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Resource allocation in future HetRAT networks: a general framework

机译:未来Hetrat网络中的资源分配:一般框架

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Aggregation of resources in space, spectrum, and so on, is the fundamental idea behind many technology building blocks of 5G networks, such as massive multi-input multi-output and carrier aggregation, among others. In this respect, another important dimension for parallelism is the aggregation of diverse radio access technologies (RATs), such as WiFi, LTE, and 5G, in heterogeneous networks (HetRAT networks). Simultaneous multiple RAT connectivity facilitates both users and network operators in achieving even higher data rates and in balancing the traffic load, respectively. In this paper, we review the technological supports for the realization of the multi-RAT connectivity and focus on a general framework for resource allocation in HetRAT systems. Specifically, a distributed algorithm is proposed to allocate, with minimal overhead signaling, the bandwidths of available RATs among users considering both the system operator's objective and the users' demands and constraints. The optimality of the proposed distributed algorithm is further proved, and its convergence is investigated. Finally a test case is introduced in which users are power constrained and the system operator enforces capacity limits and motivates users for a fair load balancing over RATs. Numerical results shows the efficiency of the proposed algorithm and its fast convergence in few iterations.
机译:空间,频谱等资源的聚合是5G网络的许多技术构建块背后的基本因因,例如大量多输入多输出和载波聚合等。在这方面,并行性的另一个重要方面是异构网络(Hetrat网络)中的不同无线电接入技术(大鼠)的聚合,例如WiFi,LTE和5G。同时多个RAT连接促进用户和网络运营商在实现更高的数据速率和平衡流量负载时。在本文中,我们审查了实现多大鼠连接的技术支持,并专注于Hetrat系统中资源分配的一般框架。具体地,提出了一种分布式算法来分配,以最小的开销信令,考虑系统操作员的目标和用户的需求和约束的用户之间的可用大鼠的带宽。进一步证明了所提出的分布式算法的最优性,并研究了其收敛性。最后引入了一个测试用例,其中用户是功率约束,系统操作员强制实施容量限制,并激励用户对大鼠的公平负载平衡。数值结果表明了所提出的算法的效率及其在很少的迭代中的快速收敛性。

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