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Wireless communication method and equipment

A wireless communication device and wireless signal technology, applied in wireless communication, power management, electrical components, etc., can solve problems such as subcarrier saturation, insufficient compensation, and error detection, so as to improve the accuracy of data detection, compensate the impact, and improve the overall performance effect

Active Publication Date: 2014-04-09
LEADCORE TECH
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AI Technical Summary

Problems solved by technology

Since the degree of fading of each subcarrier is actually different, the above compensation is usually not sufficient for some subcarriers with a greater degree of fading, which may cause the data on the above subcarriers to lose effective accuracy and be erroneously detected, thus Causes the overall performance of the wireless communication system to decline
If some sub-carriers with a greater degree of fading are to be given greater compensation, it will inevitably cause most sub-carriers to be saturated during A / D (analog-to-digital) conversion, which will also cause the overall performance of the wireless communication system to decline.

Method used

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  • Wireless communication method and equipment
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Embodiment Construction

[0015] The present invention performs channel estimation on each wireless channel at the wireless receiving end, and adjusts the power of each sub-band of the system bandwidth according to the statistical result of the channel estimation, so that each sub-band can perform differential compensation according to the actual fading situation. Improve the overall performance of the entire wireless communication system.

[0016] See figure 1 , Which is a schematic structural diagram of an embodiment of a wireless communication device of the present invention. The wireless communication device 100 may be a wireless receiving device, which is set at the receiving end of a wireless communication system. The wireless communication device 100 may be applied to a wireless communication system that adopts Orthogonal Frequency Division Multiplexing (OFDM), such as a Long Term Evolution (LTE) system, and includes a receiving antenna 110 and a signal processing module 120.

[0017] The receiving...

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Abstract

The invention provides wireless communication equipment which relates to the technology of wireless communication, and comprises a receiving antenna and a signal processing module, wherein the receiving antenna is used for receiving wireless signals transmitted by a plurality of wireless channels, the wireless signals respectively carry a plurality of subcarriers to carry out transmission, the signal processing module comprises a channel estimation unit, a channel information counting unit and a detection unit, wherein the channel estimation unit is used for estimating a frequency response value of each subcarrier, the channel information counting unit is used for counting the channel information of the wireless channels and enables the channel information to respectively generate adjustment factors corresponding to the subcarriers, and the detection unit is used for carrying out selective power adjustment to the frequency response values provided by the channel estimation unit and wireless signals of the subcarriers corresponding to the frequency response values according to adjustment factors estimated by the channel information counting unit, so that the signals after the power adjustment are detected. The invention simultaneously provides a wireless communication method.

Description

Technical field [0001] The present invention relates to wireless communication technology, and in particular, to a wireless communication method and equipment based on Orthogonal Frequency Division Multiplexing (OFDM). Background technique [0002] In a wireless communication system, the transmitted signal from the transmitter is usually transmitted through multiple transmission paths. Since each path component of the transmitted signal reaching the receiving antenna undergoes different propagation paths, each signal component may have a different time delay, which will cause the energy of the received signal to be extended in time. [0003] Assuming that the signal sent by the transmitter is δ(t), the received signal after passing through the multipath channel can be expressed as: Where α l Is the fading factor of the l-th path, τ l Is the propagation delay of the first path. Maximum delay spread τ of multipath channel max It is usually defined as the length of the interval from...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H04L27/26H04L25/02H04W52/18
Inventor 徐兵刘庆伟王乃博
Owner LEADCORE TECH
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