Time-domain channel estimation method for MIMO OFDM downlink system

An orthogonal frequency division multiple access, time domain channel estimation technology, applied in multi-frequency code systems, baseband system components, shaping networks in transmitter/receiver, etc., can solve the problem of large performance loss, large estimation error, Unable to support problems such as transmitting antennas, to achieve the effect of improving accuracy and high estimation accuracy

Inactive Publication Date: 2009-02-11
HENAN UNIV OF SCI & TECH
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Problems solved by technology

However, since the number of pilot symbols allocated by the IEEE 802.16ePUSC symbol structure is very small, if the frequency-domain least-squares channel estimation method using frequency-domain orthogonal (ie, frequency-division) pilot symbol sequences is used in a MIMO OFDMA system, it will cause Larger estimation error and larger performance loss compared to perfect channel
In related literature, there have been time-domain least squares channel estimation methods using code-domain orthogonal pilot symbol sequences. This method has high estimation accuracy, but requires that the pilot symbol sequence of each transmitting antenna is The time displacement of the pilot symbol sequence is between the channel length and the number of pilots per transmit antenna divided by the number of transmit antennas, so it cannot support more transmit antennas in some channel environments

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  • Time-domain channel estimation method for MIMO OFDM downlink system
  • Time-domain channel estimation method for MIMO OFDM downlink system
  • Time-domain channel estimation method for MIMO OFDM downlink system

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[0021] The technical solutions of the present invention will be further described below in conjunction with the accompanying drawings and embodiments.

[0022] Consider a single-user OFDMA downlink transmission system with four transmitting antennas and four receiving antennas. The communication environment is a PB channel with severe frequency selection. The user’s moving speed is 3km / h, the carrier frequency is 2.5GHz and the system bandwidth is 10MHz. The Fourier transform size is 1024 and the cyclic prefix length is 128. The background noise follows a compound additive Gaussian distribution with zero mean. Data symbols are formed by binary numbers undergoing turbo encoding with a code rate of 1 / 2, truncation, intra-frame interleaving, and QPSK constellation mapping. The process of channel estimation using the method of the present invention is as follows: figure 1 As shown, the specific implementation steps are as follows:

[0023]1) Each transmitting antenna at the tra...

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Abstract

The invention relates to a time domain channel estimation method of a multiple-input multiple-output orthogonal frequency-division multiplexing down system. A pilot frequency symbol sequence using orthogonal virtual pilot frequency symbol and code domain is assumed to be used; firstly, a receiving terminal estimates the frequency response of each sub-channel at the actual pilot frequency symbol sub-carrier; then, the channel estimation for the virtual pilot frequency symbol sub-carrier is obtained through the linear interpolation of channel estimation of adjacent symbols used for orthogonal frequency division; the received symbol is re-constructed by utilizing the virtual pilot frequency symbol and the channel estimation thereof, the impulse response estimation of each sub-channel is obtained by ranking the received symbol of the actual pilot frequency symbol sub-carrier in ascending order according to the index value of the sub-carrier and then applying the least square method for time domain regularization, and the channel estimation of all the pilot frequency symbol sub-carriers is obtained after partial Fourier transformation; and finally, the channel frequency response of each user data symbol sub-carrier is obtained through the linear interpolation of channel estimation of the pilot frequency symbol sub-carrier. The invention has the advantages that the channel estimation precision is high, and larger quantity of transmitting antenna can be supported.

Description

technical field [0001] The present invention relates to a time-domain channel estimation method of a Multiple-Input Multiple-Output Orthogonal Frequency Division Multiple Access (MIMO OFDMA) downlink system, in particular to an estimation method based on the partially used subcarrier (PUSC) symbol structure in the IEEE 802.16e standard , belonging to the field of wireless communication systems. Background technique [0002] In recent years, broadband wireless technology has developed rapidly, and WiMAX has gradually become the focus of the wireless communication industry. WiMAX is a broadband wireless access technology based on IEEE 802.16 series standards, and supports four application scenarios: fixed, nomadic, portable and fully mobile. Among them, the mobile broadband wireless access air interface standard 802.16e is regarded by the industry as a next-generation wireless broadband technology that can compete with 3G by virtue of its mobility support, high-speed data ser...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H04L27/26H04L25/03H04L25/02
Inventor 杨雷王丹丁喆韩丰曹哲徐迎曦徐美玉
Owner HENAN UNIV OF SCI & TECH
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