a second protocol (802.11), the method comprises the steps of: providing a contention free period (23) within the first and second protocol; performing the reservation of the medium for the first station (A, B, E) according to the first protocol; and performing the reservation of the medium for the second station (C, D) according to the second protocol, announcing the contention free period for the first and second protocol by use of the same signal (21, 22, 31, 33). In particular a beacon signal is used, wherein the beacon includes a signal (488) which is recognized and accepted by the second stations (C, D). Further information (404) is added into the beacon frame (41) for reserving reservation periods (23) for the first stations (A, B, E).
    • 用于在包括至少一个根据第一协议(DRP)操作的站(A,B,E)和第二站(C,C)的站(A,B,E)的网络的站(AE)之间进行数据传输的无线电通信网络中的介质的预留方法, D)根据第二协议(802.11)操作,所述方法包括以下步骤:在所述第一和第二协议内提供无争用时段(23); 根据第一协议执行第一站(A,B,E)的介质的预留; 以及根据第二协议执行第二站(C,D)的介质的预留,通过使用相同的信号(21,22,33,33)来通知第一和第二协议的无争用时段。 特别地,使用信标信号,其中信标包括由第二站(C,D)识别和接受的信号(488)。 进一步的信息(404)被添加到信标帧(41)中,用于保留第一站(A,B,E)的预留时段(23)。
    • 9. 发明申请
    • Wireless Communication System, Wireless Communication Device for Use as a Station in a Wireless Communication System, a Method of Communication Within a Wireless Communication System
    • 无线通信系统,用于无线通信系统中的站的无线通信设备,无线通信系统内的通信方法
    • US20080013496A1
    • 2008-01-17
    • US11569981
    • 2005-06-08
    • Francesc DalmasesJorg Habetha
    • Francesc DalmasesJorg Habetha
    • H04J3/00
    • H04W72/0446H04W84/20
    • The invention relates to a wireless communication system comprising a master station, a first additional station, and a second additional station, whereby the master station is operable to communicate with the first and second additional stations in a first high-speed mode utilizing a first channel and at least a second channel and in a second low-speed mode utilizing either the first channel or the second channel, the first additional station is operable to communicate in the first mode utilizing the first channel and at least the second channel, and the second additional station is arranged to communicate in the second mode utilizing either the first channel or the second channel, characterized in that master station is arranged to define a plurality of first time slots on the first channel and a plurality of second timeslots on the second channel for communication in the first mode, and a plurality of third time slots on the first channel and a plurality of fourth time slots on the second channel for communication in the second mode.
    • 本发明涉及一种包括主站,第一附加站和第二附加站的无线通信系统,由此主站可操作地以第一高速模式与第一和第二附加站进行通信,利用第一通道 以及利用第一信道或第二信道的至少第二信道和第二低速模式,第一附加站可操作以利用第一信道和至少第二信道以第一模式进行通信,而第二信道的第二信道 附加站被布置为利用第一信道或第二信道在第二模式中进行通信,其特征在于,主站被布置为在第一信道上定义多个第一时隙,并且在第二信道上定义多个第二时隙, 第一模式中的通信,以及第一信道上的多个第三时隙以及第一时隙上的多个第四时隙 第二通道用于第二模式的通信。
    • 10. 发明授权
    • Network array, forwarder device and method of operating a forwarder device
    • 网络阵列,转发器装置和操作转发器的方法
    • US09119227B2
    • 2015-08-25
    • US11575777
    • 2005-09-21
    • Jorg HabethaAdolfo Jose RoqueFrancesc Dalmases
    • Jorg HabethaAdolfo Jose RoqueFrancesc Dalmases
    • H04L12/28H04L12/56H04W92/02H04W72/12H04W84/18
    • H04W92/02H04W72/1252H04W84/18
    • A network array (100) comprises a first network (101) having a plurality of first nodes (103, 104, 109), comprises a second network (102) having a plurality of second nodes (106, 109), and comprises a forwarder node (109). The forwarder node (109) constitutes one of the first nodes (103, 104, 109) and constitutes one of the second nodes (106, 109) to form a communication interface between the first network (101) and the second network (102). The forwarder node (109) has an implemented data transmission scheduling management function capable of distinguishing between data to be transmitted between the first network (101) and the second network (102) and data to be transmitted within the first network (101) or within the second network (102). The forwarder node (109) is adapted to communicate with the first network (101) using a first operation frequency and is adapted to communicate with the second network (102) using a second operation frequency which is different from the first operation frequency.
    • 网络阵列(100)包括具有多个第一节点(103,104,109)的第一网络(101),包括具有多个第二节点(106,109)的第二网络(102),并且包括转发器 节点(109)。 转发节点(109)构成第一节点(103,104,109)中的一个,并且构成第二节点(106,109)之一以形成第一网络(101)和第二网络(102)之间的通信接口, 。 转发节点(109)具有实现的数据传输调度管理功能,其能够区分在第一网络(101)和第二网络(102)之间要发送的数据和要在第一网络(101)内传输的数据,或者在 第二网络(102)。 转发节点(109)适于使用第一操作频率与第一网络(101)通信,并且适于使用与第一操作频率不同的第二操作频率与第二网络(102)通信。