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首页> 外文期刊>IEEE transactions on wireless communications >Interference Self-Coordination: A Proposal to Enhance Reliability of System-Level Information in OFDM-Based Mobile Networks via PCI Planning
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Interference Self-Coordination: A Proposal to Enhance Reliability of System-Level Information in OFDM-Based Mobile Networks via PCI Planning

机译:干扰自协调:通过PCI规划提高基于OFDM的移动网络中系统级信息可靠性的建议

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摘要

For system-level information in OFDM-based mobile networks, the full-cell coverage requirement raises the issue of Inter-Cell Interference (ICI) in physical control channels. Unfortunately, conventional approaches (e.g., scheduling, beamforming) cannot effectively deal with this kind of ICI because of configuration limitations in physical control channels. To solve this challenge, this study defines a new concept of `Interference Self-Coordination (ISC)' for enhancing this system-level information delivery. Specifically, we apply ISC to relieve the ICI effect over the Physical Downlink Control Channel (PDCCH), the most important physical control channel in Long-Term Evolution (LTE/LTE-Advanced) networks, in which Physical Cell Identifier (PCI) planning naturally serves as a self-coordination mechanism. We prove that PCI planning is the most effective solution to relieve ICI over PDCCHs, under the constraint of non-orthogonal control regions between neighboring cells. Since PCI planning is an NP-Complete problem, heuristic-strategy algorithms are devised for implementation, which are self-adaptive to dynamic configurations of the network and system, and compatible with any applicable ICI solutions. The numerical analysis and system-level simulation experiment results demonstrate that this proposal can increase overall system throughput by up to 17%, and also improve cell-edge throughput by up to 42%. In the worst 5% of sectors, the proposal can still obtain 45% system throughput and 200% cell-edge throughput gain.
机译:对于基于OFDM的移动网络中的系统级信息,全小区覆盖要求提出了物理控制信道中小区间干扰(ICI)的问题。不幸的是,由于物理控制信道中的配置限制,常规方法(例如,调度,波束成形)不能有效地处理这种ICI。为了解决这一挑战,本研究定义了“干扰自协调(ISC)”的新概念,以增强系统级信息的传递。具体来说,我们应用ISC来缓解物理下行链路控制信道(PDCCH)上的ICI效应,物理下行链路控制信道(PDCCH)是长期演进(LTE / LTE-Advanced)网络中最重要的物理控制信道,物理小区标识符(PCI)自然在其中规划作为一种自我协调机制。我们证明,在相邻小区之间的非正交控制区域的约束下,PCI规划是缓解PDCCH上ICI的最有效解决方案。由于PCI规划是一个NP-Complete问题,因此设计了启发式策略算法来实现,该算法自适应于网络和系统的动态配置,并且与任何适用的ICI解决方案兼容。数值分析和系统级仿真实验结果表明,该方案可将整个系统吞吐量提高多达17%,并将单元边缘吞吐量提高多达42%。在最坏的5%扇区中,该建议仍可获得45%的系统吞吐量和200%的小区边缘吞吐量增益。

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