标题: | 应用于4G具迭代解码之多天线位元交错调变-编码系统之新型设计 On the Design of Mimo Bit-Interleaved Coded-Modulation with Iterative Decoding for 4G Systems |
作者: | 沈文和 SHEEN WERN-HO 国立交通大学电信工程学系(所) |
公开日期: | 2009 |
摘要: | 4G 需要有远优于3G 系统的频谱效率,20 bps/Hz 是设计目标。欲达此目标,预期需要 具更高天线數量的MIMO (multiple input, multiple output)系统,然而高天线數量将使手机 的天线设计更加困难,基频讯号处理的复杂度亦更加提高。另一方面,通道编解码器、 MIMO 调变/解调器必须同时作最佳设计并充分使用通道狀态信息(channel state information),以达到最高的品质。在众多的4G 议题中,本计画将针对实体层之通道编 解码、MIMO 调变/解调器作最佳设计以达到最高的品质。更明确的說,本计画将针对 具迭代解码 (iterative decoding) 之多天线位元交错调变编码 (bit-interleaved coded-modulation)系统作完整设计。虽然迭代解码在3G 的MIMO BICM 系统中尚未使 用,在4G 超高的品质与品频谱效率要求下,它势必成为4G 系统中不可或缺的关键技 术。本计画的研究将包括新型映射法则(mapping rule),最佳MIMO RF 參數估计,新型 低复杂度、接近ML (maximum likelihood)效能的MIMO 侦测器及新型MIMO pre-coder。 Very high spectral efficiency is one of the salient features for 4G systems; 20 bps/Hz is the targeted value. In order to achieve this, it is anticipated to use more antennas at both base station and mobile stations (MIMO), but that significantly increases the complexity of base-based signal processing and antenna design at the mobile station. In addition, joint optimal design of channel coding/decoding and MIMO detectors with the help of channel state information is essential to have the best link performance. In this project, we investigate the important issue of joint design of channel coding/decoding and MIMO detectors for bit-interleaved coded modulation with iterative decoding (BICM-ID). BICM-ID has been considered as one of the key enabling PHY technologies for 4G systems, although it was not used in 3G because of the complexity. In particular, the research topics include a new labeling design for MIMO systems, joint optimum inner receiver design for MIMO with direct-conversion RF architecture, and a new approaching ML low-complexity MIMO detector and pre-coder based on channel factorization. |
官方说明文件#: | NSC97-2221-E009-004-MY2 |
URI: | http://hdl.handle.net/11536/101073 https://www.grb.gov.tw/search/planDetail?id=1750943&docId=298406 |
显示于类别: | Research Plans |