Lai Li-feng, Zhang Zhao-yang
Institute of Information and Communication Engineering, Zhejiang University, Hangzhou 310027, China.
J Zhejiang Univ Sci. 2004 Nov;5(11):1336-42. doi: 10.1631/jzus.2004.1336.
Conventional OFDM transmission system uses a fixed-length Cyclic Prefix to counteract Inter-Symbol Interferences (ISI) caused by channel delay spreading under wireless mobile environment. This may cause considerable performance deterioration when the CP length is less than the channel RMS delay spread, or may decrease the system power and spectrum efficiency when it is much larger. A novel OFDM transmission scheme is proposed in this paper to adapt the CP length to the variation of channel delay spread. AOFDM-VCPL utilizes the preamble or pilot sub-carriers of each OFDM packet to estimate the channel RMS delay spread; and then uses a criterion to calculate the CP length , which finally affects the OFDM transmitter. As illustrated in the simulation section, by deploying this scheme in a typical wireless environment, the system can transmit at data rate 11.5 Mb/s higher than conventional non-adaptive system while gaining a 0.65 dB power saving at the same BER performance.
传统的正交频分复用(OFDM)传输系统使用固定长度的循环前缀来抵消无线移动环境下信道延迟扩展所引起的码间干扰(ISI)。当循环前缀(CP)长度小于信道均方根延迟扩展时,这可能会导致相当大的性能恶化;而当CP长度远大于信道均方根延迟扩展时,则可能会降低系统功率和频谱效率。本文提出了一种新颖的OFDM传输方案,以使CP长度能够适应信道延迟扩展的变化。自适应正交频分复用可变循环前缀长度(AOFDM-VCPL)利用每个OFDM数据包的前导码或导频子载波来估计信道均方根延迟扩展;然后使用一个准则来计算CP长度,最终影响OFDM发射机。如仿真部分所示,通过在典型无线环境中部署该方案,系统能够以比传统非自适应系统高11.5 Mb/s的数据速率进行传输,同时在相同误码率性能下实现0.65 dB的功率节省。