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Channel sounding is a technique that evaluates the radio environment for wireless communication, especially
MIMO In radio, multiple-input and multiple-output, or MIMO (), is a method for multiplying the capacity of a radio link using multiple transmission and receiving antennas to exploit multipath propagation. MIMO has become an essential element of w ...
systems. Because of the effect of terrain and obstacles, wireless signals propagate in multiple paths (the ''multipath'' effect). To minimize or use the multipath effect, engineers use channel sounding to process the multidimensional spatial-temporal signal and estimate channel characteristics. This helps simulate and design wireless systems.


Motivation & applications

Mobile radio communication performance is significantly affected by the radio propagation environment. Blocking by buildings and natural obstacles creates multiple paths between the transmitter and the receiver, with different time variances, phases and attenuations. In a single-input, single-output (SISO) system, multiple propagation paths can create problems for signal optimization. However, based on the development of multiple input, multiple output (MIMO) systems, it can enhance channel capacity and improve QoS. In order to evaluate effectiveness of these multiple antenna systems, a measurement of the radio environment is needed. Channel sounding is such a technique that can estimate the channel characteristics for the simulation and design of antenna arrays.


Problem statement & basics

In a multipath system, the wireless channel is frequency dependent, time dependent, and position dependent. Therefore, the following parameters describe the channel: *Direction of departure (DOD) * Direction of arrival (DOA) * Time delay *
Doppler shift The Doppler effect or Doppler shift (or simply Doppler, when in context) is the change in frequency of a wave in relation to an observer who is moving relative to the wave source. It is named after the Austrian physicist Christian Doppler, who ...
*Complex polarimetric path weight matrix To characterize the propagation path between each transmitter element and each receiver element, engineers transmit a broadband multi-tone test signal. The transmitter's continuous periodic test sequence arrives at the receiver, and is correlated with the original sequence. This impulse-like auto correlation function is called ''channel impulse response (CIR)''. By obtaining the transfer function of CIR, we can make an estimation of the channel environment and improve the performance.


Description of existing approaches


MIMO Vector Channel Sounder

Based on multiple antennas at both transmitters and receivers, a MIMO vector channel sounder can effectively collect the propagation direction at both ends of the connection and significantly improve resolution of the multiple path parameters.Thomä, R. S., Hampicke, D., Richter, A., Sommerkorn, G., & Trautwein, U. (2001). MIMO vector channel sounder measurement for smart antenna system evaluation. European Transactions on Telecommunications, 12(5), 427-438.


K-D model of wave propagation

Engineers model wave propagation as a finite sum of discrete, locally planar waves instead of a ray tracing model. This reduces computation and lowers requirements for optics knowledge. The waves are considered planar between the transmitters and the receivers. Two other important assumptions are: *Relative bandwidth is small enough so that the time delay can be simply transformed to a phase shift among the antennas. *The array aperture is small enough that there is no observable magnitude variation. Based on such assumptions, the basic signal model is described as: h(\alpha,\tau,\psi_R,\upsilon_R,\psi_T,\upsilon_T) = \sum_^P \gamma_p\delta(\alpha-\alpha_p)\delta(\tau-\tau_p)\cdot\delta(\psi_R-\psi_)\delta(\upsilon_R-\upsilon_)\cdot\delta(\psi_T-\psi_)\delta(\upsilon_T-\upsilon_) where \tau_p is the TDOA (Time Difference of Arrival) of the wave-front p. \psi_,\upsilon_ are DOA at the receiver and \psi_,\upsilon_ are DOD at the transmitter,\alpha_p is the Doppler shift.


Real-Time Ultra-wideband MIMO Channel Sounding

A higher bandwidth for channel measurement is a goal for future sounding devices. The new real-time UWB channel sounder can measure the channel in a larger bandwidth from near zero to 5 GHz. The real time UWB MIMO channel sounding is greatly improving accuracy of localization and detection, which facilitates precisely tracking mobile devices.Sangodoyin, S., Salmi, J., Niranjayan, S., & Molisch, A. F. (2012, March). Real-time ultrawideband MIMO channel sounding. In 6th European Conference Antennas and Propagation (EUCAP), 2012 (pp. 2303-2307).


Excitation signal

A multitoned signal is chosen as the excitation signal. x(t) = \sum_^ \sin(2\pi(f_c+k\cdot\Delta f)\cdot t+\theta_k) where f_c is the center frequency, \Delta f = B/N_c (B is Bandwidth, N_c is Number of multitones) is the tone spacing, and \theta_k is the phase of the k^ tone. we can obtain \theta_k by \theta_k =


Data post-processing

# A DFT over K-1 (one waveform lost due to array switching) waveforms that measured in each channel is performed (K: waveforms per channel). # The frequency domain samples at the multitone frequencies are picked at every (K-1)^ sample. # An estimated channel transfer function \hat(f) is obtained by: \hat(f) = where \hat_N^2(f) is the noise power, X_(f) is a reference signal and Y(f) is the samples. The scaling factor c is defined as c =


RUSK Channel Sounder

A RUSK channel sounder excites all frequencies simultaneously, so that the frequency response of all frequencies can be measured. The test signal is periodic in time with period t_p. The period must be longer than the duration of the channel's impulse response \tau_ in order to capture all delayed multipath components at the receiver. The figure shows a typical channel impulse response (CIR) for a RUSK sounder. A secondary time variable is introduced so that the CIR is a function of the delay time \tau and the observation time t. A delay-Doppler spectrum is obtained by Fourier transformation.


See also

*
Channel estimation In wireless communications, channel state information (CSI) is the known channel properties of a communication link. This information describes how a signal propagates from the transmitter to the receiver and represents the combined effect of, for ...


References

{{Reflist Radio resource management Radio frequency propagation