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    • 11. 发明申请
    • RESOURCE PARTITIONING FOR UPLINK IN A WIRELESS COMMUNICATION NETWORK
    • 资源分配在无线通信网络中上传
    • US20100238885A1
    • 2010-09-23
    • US12725137
    • 2010-03-16
    • Jaber Mohammad BorranAamod Dinkar Khandekar
    • Jaber Mohammad BorranAamod Dinkar Khandekar
    • H04W72/04
    • H04B17/0077H04B17/309H04B17/382H04W8/005H04W52/243H04W52/40H04W72/00H04W72/082H04W72/1231
    • Techniques for performing resource partitioning are described. In an aspect, adaptive resource partitioning may be performed to dynamically allocate available resources for the uplink to nodes, e.g., base stations. Each node may be assigned a list of target interference-over-thermal (IoT) levels for the available resources by the adaptive resource partitioning. Each node may obtain a list of target IoT levels for itself and at least one list of target IoT levels for at least one neighbor node. The list of target IoT levels for each node may include a configurable target IoT level on each available resource for the node. Each node may schedule its UEs for transmission on the available resources (e.g., may determine transmit power levels and rates for the UEs) based on the target IoT levels for itself and the neighbor node(s) such that the target IoT levels for the neighbor node(s) can be met.
    • 描述用于执行资源划分的技术。 在一方面,可以执行自适应资源划分以动态地分配用于上行链路的节点(例如基站)的可用资源。 可以通过自适应资源划分为每个节点分配用于可用资源的目标干扰热(IoT)级别的列表。 每个节点可以获得自身的目标IoT级别的列表和至少一个相邻节点的目标IoT级别的至少一个列表。 每个节点的目标IoT级别的列表可以包括用于节点的每个可用资源上的可配置目标IoT级别。 每个节点可以基于其自身和邻居节点的目标IoT级别来调度其UE在可用资源上的传输(例如,可以确定UE的发射功率电平和速率),使得邻居的目标IoT电平 可以满足节点。
    • 15. 发明申请
    • ADAPTIVE ASSOCIATION AND JOINT ASSOCIATION AND RESOURCE PARTITIONING IN A WIRELESS COMMUNICATION NETWORK
    • 无线通信网络中的自适应协调和联合协调和资源分配
    • US20100238884A1
    • 2010-09-23
    • US12725128
    • 2010-03-16
    • Jaber Mohammad BorranAamod Dinkar Khandekar
    • Jaber Mohammad BorranAamod Dinkar Khandekar
    • H04W72/04
    • H04W16/10H04W36/165
    • Techniques for supporting communication in a wireless network are described. In an aspect, association and resource partitioning may be performed jointly to select serving base stations for user equipments (UEs) and to allocate available resources to base stations. In another aspect, adaptive association may be performed to select serving base stations for UEs. In one design, a base station computes local metrics for different possible actions related to association and resource partitioning (or only association). The base station receives local metrics for the possible actions from at least one neighbor base station and determines overall metrics for the possible actions based on the computed and received local metrics. The base station determines serving base stations for a set of UEs and resources allocated to the set of base stations (or just serving base stations for the set of UEs) based on the overall metrics for the possible actions.
    • 描述了用于支持无线网络中的通信的技术。 在一方面,可以联合执行关联和资源划分以选择用于用户设备(UE)的服务基站,并向基站分配可用资源。 在另一方面,可以执行自适应关联以选择用于UE的服务基站。 在一种设计中,基站计算与关联和资源划分(或仅关联)相关的不同可能动作的本地度量。 基站接收来自至少一个相邻基站的可能动作的本地度量,并且基于所计算和接收到的本地度量来确定可能的动作的总体度量。 基站可以基于用于可能的动作的总体度量来确定分配给基站集合(或者仅针对该组UE的服务基站)的一组UE和资源的服务基站。
    • 16. 发明申请
    • ADAPTIVE RESOURCE PARTITIONING IN A WIRELESS COMMUNICATION NETWORK
    • 自适应资源分配在无线通信网络中
    • US20100238883A1
    • 2010-09-23
    • US12725117
    • 2010-03-16
    • Jaber Mohammad BorranAamod Dinkar Khandekar
    • Jaber Mohammad BorranAamod Dinkar Khandekar
    • H04W72/04
    • H04W16/10H04W48/08H04W48/16H04W72/04
    • Techniques for performing adaptive resource partitioning are described. In one design, a node computes local metrics for different possible actions related to resource partitioning to allocate available resources to a set of nodes that includes the node. Each possible action is associated with a set of resource usage profiles for the set of nodes. The node sends the computed local metrics to at least one neighbor node in the set of nodes. The node also receives local metrics for the possible actions from the neighbor node(s). The node determines overall metrics for the possible actions based on the computed local metrics and the received local metrics. The node then determines allocation of the available resources to the set of nodes based on the overall metrics. For example, the node may select the action with the best overall metric and may utilize the available resources based on a resource usage profile for the selected action.
