基于载波聚合和CoMP技术的LTE-A系统小区间干扰性能评估

Desiana Ginting, Arfianto Fahmi, A. Kurniawan
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引用次数: 8

摘要

LTE-A (Long Term Evolution Advanced)是一项极具发展前景的技术,下行峰值数据速率可达1gbit /s,上行峰值数据速率可达500mbit /s。由于在通用频率复用方案中相邻小区使用相同的频率,相邻小区之间的干扰可能会降低比特率,特别是在小区边缘。基于载波聚合的小区间干扰协调(ICIC)和多点协调(CoMP)传输和接收技术被认为是克服干扰问题和提高小区边缘比特率的有前途的技术。通过使用不同的频带分配安排和可能的不同传输功率,区分小区中心和小区边缘用户,可以缓解ICI问题。本文通过计算机仿真,评估了载波聚合(CA)和协调多点(CoMP)技术对小区间干扰的抑制效果。仿真采用不同的频率分配方案、部分频率复用、不同的传输功率和不同的无线电资源调度算法来评估和提高蜂窝边缘性能、带宽效率和吞吐量。性能是根据信噪比作为飞基站用户数量的函数,以及与干扰基站的分离距离来评估的。然后比较了常规技术、CA技术和CA与CoMP技术相结合的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance evaluation of inter-cell interference of LTE-A system using carrier aggregation and CoMP techniques
Long Term Evolution Advanced (LTE-A) is a promising technology to achieve peak data rate of up to 1 Gbit/s in the downlink and 500 Mbit/s in the uplink. Because adjacent cells employs the same frequency in universal frequency reuse scheme, interference between adjacent cells may degrade the bit rate, particularly at the cell edges. Inter-Cell Interference Coordination (ICIC) based on carrier aggregation as well as Coordinated Multipoint (CoMP) transmission and reception techniques have been considered as promising techniques to overcome the interference problem and to improve the bit rate at the cell edges. ICI problem can be mitigated by using different arrangements of frequency-bands allocations and possibly with different transmission power, distinguishing between the cell centre and the cell edge users. In this paper, mitigation of inter-cell interference using carrier aggregation (CA) and coordinated multipoint (CoMP) techniques are evaluated through computer simulaton. The simulation employs different frequency allocation schemes, fractional frequency reuse, different transmission powers, and different radio resource scheduling algorithms to evaluate and to enhance cell edge performance, bandwidth efficiency and throughput. The performance is evaluated in terms of SINR as a function of the number of femtocell users, and the separation distance from interfering cells. The performance is then compared between conventional technique, CA technique and the combined CA and CoMP techniques.
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