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    • 4. 发明申请
    • APPARATUS AND METHOD TO MANAGE INTERFERENCE BETWEEN COMMUNICATION NODES
    • 用于管理通信节点之间干扰的装置和方法
    • US20130288737A1
    • 2013-10-31
    • US13822787
    • 2010-09-21
    • Markus NentwigPekka Janis
    • Markus NentwigPekka Janis
    • H04W52/24
    • H04W52/243H04W52/267H04W52/343
    • An apparatus, method and system to control a transmitter power level to manage interference between communication nodes in a communication system. In one embodiment, an apparatus includes a processor and memory including computer program code. The memory and the computer program code are configured to, with the processor, cause the apparatus to receive an interference message including a reported interference characteristic associated with a communication resource employed by an interfered communication node and a reported weighting factor indicating an importance of the communication resource to the interfered communication node. The memory and the computer program code are also configured to, with the processor, cause the apparatus to generate a message for a receiving communication node employing the communication resource, and select a transmitter power level for the message as a function of the reported interference characteristic and the reported weighting factor.
    • 一种用于控制发射机功率电平以管理通信系统中的通信节点之间的干扰的装置,方法和系统。 在一个实施例中,一种装置包括包括计算机程序代码的处理器和存储器。 存储器和计算机程序代码被配置为与处理器一起使得设备接收包括与受干扰通信节点所使用的通信资源相关联的已报告干扰特性的干扰消息,以及指示通信重要性的报告加权因子 资源到被干扰的通信节点。 存储器和计算机程序代码还被配置为与处理器一起使装置为采用通信资源的接收通信节点生成消息,并且根据报告的干扰特性来选择消息的发射机功率电平 和报告的加权因子。
    • 6. 发明授权
    • Radio resource sharing
    • 无线资源共享
    • US08295153B2
    • 2012-10-23
    • US12317590
    • 2008-12-23
    • Markus NentwigPekka Janis
    • Markus NentwigPekka Janis
    • H04J9/00H04J3/22H04W4/00
    • H04L5/0044H04B17/336H04B17/354H04L1/0003H04L1/0009H04L1/0015H04L5/0007H04L5/0062H04M15/805H04W16/14H04W52/242H04W52/246H04W52/367
    • An apparatus includes a controller configured to be coupled with a radio interface of a first wireless network node. The controller is further configured to respond to a spectrum emission mask that includes indications of both desirable emissions and undesirable emissions over a plurality of radio resource allocation units and to estimate a signal to noise ratio in individual ones of radio resource allocation units at at least one second node, to select an appropriate modulation-and-coding scheme per radio resource allocation unit and to schedule transmissions for the radio interface on the radio resource allocation units using the selected modulation-and-coding scheme. The controller is further configured to receive via the radio interface a beacon transmission from a second node, where the beacon transmission indicates a receiver sensitivity of the second node. The controller estimates a path loss to the second node that transmitted the beacon in accordance with knowledge of a transmission power with which the beacon was transmitted and considers distortion characteristics associated with the radio interface, the estimated path loss and the estimated signal to noise ratio so as to allocate transmit signal energy such that a sum of the desirable emissions and the undesirable emissions is less than limits imposed by the spectrum emission mask.
    • 一种装置包括被配置为与第一无线网络节点的无线电接口耦合的控制器。 控制器还被配置为响应于包括在多个无线电资源分配单元上的期望发射和不期望的发射的指示的频谱发射掩模,并且在至少一个无线电资源分配单元中的各个无线资源分配单元中估计信噪比 为每个无线电资源分配单元选择适当的调制和编码方案,并使用所选择的调制和编码方案来调度无线电接口上的无线电接口的传输。 控制器还被配置为经由无线电接口接收来自第二节点的信标传输,其中信标传输指示第二节点的接收机灵敏度。 控制器根据发送信标的发射功率的知识估计发送信标的第二节点的路径损耗,并考虑与无线电接口相关联的失真特性,估计的路径损耗和估计的信噪比。 为了分配发射信号能量,使得期望的发射和不期望的发射的总和小于由频谱发射掩模施加的限制。
    • 7. 发明申请
    • Radio resource sharing
    • 无线资源共享
    • US20100157910A1
    • 2010-06-24
    • US12317590
    • 2008-12-23
    • Markus NentwigPekka Janis
    • Markus NentwigPekka Janis
    • H04W72/04
    • H04L5/0044H04B17/336H04B17/354H04L1/0003H04L1/0009H04L1/0015H04L5/0007H04L5/0062H04M15/805H04W16/14H04W52/242H04W52/246H04W52/367
    • An apparatus includes a controller configured to be coupled with a radio interface of a first wireless network node. The controller is further configured to respond to a spectrum emission mask that includes indications of both desirable emissions and undesirable emissions over a plurality of radio resource allocation units and to estimate a signal to noise ratio in individual ones of radio resource allocation units at at least one second node, to select an appropriate modulation-and-coding scheme per radio resource allocation unit and to schedule transmissions for the radio interface on the radio resource allocation units using the selected modulation-and-coding scheme. The controller is further configured to receive via the radio interface a beacon transmission from a second node, where the beacon transmission indicates a receiver sensitivity of the second node. The controller estimates a path loss to the second node that transmitted the beacon in accordance with knowledge of a transmission power with which the beacon was transmitted and considers distortion characteristics associated with the radio interface, the estimated path loss and the estimated signal to noise ratio so as to allocate transmit signal energy such that a sum of the desirable emissions and the undesirable emissions is less than limits imposed by the spectrum emission mask.
    • 一种装置包括被配置为与第一无线网络节点的无线电接口耦合的控制器。 控制器还被配置为响应于包括在多个无线电资源分配单元上的期望发射和不期望的发射的指示的频谱发射掩模,并且在至少一个无线电资源分配单元中的各个无线资源分配单元中估计信噪比 为每个无线电资源分配单元选择适当的调制和编码方案,并使用所选择的调制和编码方案来调度无线电接口上的无线电接口的传输。 控制器还被配置为经由无线电接口接收来自第二节点的信标传输,其中信标传输指示第二节点的接收机灵敏度。 控制器根据发送信标的发射功率的知识估计发送信标的第二节点的路径损耗,并考虑与无线电接口相关联的失真特性,估计的路径损耗和估计的信噪比。 为了分配发射信号能量,使得期望的发射和不期望的发射的总和小于由频谱发射掩模施加的限制。