    • 描述用于执行自适应资源划分的技术。 在一种设计中,节点计算与资源划分相关的不同可能动作的本地度量,以将可用资源分配给包括该节点的一组节点。 每个可能的操作都与一组节点的资源使用情况配置文件相关联。 节点将计算的本地度量发送到节点集合中的至少一个邻居节点。 节点还从邻居节点接收可能的动作的本地度量。 该节点基于计算的本地度量和接收到的本地度量来确定可能的动作的总体度量。 然后,该节点基于总体度量确定可用资源到该组节点的分配。 例如,节点可以选择具有最佳总体度量的动作,并且可以基于所选动作的资源使用简档来利用可用资源。
    • 17. 发明授权
    • Adaptive resource partitioning in a wireless communication network
    • 无线通信网络中的自适应资源划分
    • US08660071B2
    • 2014-02-25
    • US12725117
    • 2010-03-16
    • Jaber Mohammad BorranAamod Dinkar Khandekar
    • Jaber Mohammad BorranAamod Dinkar Khandekar
    • H04W4/00
    • H04W16/10H04W48/08H04W48/16H04W72/04
    • Techniques for performing adaptive resource partitioning are described. In one design, a node computes local metrics for different possible actions related to resource partitioning to allocate available resources to a set of nodes that includes the node. Each possible action is associated with a set of resource usage profiles for the set of nodes. The node sends the computed local metrics to at least one neighbor node in the set of nodes. The node also receives local metrics for the possible actions from the neighbor node(s). The node determines overall metrics for the possible actions based on the computed local metrics and the received local metrics. The node then determines allocation of the available resources to the set of nodes based on the overall metrics. For example, the node may select the action with the best overall metric and may utilize the available resources based on a resource usage profile for the selected action.
    • 描述用于执行自适应资源划分的技术。 在一种设计中,节点计算与资源划分相关的不同可能动作的本地度量,以将可用资源分配给包括该节点的一组节点。 每个可能的操作都与一组节点的资源使用情况配置文件相关联。 节点将计算的本地度量发送到节点集合中的至少一个邻居节点。 节点还从邻居节点接收可能的动作的本地度量。 该节点基于计算的本地度量和接收到的本地度量来确定可能的动作的总体度量。 然后,该节点基于总体度量确定可用资源到该组节点的分配。 例如,节点可以选择具有最佳总体度量的动作,并且可以基于所选动作的资源使用简档来利用可用资源。
    • 18. 发明授权
    • Resource partitioning for uplink in a wireless communication network
    • 无线通信网络中上行链路的资源划分
    • US08553575B2
    • 2013-10-08
    • US12725137
    • 2010-03-16
    • Jaber Mohammad BorranAamod Dinkar Khandekar
    • Jaber Mohammad BorranAamod Dinkar Khandekar
    • H04W16/10H04W72/04H04W52/30H04W72/12
    • H04B17/0077H04B17/309H04B17/382H04W8/005H04W52/243H04W52/40H04W72/00H04W72/082H04W72/1231
    • Techniques for performing resource partitioning are described. In an aspect, adaptive resource partitioning may be performed to dynamically allocate available resources for the uplink to nodes, e.g., base stations. Each node may be assigned a list of target interference-over-thermal (IoT) levels for the available resources by the adaptive resource partitioning. Each node may obtain a list of target IoT levels for itself and at least one list of target IoT levels for at least one neighbor node. The list of target IoT levels for each node may include a configurable target IoT level on each available resource for the node. Each node may schedule its UEs for transmission on the available resources (e.g., may determine transmit power levels and rates for the UEs) based on the target IoT levels for itself and the neighbor node(s) such that the target IoT levels for the neighbor node(s) can be met.
    • 描述用于执行资源划分的技术。 在一方面,可以执行自适应资源划分以动态地分配用于上行链路的节点(例如基站)的可用资源。 可以通过自适应资源划分为每个节点分配用于可用资源的目标干扰热(IoT)级别的列表。 每个节点可以获得自身的目标IoT级别的列表和至少一个相邻节点的目标IoT级别的至少一个列表。 每个节点的目标IoT级别的列表可以包括用于节点的每个可用资源上的可配置目标IoT级别。 每个节点可以基于其自身和邻居节点的目标IoT级别来调度其UE在可用资源上的传输(例如,可以确定UE的发射功率电平和速率),使得邻居的目标IoT电平 可以满足节点。
    • 20. 发明申请
    • ASSOCIATION WITH LEAKAGE-BASED METRICS IN A WIRELESS NETWORK
    • 在无线网络中与基于泄漏的量度相关联
    • US20100238827A1
    • 2010-09-23
    • US12725157
    • 2010-03-16
    • Jaber Mohammad BorranAamod Dinkar Khandekar
    • Jaber Mohammad BorranAamod Dinkar Khandekar
    • H04L12/26
    • H04W48/20
    • Techniques for performing association with leakage-based metrics in a wireless network are described. Association may be performed to select a serving node (e.g., a base station or a relay) for a station (e.g., a UE or a relay). In one design, at least one metric may be determined for at least one candidate node for possible association by the station. A metric for each candidate node may be determined based on leakage of the candidate node. The leakage of the candidate node may include interference due to the candidate node at stations not served by the candidate node (excluding the station). The metric for each candidate node may include a signal-to-leakage ratio (SLR), a geometry-to-leakage ratio (GLR), or a throughput-to-leakage ratio (TLR). A serving node for the station may be selected from among the at least one candidate node based on the at least one metric.
    • 描述了在无线网络中执行与基于泄漏的度量相关联的技术。 可以执行关联以选择用于站(例如,UE或中继站)的服务节点(例如,基站或中继站)。 在一种设计中,可以为至少一个候选节点确定至少一个度量,以便该站可能关联。 可以基于候选节点的泄漏来确定每个候选节点的度量。 候选节点的泄漏可能包括由候选节点(不包括该站)未服务的站处的候选节点引起的干扰。 每个候选节点的度量可以包括信号泄漏比(SLR),几何 - 泄漏比(GLR)或吞吐量 - 泄漏比(TLR)。 可以基于至少一个度量从所述至少一个候选节点中选择用于所述站的服务节点。