OFDM翻译.pdf
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1、附 录 一、英文原文 OFDM Channel Estimation in the Presence of Frequency Offset and Phase Noise Abstract In this paper,we consider OFDM channel estimation in the presence of frequency offset and phase noise.In the literatures,most channel estimation methods assume perfect frequency synchronization and the kn
2、owledge of channel statistics.Phase noise and residual frequency offset cause inter-carrier interference(ICI),which consequently impairs the accuracy of channel estimation.The lack of knowledge of channel statistics can make channel estimation much harder.To resolve these problems,we propose with th
3、e aid of cyclic prefix(CP)based frequency offset estimation statistics-independent channel estimation.We iteratively search for the most likely channel impulse response(CIR)length,and use it not only for the optimum compensation of frequency offset,but also for finding the optimum window to filter t
4、he least square(LS)channel estimate which further suppress the effects of ICI and noise.The proposed scheme is compared with conventional methods for both non-interpolation and interpolation cases2.Numerical results are presented to illustrate the effectiveness of the proposed scheme.I.INTRODUCTION
5、Orthogonal frequency division multiplexing(OFDM)is a bandwidth efficient transmission technique which provides high bandwidth efficiency and is quite effective in handling time dispersion of multipath fading channels.It has been chosen as the transmission method of many standards in wire and wireles
6、s communications,such as Digital Subscribe Line(DSL),European Digital Audio and Video Broadcasting(DAB/DVB),IEEE 802.11a and European HIPERLAN/2 for wireless local area network(WLAN)etc.Based on multi-carrier modulation 1,OFDM has symbol period long enough to eliminate inter-symbol interference(ISI)
7、caused by time dispersive channels.Nevertheless,the multicarrier modulation is also sensitive to frequency offset and phase noise.Frequency offset and phase noise cause loss of orthogonality among subcarriers and consequently introduce inter-carrier interference(ICI).The effect of phase noise has be
8、en analyzed in many papers 2-4.Many approaches have also been proposed to analyze,estimate and compensate frequency offset 25-10.Though it is impossible to estimate random phase noise,frequency offset estimation can be achieved by using pilot signals 56.As these methods cause loss of bandwidth effic
9、iency,non-pilot-aided frequency offset estimation has be used 7-10.The cyclic prefix(CP)based method,initially proposed in 9,is quite attractive among non-pilot-aided approaches due to its simplicity.Nevertheless,the accuracy of the CP-based method could not be guaranteed for multipath fading channe
10、ls.Later,as proposed in 10,the method of 9 was improved by considering the channel impulse response(CIR)length.The proposed method in 10,however,is not feasible in cases when the CIR length is unknown.Furthermore,channel estimation is a very important issue for OFDM systems.Blind channel estimation
11、is a desirable approach as it does not require pilot signals.It does require,however,a large amount of data and thus higher computational complexity.With perfect frequency synchronization(without residual frequency offset),different pilot-symbol-aided channel estimation methods can be applied in OFD
12、M 11-14.The maximum likelihood/least square(ML/LS)estimators of 11 and 12 can readily be implemented without knowing channel statistics.The minimum mean square error(MMSE)estimators in 12-14,however,are more robust against noise and perform better than the ML/LS estimators.Nevertheless,its dependenc
13、e on channel statistics and the operating signal to noise ratio(SNR)makes it disadvantageous.Despite its robustness against mismatch 1314,when there is no a priori knowledge of channel statistics and the operating SNR,the performance inevitably degrades.Without the assumption of perfect frequency sy
14、nchronization,the performance may further degrade due to frequency offset and phase noise.In this paper,we consider statistics-independent channel estimation in the presence of frequency offset and phase noise.As a function of the CIR length,the LS channel estimate results,which is based on the CP-b
15、ased frequency offset estimation and compensation,are used to search for the CIR length iteratively.The minimization of channel estimation errors leads to the most likely CIR length,which is then used to optimize frequency offset estimate,and filter the LS channel estimate reducing its sensitivity t
16、o noise and ICI.Thus better performance is achieved.The paper is organized as follows.The OFDM system model is introduced in Section II.Section III presents and analyzes the proposed frequency offset and channel estimation scheme.Section IV provides the numerical results to illustrate the effectiven
17、ess of the proposed scheme.The paper is concluded in Section V.II.OFDM SYSTEM MODEL The basic principle of OFDM is to divide each data symbol into N samples(subcarriers).The length N discrete Fourier transform(DFT)is applied to those samples and a cyclic prefix(CP)is added to eliminate ISI.Data is r
18、ecovered at the receiver in reverse order.We define the length of CP as g N and the length of CIR as L,and further assume that CIR is finite and its length is less than that of CP,i.e.,L g N.At OFDM receiver,following the DFT and due to the presence of frequency offset and phase noise,the received k
19、th sample of the mth symbol in frequency domain can be expressed by 2Fgm nm N NnjNmmmm nrksngn e (1)where sm(n),gm(n)and nn denote the transmitted signal,the CIR and phase noise,respectively.m(n)indicates the AWGN noise.is the normalized frequency offset3.We assume 0.5 and the 3 dB line width of pha
20、se noise is much less than frequency offset.Equivalently,(1)can be given by 1mm0I0INmmmmmmll krkxk hkxl hllkzk (2)where x m(k),h m(k)and z m(k)are the corresponding frequency domain expressions of s m(n),g m(n)and m(n)respectively.I m(i)is a function of and m(n),given by:2120gn njm NNNNjn iNmneIieN
21、(3)where i=0,.,N 1.From(2)together with(3),frequency offset and phase noise cause the common phase error(CPE)and introduce inter-carrier interference(ICI)as well.For the mth symbol,Representing(2)by matrix yields rpxhz (4)The frequency offset and phase noise in P affects the accuracy of channel esti
22、mation.We cannot measure phase noise,but frequency offset can be estimated and compensated to reduce its effects on channel estimation.The effects of phase noise and residual frequency offset(due to estimation errors)can possibly be suppressed by filtering channel estimate.For perfect frequency and
23、phase synchronization,P reduces to identity matrix and therefore the performance of channel estimation can be guaranteed.III.FREQUENCY OFFSET AND CHANNEL ESTIMATORS In the presence of frequency offset and phase noise,both offset and channel response should be estimated to guarantee good receiver per
24、formance.Phase noise variance is assumed to be much less than unity.We a new scheme with which,by iteratively searching for the most likely CIR length and using it for both frequency offset and channel estimation,performance is greatly improved in comparison with conventional approaches.The proposed
25、 scheme is shown in Fig.1.A.CP-based Frequency Offset Estimator CP-based frequency offset estimator in 9 is quite simple and bandwidth efficient,but it does not consider the effects of multipath fading and estimation results may not be accurate as it is based on the CP of one symbol only.The method
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