Development of distributed and self-organized physical cell identity assignment schemes for LTE-advanced systems

Ali Diab, A. Mitschele-Thiel
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引用次数: 9

Abstract

A major challenge pertinent to Long Term Evolution (LTE) systems is the development of self-organized PCI assignment solutions. This paper focuses on this challenge and proposes a new distributed and self-organized solution named Stable Graph Coloring (SGC) scheme. The proposal introduces a temporal PCIs sub-range for newly switched on eNBs, minimizes the impact of Neighbor Cell relations (NCRs) inaccuracy and re-uses PCIs as most as possible. It is evaluated compared to 3 known distributed approaches, namely the Graph Coloring (GC) approach, the LTE standard proposal and the Nokia-Siemens (NS) approach, by means of simulative studies. The studies investigate the impact of network size and the capabilities of stabilizing LTE systems. Our results show that the SGC scheme is slightly outperformed by the NS approach when considering the average number of PCIs conflicts. For the PCIs utilization ratio, the SGC approach is considerably better than the NS scheme. The most important result our proposal realizes is the capability to converge to a steady state while carefully utilizing the PCIs (less than 70% for high densities). Networks with such densities lose their stability when employing the LTE standard proposal and the NS approach.
lte先进系统分布式自组织物理小区身份分配方案的开发
与长期演进(LTE)系统相关的一个主要挑战是开发自组织PCI分配解决方案。针对这一挑战,本文提出了一种新的分布式自组织解决方案——稳定图着色(SGC)方案。该提案为新接通的enb引入了一个暂时的pci子范围,最大限度地减少邻居单元关系(ncr)不准确的影响,并尽可能地重用pci。通过仿真研究,将其与3种已知的分布式方法(即图着色(GC)方法、LTE标准提案和诺基亚-西门子(NS)方法)进行了比较。这些研究调查了网络规模和稳定LTE系统的能力的影响。我们的结果表明,当考虑到pci冲突的平均数量时,SGC方案略优于NS方法。对于pci的利用率,SGC方法明显优于NS方案。我们的提议实现的最重要的结果是,在仔细利用pci(高密度时小于70%)的同时,能够收敛到稳定状态。当采用LTE标准建议和NS方法时,具有这种密度的网络会失去稳定性。
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