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Resource allocation in coordinated multipoint long term evolution – advanced networks

机译:协调多点长期演进中的资源分配–先进网络

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摘要

Coordinated Multipoint (CoMP) in Long Term Evolution-Advanced (LTEAdvanced) improves cell-edge data rates and network spectral efficiency through base station coordination. In order to achieve high quality of service (QoS) in CoMP network, resource allocation approach is one of the main challenges. The resource allocation strategies of cells in CoMP network affect each other’s performance. Thus, the resource allocation approach should consider various diversities offered in multiuser wireless networks, particularly in frequency, spatial and time dimensions. The primary objective of this research is to develop resource allocation strategy for CoMP network that can provide high QoS. The resource allocation algorithm is developed through three phases, namely Low-Complexity Resource Allocation (LRA), Optimized Resource Allocation (ORA) and Cross-Layer Design of ORA (CLD-ORA). The LRA algorithm is a three-step resource allocation scheme that consists of user selection module, subcarrier allocation module and power allocation module which are performed sequentially in a multi-antenna CoMP network. The proposed ORA algorithm enhances throughput in LRA while ensuring fairness. ORA is formulated based on Lagrangian method and optimized using Particle Swarm Optimization (PSO). The design of CLD-ORA algorithm is an enhancement of the ORA algorithm with resource block (RB) scheduling scheme at medium access control (MAC) layer. Simulation study shows that the ORA algorithm improves the network sum-rate and fairness index up to 70% and 25%, respectively and reduces the average transmit power by 41% in relative to LRA algorithm. The CLD-ORA algorithm has further enhanced the LRA and ORA algorithms with network sum-rate improvement of 77% and 33%, respectively. The proposed resource allocation algorithm has been proven to provide a significant improved performance for CoMP LTE-Advanced network and can be extended to future 5G network
机译:高级长期演进(LTEAdvanced)中的协作多点(CoMP)通过基站协作提高了小区边缘数据速率和网络频谱效率。为了在CoMP网络中实现高质量的服务(QoS),资源分配方法是主要的挑战之一。 CoMP网络中单元的资源分配策略会影响彼此的性能。因此,资源分配方法应考虑多用户无线网络中提供的各种多样性,尤其是在频率,空间和时间维度上。这项研究的主要目的是为可提供高QoS的CoMP网络开发资源分配策略。资源分配算法是通过低复杂度资源分配(LRA),优化资源分配(ORA)和ORA跨层设计(CLD-ORA)三个阶段开发的。 LRA算法是一种三步资源分配方案,由用户选择模块,子载波分配模块和功率分配模块组成,它们在多天线CoMP网络中按顺序执行。所提出的ORA算法在确保公平性的同时提高了LRA的吞吐量。 ORA是基于拉格朗日方法制定的,并使用粒子群优化(PSO)进行了优化。 CLD-ORA算法的设计是对ORA算法的改进,它在媒体访问控制(MAC)层采用了资源块(RB)调度方案。仿真研究表明,相对于LRA算法,ORA算法分别将网络求和率和公平指数分别提高了70%和25%,平均发射功率降低了41%。 CLD-ORA算法进一步增强了LRA和ORA算法,网络总速率分别提高了77%和33%。事实证明,所提出的资源分配算法可为CoMP LTE-Advanced网络提供显着改善的性能,并可扩展到未来的5G网络

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    Katiran Norshidah;

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  • 年度 2015
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