无线通信基础(双语)_教学课件_7.ppt
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1、l Linear time-variant channel modelChannel Impulse ResponseTime-Variant Transfer FunctionDoppler Spread Function Delay-Doppler spread functionImpulse responseDoppler spreadTransfer functionDelay-Doppler spreadExample 2.11 LTV Channel ModelConsider an LTV channel with impulse response given byWhere T
2、=0.1 ms,and .(a)Find the channel time-variant transfer function and the Doppler spread function(b)Given that the transmitted signal is Where T0=0.025ms,find the received signal in the absence of background noise.(c)Repeat part(b)if the transmitted signal isWhere T1=0.05ms(d)What do you observe from
3、the results of parts(b)and(c)?Consider an LTV channel with impulse response given byWhere T=0.1 ms,and .Example 2.11 LTV Channel ModelWhen the channel changes with time randomly,the channel functions are random processed and are difficult to characterize.Under the assumption that the random processe
4、s have zero mean,we are interested in the correlation functions of the random processes.For simplicity of analysis,we assume that(a)The channel impulse response is a wide-sense stationary(WSS)process(b)The channel impulses at and are uncorrelated if for any t.A channel under assumptions(a)and(b)is s
5、aid to be a wide-sense stationary uncorrelated scattering(WSSUS)channel.2.3.2 Frequency and Time Correlation Function 2.3.2 Frequency and Time Correlation Function 2.3.4 Examples 2.3.4 Examples 2.3.1 Delay Power Spectral Density 2.3.1 Delay Power Spectral Density 2.3.3 Doppler Power Spectral Density
6、 2.3.3 Doppler Power Spectral Density l The Definition of the Delay PSDl Statistics Describing the Delay PSDUnder assumption(a),the autocorrelation function of define as Which is a function of ,and ,and does not depend on t.The correlation function can be represented asUnder assumption(b),the autoco
7、rrelation function can be represented in the formor equivalentlywhereAt t=0,we defineThus,we haveAccording to the Wiener-Khintchine relations,the function represents power spectral density(PSD).It measures the average PSD at the channel output as a function of the propagation delay,and is therefore
8、called the delay PSD of the channel,also known as the multipath intensity profile.We observe that is the Fourier transform of the correlation function.The nominal width of the delay PSD pulse is called the multipath delay spread,denoted by TmThe nth moment of the delay,denoted by ,is given byThe mea
9、n propagation delay,denoted byThe RMS delay spread,denoted byIn calculating a value for the multipath delay spread,it is usually assumed thatExample 2.12 From example 2.9,find the Delay PSD Example 2.12 From example 2.9,find the Delay PSD Example 2.13calculate the rms delay spread for the two-path p
10、ower delay profile#1.t t0 0=0,=0,p0 0=0 dB.#2.t t1 1=1 s,p1 1=0 dBl Linear time-variant channel modelChannel Impulse ResponseTime-Variant Transfer FunctionDoppler Spread Function Delay-Doppler spread functionImpulse responseDoppler spreadTransfer functionDelay-Doppler spreadl Frequency correlation f
11、unctionl Time correlation functionFrom the relationship between and ,we have the following:a)If is WSS,then is also WSS with respect to t.As a result,we can define the autocorrelation function of the time-variant transfer function asFrom the relationship between and ,we have the following:whereTime-
12、frequency correlation functionb)The correlation function can be represented in term of the correlation function LettingThe nominal width of ,denoted by ,is called the channel coherence bandwidth.Fourier Trans.Since time and frequency have an inverse relationship,we haveLet Ws denote the bandwidth of
13、 the transmitted signal,the fading channel can be grossly categorized as follows:l If ,the channel is said to exhibit frequency selective fading which introduces severe ISI to the received signall If ,the channel is said to exhibit frequency nonselective fading or flat fading which introduces neglig
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