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Channel estimation method for four-phase modulation system

A four-phase modulation and channel estimation technology, applied in the field of channel estimation, can solve problems such as error propagation, channel estimation error, channel estimation accuracy depends on the correctness of decision data, etc., achieve low complexity and simple effect

Active Publication Date: 2012-06-27
PEKING UNIV +1
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Problems solved by technology

However, since this method needs to judge the data, the accuracy of channel estimation depends on the correctness of the judgment data
When a subcarrier is in deep fading for a long time or is affected by single-frequency interference for a long time, error propagation is prone to occur, resulting in a large channel estimation error

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  • Channel estimation method for four-phase modulation system
  • Channel estimation method for four-phase modulation system
  • Channel estimation method for four-phase modulation system

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Embodiment Construction

[0031] The channel estimation method for a four-phase modulation system applicable to channel conditions with insignificant time-varying characteristics described in the present invention will be described in detail below in conjunction with the accompanying drawings, but this does not constitute a limitation to the present invention.

[0032] Such as figure 1 As shown, the present invention proposes that at the sending end, for the binary sequence B t (m) Perform four-phase modulation to obtain the frequency domain symbol sequence X t (k). Among them, the four-phase modulation constellation diagram is as follows image 3 As shown, α represents the phase of the constellation point in the first quadrant. Then, the frequency-domain symbol sequence X t (k) Perform IFFT or IDFT to obtain the transmitted time domain sequence x t (n).

[0033] figure 2 The implementation block diagram of the channel estimation method proposed by the present invention is given, and the specif...

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Abstract

The invention discloses a channel estimation method for a four-phase modulation system, which belongs to the digital communication field. The method comprises the following steps: a sending terminal performing four-phase modulation to a binary sequence Bt(m) to obtain a frequency-domain symbol sequence Xt(k), performing the FFT or the DFT to the symbol sequence Xt(k) to obtain a transmitted time-domain sequence xt(n), a receiving terminal performing FFT or DFT to the received time-domain sequence xt(n) to obtain a received frequency-domain sequence Yr(k), calculating the amplitude and the phase of the frequency-domain sequence Yr(k) to obtain an amplitude sequence AH(k) and a phase sequence Phi(k), the amplitude sequence AH(k) being namely the amplitude of a channel response H, performing the phase rotation to the phase sequence Phi(k) to obtain a phase sequence Theta H<0>(k), performing the phase correction to the phase sequence Theta H<0>(k) to obtain a corrected phase sequence Theta H(k) which is namely the phase of the channel response H. The invention directly utilizes the received four-phase modulation symbol to perform channel estimation without decision feedback and avoids the influence of wrong judgment to the channel estimation accuracy.

Description

technical field [0001] The invention belongs to the field of digital communication, and in particular relates to a channel estimation method used in a four-phase modulation OFDM system. Background technique [0002] In an Orthogonal Frequency Division Multiplexing (OFDM) system, the accuracy of channel estimation directly affects the equalization effect of frequency domain signals, and further affects the performance of the entire OFDM system. Traditional channel estimation methods in OFDM systems include non-blind channel estimation methods and blind channel estimation methods. Non-blind channel estimation methods usually use the method of inserting training sequences or inserting pilots to perform channel estimation. This method increases redundant information and reduces system transmission efficiency, but it can track channel changes in real time. In order to achieve the highest possible data transmission efficiency, some OFDM systems do not send training sequences and...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H04L27/26H04J11/00
Inventor 韩瑜赵玉萍李红滨吴毅凌
Owner PEKING UNIV
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