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Radio resource management in UMTS-WCDMA systems.

机译:UMTS-WCDMA系统中的无线电资源管理。

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Universal Mobile Telecommunications System (UMTS) is a Third Generation (3G) cellular technology representing an evolution of a heterogenous mix of services and increased data speeds from today's second generation mobile networks. UMTS uses Wideband Code Division Multiple Access (WCDMA) as its radio air interface. The implementation of WCDMA is a technical challenge because of its complexity and versatility. Billions of dollars have been spent procuring these air interfaces. To exploit the flexibility of the air interface, development of 'Radio Resource Management (RRM)' schemes are imperative. RRM is comprised of power control, handover control, load control and resource allocation algorithms. These ensure optimum network coverage, maximize the system throughput and guarantee Quality of Service (QoS) requirements to users having different requirements.; This research investigates mainly the resource allocation and power control algorithms with which the load control and handover control are intertwined. The state of the art is studied and their pros and cons are discussed, which lays the foundation for the need for more efficient RRM schemes that are eventually presented in this research.; The two main schemes considered here are: (1) Adaptive Call Admission Control (ACAC) scheme for resource allocation where the system is mathematically modeled as a multi-rate system with priority. Further, a tier based analytical model pertaining to the hierarchical hexagonal cell structure is analyzed and mobility is given importance. (2) Adaptive Uplink Power Control (AUPC) scheme for power control is analyzed where Monte Carlo simulations are used to fine-tune WCDMA link budget parameters. Finally, Location Update (LU) procedures in cellular networks using Bloom Filters is studied where bandwidth gain is given importance.; Various performance metrics are observed and two key metrics are given the most importance: the Call Blocking and Call Dropping probabilities. Simulation results are compared to the existing schemes and further strengthened by comparing them to analytical results which validate the entirety of this research.
机译:通用移动电信系统(UMTS)是第三代(3G)蜂窝技术,代表了服务的异构混合的发展以及当今第二代移动网络不断提高的数据速度。 UMTS使用宽带码分多址(WCDMA)作为其无线电空中接口。由于WCDMA的复杂性和多功能性,其实施是一项技术挑战。购买这些空中接口已经花费了数十亿美元。为了利用空中接口的灵活性,必须开发“无线电资源管理(RRM)”方案。 RRM由功率控制,切换控制,负载控制和资源分配算法组成。这些确保了最佳的网络覆盖范围,最大化了系统吞吐量,并向具有不同要求的用户保证了服务质量(QoS)要求。本研究主要研究负载控制和切换控制相互交织的资源分配和功率控制算法。研究了现有技术并讨论了它们的优缺点,这为最终需要在本研究中提出的更有效的RRM方案奠定了基础。这里考虑的两个主要方案是:(1)用于资源分配的自适应呼叫允许控制(ACAC)方案,其中该系统在数学上建模为具有优先级的多速率系统。此外,分析了与分层六边形单元结构有关的基于层的分析模型,并赋予了移动性重要性。 (2)分析了用于功率控制的自适应上行链路功率控制(AUPC)方案,其中使用蒙特卡罗模拟来微调WCDMA链路预算参数。最后,研究了使用布鲁姆滤波器的蜂窝网络中的位置更新(LU)程序,其中带宽增益非常重要。观察到各种性能指标,并且两个关键指标被赋予了最重要的意义:“呼叫阻止”和“掉话”概率。将仿真结果与现有方案进行比较,并通过将它们与分析结果进行比较来进一步加强仿真结果,从而验证了整个研究的有效性。

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