Performance analysis of Closed and Open loop MIMO in LTE

C. Ball, R. Mullner, J. Lienhart, H. Winkler
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引用次数: 31

Abstract

This paper provides a detailed performance comparison between closed loop (CL) and open loop (OL) MIMO schemes for the upcoming OFDM based mobile broadband radio access technology 3GPP UTRA LTE. Based on system level simulation results, key performance indicators like cell throughput, user throughput and MIMO utilization have been evaluated for different system load conditions assuming 2×2 MIMO in a regular hexagonal cell deployment and in a real network scenario. A realistic dynamic MIMO switch between diversity and spatial multiplexing has been assumed, which is based on configurable CQI as well as rank filtering and decision thresholds. 3GPP compliant measurement granularity as well as appropriate measurement errors have been applied to both CQI and closed loop PMI reports. Besides dynamic MIMO switching, both MIMO 2×2 diversity and MIMO 2×2 spatial multiplexing scenarios have been investigated for the downlink direction highlighting the differences of the various MIMO transmission modes and their impacts on spectral efficiency and radio performance. It has been shown that ideal closed loop MIMO provides a 2 dB theoretical performance gain over open loop MIMO. Assuming practical limitations such as available granularity, delay and realistic PMI measurement errors, however, this gain significantly decreases below roughly 1 dB. Nevertheless MIMO proves to be an appropriate method to boost user throughput especially at low to medium system load up to a factor of 2. Moreover the dynamic MIMO switch proves to be very robust against variations of parameter settings.
LTE中闭环和开环MIMO的性能分析
本文针对即将推出的基于OFDM的移动宽带无线接入技术3GPP UTRA LTE,详细比较了闭环(CL)和开环(OL) MIMO方案的性能。基于系统级仿真结果,对不同系统负载条件下的关键性能指标,如小区吞吐量、用户吞吐量和MIMO利用率进行了评估,假设在常规六边形小区部署和真实网络场景中2×2 MIMO。假设了一种基于可配置CQI、秩滤波和决策阈值的MIMO在分集和空间复用之间的动态切换。符合3GPP的测量粒度以及适当的测量误差已应用于CQI和闭环PMI报告。除了动态MIMO交换外,还研究了MIMO 2×2分集和MIMO 2×2空间复用两种下行方向的MIMO传输模式,重点研究了各种MIMO传输模式的差异及其对频谱效率和无线电性能的影响。研究表明,理想的闭环MIMO比开环MIMO提供2db的理论性能增益。但是,假设存在诸如可用粒度、延迟和实际PMI测量误差等实际限制,该增益将显著降低到大约1 dB以下。然而,MIMO被证明是一种适当的方法来提高用户吞吐量,特别是在低到中等系统负载高达2倍。此外,动态MIMO开关对参数设置的变化具有很强的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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