Examples of 'channel impulse response' in a sentence

Meaning of "channel impulse response"

The reaction of a channel or system to an impulse input

How to use "channel impulse response" in a sentence

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channel impulse response
W is the length of the user channel impulse response.
A longer channel impulse response estimate is thus desirable for time tracking.
The comparison enables an estimate of the channel impulse response to be determined.
The channel impulse response is required in order to properly decode and demodulate incoming data.
Rapid broad band radio channel impulse response measurement.
The channel impulse response may be determined for each one of said set of signals.
These five values are selected as representative of the channel impulse response of that channel.
The channel impulse response has about the same length as the cyclic prefix.
Wf defines in a spread spectrum system the useful time span from the channel impulse response.
A receiver can derive a longer channel impulse response estimate based on a staggered FDM pilot.
The transmission medium convolves the transmitted symbol with the channel impulse response h1.
The channel impulse response CHIR is also called the delay profile CHIR.
The calibration signal receiver that generates the complex channel impulse response using matrix inversion.
That is, the channel impulse response can be estimated.
Measuring the magnitude of the coefficients of said channel impulse response estimate ;.

See also

Firstly, an estimated channel impulse response function hk is estimated at a first time.
Means for measuring the magnitude of the coefficients of said channel impulse response estimate ;.
W = the communication channel impulse response length in chips.
This impulse-like auto correlation function is called channel impulse response CIR.
If the channel impulse response is assumed to be minimum phase, the problem becomes trivial.
From each of said ranges, one channel impulse response is extracted.
The channel impulse response for each burst is determined using that burst 's midamble sequence.
During system design, the length of the channel impulse response has to be investigated.
A channel impulse response estimator 14 is provided.
Using more than one code for complex channel impulse response generation ;.
Determining a channel impulse response for the channel on which the signal is received ;.
Such a complex received signal is usually referred to as the channel impulse response ( CIR ).
Estimating a frequency domain channel impulse response based on signals transmitted during modem initialization ;.
The term L is generally referred to as the " delay spread " of the channel impulse response.
For this scheme, the energy of each channel impulse response matrix is first determined.
Because the actual channel impulse response length is unknown, the following fact can be remembered.
The length of each block covers at least two times the channel impulse response ( CIR ).
Figure 8 shows a diagram of the channel impulse response and its associated channel frequency response.
Therefore, it is an estimate of the actual ( observed ) channel impulse response.
Information that estimates a frequency domain channel impulse response based on signals transmitted during modem initialization ;.
The estimation means 4a ' 2 estimates an estimated channel impulse response function h '.
Estimation of the channel impulse response energy can be based on the following processing, EPMATHMARKEREP.
The support of an ith column of H ( k ) is the channel impulse response h ( k ).
The curve C 1 corresponds to a channel impulse response estimated with a maximum number of coefficients.
Figs.6A and 6B illustrate two forms of a channel impulse response.
Then the channel impulse response ( CIR ) is determined by.
The resulting products 127 are noisy estimates of the channel impulse response p 1 as shown in Figure 8.
In figure 2, the channel impulse response CHIR is shown in a diagram of power vs. time.
EPMATHMARKEREP being the DFT of the channel impulse response h [ q ] at position k.
Usually, the channel impulse response has five symbols, i.e. N obtains the value 5.
Figure 4 is a diagram illustrating a composite channel impulse response estimate provided with some added Gaussian noise.
In step S110, the channel impulse response is estimated based on a measured reverb signal.
Prior to performing channel equalization, channel impulse response ( CIR ) estimation must be finished.
The estimated channel impulse response h ( t ) is fed to a convoluter 16.
If the length of the channel impulse response is shorter i = - ∞.

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