This application claims priority to and the benefit of Korean Patent Application No. 10-2008-0085334 filed in the Korean Intellectual Property Office on Aug. 29, 2008 the entire contents of which are incorporated herein by reference.
(a) Field of the Invention
The present invention relates to a leakage signal reducing device and method, and particularly, it relates to a leakage signal reducing device and method in a multi-band signal generating system.
(b) Description of the Related Art
A conventional device for reducing a leakage signal of a local oscillator attenuates leakage power by correcting a DC offset at an input terminal of a frequency converter. Therefore, it is difficult to attenuate leakage power generated by other factors such as components that leak because of substrate coupling or parasitic components of a circuit.
Also, studies and developments for leakage power reducing devices appropriate for a multi-band signal generator for realizing recent wideband communication such as the multi-band and ultra-wideband (UWB) have occurred.
The above information disclosed in this Background section is only for enhancement of understanding of the background of the invention and therefore it may contain information that does not form the prior art that is already known in this country to a person of ordinary skill in the art.
The present invention has been made in an effort to provide a device and method for reducing a leakage signal for efficiently eliminating the leakage signal generated by a local oscillator in a system for generating multi-band signals.
An exemplary embodiment of the present invention provides a method for reducing a leakage signal in a system for generating a multi-band signal including: generating a first frequency signal through a local oscillator; generating a second frequency signal by dividing the first frequency signal with a divider; generating a third frequency signal through a frequency converter by using the first frequency signal and the second frequency signal; generating a first signal by adjusting a phase and a gain of the first frequency signal through a variable phase transistor and a variable gain adjuster; generating a second signal by adding the first signal and the third frequency signal; and controlling a phase adjust value of the variable phase transitor and a gain adjust ratio of the variable gain adjuster based on power of the second signal so as to reduce the leakage signal included in the third frequency signal.
Another embodiment of the present invention provides a device for reducing a leakage signal in a system for generating a multi-band signals, including: a local oscillator for generating a first frequency signal; a divider for generating a second frequency signal by dividing the first frequency signal; a frequency converter for generating a third frequency signal by using the first frequency signal and the second frequency signal; a variable phase transitor for adjusting and outputting a phase of the first frequency signal; a variable gain amplifier for adjusting and outputting a gain of an output signal of the variable phase transitor; an operator for operating the third frequency signal and an output signal of the variable gain amplifier; and a controller for controlling a phase adjust value of the variable phase transitor and a gain adjust ratio of the variable gain amplifier so as to reduce power of the signal output by the operator. According to the present invention, the leakage signal caused by the local oscillator can be efficiently eliminated in the multi-band signal generating system.
In the following detailed description, only certain exemplary embodiments of the present invention have been shown and described, simply by way of illustration. As those skilled in the art would realize, the described embodiments may be modified in various different ways, all without departing from the spirit or scope of the present invention. Accordingly, the drawings and description are to be regarded as illustrative in nature and not restrictive. Like reference numerals designate like elements throughout the specification.
Throughout the specification, unless explicitly described to the contrary, the word “comprise” and variations such as “comprises” or “comprising” will be understood to imply the inclusion of stated elements but not the exclusion of any other elements. In addition, the terms “-er”, “-or”, and “module” described in the specification mean units for processing at least one function and operation and can be implemented by hardware components or software components and combinations thereof.
A device and method for reducing a leakage signal in a system for generating a multi-band signal according to an exemplary embodiment of the present invention will now be described with reference to accompanying drawings.
Referring to
The local oscillator 101 generates a signal of a first frequency, and the divider 102 divides a frequency of the first frequency signal output by the local oscillator 101 to output a signal of a second frequency.
The frequency converter 103 outputs a signal of a third frequency by using the first frequency signal output by the local oscillator 101 and the second frequency signal output by the divider 102. Here, in the ideal case, the third frequency signal output by the frequency converter 103 is a signal of a frequency bandwidth corresponding to the sum of the first frequency and the second frequency, or a signal of a frequency bandwidth corresponding to the difference between the first frequency and the second frequency.
However, the third frequency signal (MixerOUTPUT) output by the frequency converter 103 can include a leakage signal leaked from the local oscillator 101 to the frequency converter 103 in addition to the signal of the frequency bandwidth corresponding to the sum or the difference of the first frequency and the second frequency as expressed in Equation 1.
