Signal feedback loop and method for predistorter, power amplification equipment

A signal feedback and predistorter technology, applied in the direction of negative feedback circuit layout, etc., can solve the problems of high AD requirements, high clock rate in the digital domain, high cost, etc., and achieve lower dynamic range requirements, lower speed requirements, and lower manufacturing costs Effect

Inactive Publication Date: 2011-08-24
FUJITSU LTD
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Problems solved by technology

Although this scheme has few analog devices, it has higher requirements on AD, such as image 3 as shown in (b)
The dynamic range of AD (if 60dB is considered, then at least the AD of the effective number of bits (ENOB)=10 bits) and the sampling rate (if the 5th harmonic distortion is considered, then 5 times the upsampling rate is required) There are very high requirements, such ADs are often expensive, and the clock rate in the digital domain is high

Method used

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  • Signal feedback loop and method for predistorter, power amplification equipment
  • Signal feedback loop and method for predistorter, power amplification equipment
  • Signal feedback loop and method for predistorter, power amplification equipment

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Embodiment Construction

[0036] Exemplary embodiments of the present invention will be described below with reference to the accompanying drawings. In the interest of clarity and conciseness, not all features of an actual implementation are described in this specification. It should be understood, however, that in developing any such practical embodiment, many implementation-specific decisions must be made in order to achieve the developer's specific goals, such as meeting those constraints related to the system and business, and those Restrictions may vary from implementation to implementation. Moreover, it should also be understood that such development work, while potentially complex and time-consuming, would at least be a routine undertaking for those skilled in the art having the benefit of this disclosure.

[0037] Here, it should also be noted that, in order to avoid obscuring the present invention due to unnecessary details, only the device structure and / or processing steps closely related to...

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Abstract

The invention discloses a signal feedback loop and a method for predistorter, and power amplification equipment. The signal feedback loop comprises: a down converter for converting feedback signals downward into baseband signals or intermediate frequency signals, a first filer for filtering the baseband signals or the intermediate frequency signals to preliminarily inhibit main band signals among the signals, thereby outputting first filtering signals, an analog-to-digital converter for converting first filtering signals into digital signals from analog signals, a second filer for filtering digital signals to further inhibit the main band signals among the signals, thereby outputting second filtering signals, a power calculator for calculating the out-of-band power of the feedback signals according to the second filtering signals; and a coefficient updating controller for updating the coefficient of the predistorter according to the out-of-band power. With the technology scheme of the invention, the dynamic scope requirement of analog-to-digital conversion and the complexity of simulation circuits can be reduced by shifting part of the simulation loop complexity to digital field and utilizing two-level filtering structure.

Description

technical field [0001] The invention relates to a nonlinear device, especially a digital predistortion linearization technology of a power amplifier, in particular to a signal feedback loop and method for a power amplifier predistorter. Background technique [0002] As the core component of the analog communication system, the power amplifier's low power consumption design or high efficiency design has always been a hot issue. The digital baseband predistortion method uses the feedback distortion information to pre-compensate the nonlinear characteristics of the amplifier at the sending digital end, and it is relatively easy to realize adaptive and high-bandwidth nonlinear compensation, and it has become one of the first choices of the predistortion method. [0003] According to the type of feedback information, predistorters can be divided into vector method and scalar method. [0004] The so-called vector method is to completely retain the amplitude and phase information ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H03F1/34
Inventor 周建民施展李辉王志奇
Owner FUJITSU LTD
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