MixerOUTPUT=cos(2πfLOt)×sin(2πfIFt)+L×cos(2πfLOt) (Equation 1)
Here, cos(2πfLOt) represents the first frequency signal output by the local oscillator 101, and fLO indicates the first frequency. Also, sin(2πfIFt) represents the second frequency signal output by the divider 102, and fIF indicates the second frequency. Further, L represents the ratio for leaking the output signal of the local oscillator 101 to the output of the frequency converter 103 because of many factors, and L×cos(2πfLOt) shows a leakage signal leaked to the output of the frequency converter 103 by the local oscillator 101.
Referring to
The signal output by the variable gain amplifier 105 is applied to the operator 106, and the operator 106 adds the third frequency signal output by the frequency converter 103 and the signal output by the variable gain amplifier 105, and outputs an added signal. Here, the signal (AdderOUTPUT) output by the operator 106 can be expressed as Equation 2.
Here, A×cos(2πfLOt+θ)) represents the signal output by the variable gain amplifier 105, θ indicates the phase adjusted value at the variable phase transitor 104, and A signifies the gain adjust ratio at the variable gain amplifier 105.
Referring to Equation 2, the phase (2πfLOt+θ) of the signal output by the variable phase transitor 104 is an odd number times 180 degrees, and when the gain adjust ratio A of the variable gain amplifier 105 corresponds to the leakage ratio L of the leakage signal, the two signals are offset and the leakage signal is also offset.
Referring to
The controller 108 outputs a control signal for controlling a phase adjust value of the variable phase transitor 104 and a gain adjust ratio of the variable gain amplifier 105 so as to reduce power of the signal output by the operator 106 based on the power value measured by the power measurer 107. That is, in order to eliminate power caused by the leakage signal from the power of the third frequency signal output by the frequency converter 103, the controller 108 controls the variable phase transitor 104 and the variable gain amplifier 105 so that the signal output by the variable gain amplifier 105 may have the same frequency and gain as the leakage signal and may have an opposite phase thereof. Here, the controller 108 can output a control signal for controlling the variable gain amplifier 105 after outputting a control signal for controlling the variable phase transitor 104, or it can output a control signal for controlling the variable phase transitor 104 after outputting a control signal for controlling the variable gain amplifier 105.
Referring to
The phase of the first frequency signal input to the variable phase transitor 104 is varied by variable phase transitor 104 and the gain thereof is adjusted by the variable gain amplifier 105, and they are then output in order to offset the leakage signal leaked as an output of the frequency converter 103 by the local oscillator 101 (S104).
The operator 106 adds the third frequency signal output by the frequency converter 103 and the signal output by the variable gain amplifier 105 and outputs the added signal, and the output signal of the variable gain amplifier 105 is added so as to reduce the leakage signal from the third frequency signal output by the frequency converter 103 (S105).
The power measurer 107 measures power of the signal output by the operator 106, and the controller 108 used the signal power measured by the power measurer 107 to generate a phase adjust value of the variable phase transitor 104 and a gain adjust ratio of the variable gain amplifier 105 for eliminating the leakage signal from the output signal of the frequency converter 103. The power measurer 107 controls the variable phase transitor 104 and the variable gain amplifier 105 based on the generated phase adjust value and the gain adjust ratio (S106).
Accordingly, the operation (S101 to S104) for eliminating the leakage signal from the third frequency signal output by the frequency converter 103 by using the first frequency signal output by the local oscillator 101 is repeated until the leakage signal is eliminated from the third frequency signal.
As described above, the leakage signal reducing device according to the exemplary embodiment of the present invention removes the leakage signal of the local oscillator included in the output signal of the frequency converter caused by the DC offset, substrate coupling, and parasitic components of the circuit in a multi-band signal generating system.
The above-described embodiments can be realized through a program for realizing functions corresponding to the configuration of the embodiments or a recording medium for recording the program in addition to through the above-described device and/or method, which is easily realized by a person skilled in the art.
While this invention has been described in connection with what is presently considered to be practical exemplary embodiments, it is to be understood that the invention is not limited to the disclosed embodiments, but, on the contrary, is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the appended claims.
Number | Date | Country | Kind |
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10-2008-0085334 | Aug 2008 | KR | national |