1. Field of the Invention
The present invention relates to a down-converter, and more particularly, to a low noise block down-converter (LNB) adding open-circuited transmission lines or short-circuited transmission lines into the 90-degree hybrid coupler to increase a bandwidth of cross polarization isolation (CPI).
2. Description of the Prior Art
Recently, requirements for satellite receiving systems have increased year by year due to satellite communication services having characteristics of wide bandwidth, data broadcasting, and being borderless. However, the resources for satellite bandwidth are finite. Thus, transmission manners such as linear polarization transmission and circular polarization transmission are developed to make better use of the satellite bandwidth. The linear polarization transmission includes vertical linear polarization (VLP) and horizontal linear polarization (HLP), wherein the magnitude of its electric field varies over time but the direction of the electric field remains the same. The circular polarization transmission includes right-hand circular polarization (RHCP) and left-hand circular polarization (LHCP), wherein the magnitude of its electric field does not vary over time, but the direction of the electric field does. Generally speaking, antennas with a same polarization type are used for receiving satellite signals with the same polarization type, but antennas with different polarization types may be used for receiving satellite signals with different polarization types due to certain antenna designs. For example, a linear polarization antenna can be used for receiving circular polarization waveforms. In such conditions, because the linear polarization antenna only catches linear polarization component signals (i.e., VLP component signals and HLP component signals) corresponding to the RHCP signal and the LHCP signal, the VLP component signals and HLP component signals received by the linear polarization antenna need to be combined to form the RHCP signal and the LHCP signal through a 90-degree hybrid coupler.
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Because the conventional 90-degree hybrid coupler 100 has the advantages of easy design and simple manufacturing, it is frequently applied to low noise block down-converters (LNB). However, it has the disadvantage of being unable to provide isolation across a wide bandwidth, which results in cross polarization interference at the input ports and output ports. Therefore, the receiving effectiveness of the LNB is greatly reduced.
It is one of the objectives of the present invention to provide a down-converter with a high bandwidth of cross polarization isolation (CPI) to solve the abovementioned problems.
The present invention provides a down-converter. The down-converter includes two low-noise amplifiers, a 90-degree hybrid coupler, and a down-converting circuit. The two low-noise amplifiers are respectively used for amplifying a first beacon signal and a second beacon signal to generate a first amplified signal and a second amplified signal. The 90-degree hybrid coupler is used for transforming the first amplified signal and the second amplified signal into a first coupler output signal and a second coupler output signal. The 90-degree hybrid coupler includes a coupler main body, a first transmission line, and a second transmission line. The coupler main body includes two input ports and two output ports. The two input ports are respectively coupled to the two low-noise amplifiers for receiving the first amplified signal and the second amplified signal. The two output ports are respectively used for outputting the first coupler output signal and the second coupler output signal. The first transmission line is coupled to the coupler main body. The second transmission line is coupled to the coupler main body, wherein the first transmission line and the second transmission line are each an open-circuited transmission line or a short-circuited transmission line. The down-converting circuit has two input ends respectively coupled to the two output ports of the 90-degree hybrid coupler for down-converting the first coupler output signal and the second coupler output signal.
In one embodiment, the first transmission line is coupled to one of the two input ports of the 90-degree hybrid coupler, and the second transmission line is coupled to another one of the two input ports of the 90-degree hybrid coupler.
In one embodiment, the first transmission line is coupled to one of the two output ports of the 90-degree hybrid coupler, and the second transmission line is coupled to another one of the two output ports of the 90-degree hybrid coupler.
In one embodiment, the 90-degree hybrid coupler further includes a third transmission line coupled to one of the two output ports of the 90-degree hybrid coupler and a fourth transmission line coupled to another one of the two output ports of the 90-degree hybrid coupler, wherein the third transmission line and the fourth transmission line are each an open-circuited transmission line or a short-circuited transmission line. The first transmission line is coupled to one of the two input ports of the 90-degree hybrid coupler, and the second transmission line is coupled to another one of the two input ports of the 90-degree hybrid coupler.
These and other objectives of the present invention will no doubt become obvious to those of ordinary skill in the art after reading the following detailed description of the preferred embodiment that is illustrated in the various figures and drawings.
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Please note that the 90-degree hybrid coupler 330 mentioned above is merely an implementation, but is not limited to this only and can be 90-degree hybrid coupler of another type. The first beacon signal SWL1 and the second beacon signal SWL2 are both satellite signals. For example, in one embodiment, the down-converter 300 is used for receiving a LHCP signal and a RHCP signal. The antenna 310 (such as a horizontal linear polarization antenna) is used for receiving a HLP component signal corresponding to the LHCP signal and a HLP component signal corresponding to the RHCP signal. The antenna 320 (such as a vertical linear polarization antenna) is used for receiving a VLP component signal corresponding to the LHCP signal and a VLP component signal corresponding to the RHCP signal. After the combination of the 90-degree hybrid coupler 330, the HLP component signal corresponding to the LHCP signal and the VLP component signal corresponding to the LHCP signal are combined into the LHCP signal to generate the first coupler output signal SCO1, and the HLP component signal corresponding to the RHCP signal and the VLP component signal corresponding to the RHCP signal are combined into the RHCP signal to generate the second coupler output signal SCO2. In other words, the first beacon signal SWL1 includes the HLP component signal corresponding to the LHCP signal and the HLP component signal corresponding to the RHCP signal, the second beacon signal SWL2 includes the VLP component signal corresponding to the LHCP signal and the VLP component signal corresponding to the RHCP signal, the first coupler output signal SCO1 includes the LHCP signal, and the second coupler output signal SCO2 includes the RHCP signal. In another embodiment, the down-converter 300 is used for receiving a HLP signal and a VLP signal. The antenna 310 (such as a left-hand circular polarization antenna) is used for receiving a LHCP component signal corresponding to the HLP signal and a LHCP component signal corresponding to the VLP signal. The antenna 320 (such as a right-hand circular polarization antenna) is used for receiving a RHCP component signal corresponding to the HLP signal and a RHCP component signal corresponding to the VLP signal. After the combination of the 90-degree hybrid coupler 330, the LHCP component signal corresponding to the HLP signal and the RHCP component signal corresponding to the HLP signal are combined into the HLP signal to generate the first coupler output signal SCO1, and the LHCP component signal corresponding to the VLP signal and the RHCP component signal corresponding to the VLP signal are combined into the VLP signal to generate the second coupler output signal SCO2. In other words, the first beacon signal SWL1 includes the LHCP component signal corresponding to the HLP signal and the LHCP component signal corresponding to the VLP signal, the second beacon signal SWL2 includes the RHCP component signal corresponding to the HLP signal and the RHCP component signal corresponding to the VLP signal, the first coupler output signal SCO1 includes the HLP signal, and the second coupler output signal SCO2 includes the VLP signal.
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The abovementioned embodiments are presented merely for illustrating practicable designs of the 90-degree hybrid coupler of the present invention, and should not be considered limitations of the present invention. Each of the four transmission lines can be implemented by the open-circuited transmission line 400 or the short-circuited transmission line 450. If the transmission lines need to be added to all of the four ports, there are 16 variations (24=16) in total. Please also note that if only the first transmission line 522 and the second transmission line 524 are added to the first input port 562 and the second input port 564, the bandwidth of the isolation of the 90-degree hybrid coupler can be improved as well. Similarly, if only the third transmission line 576 and the fourth transmission line 578 are added to the first output port 566 and the second output port 568, the bandwidth of the isolation of the 90-degree hybrid coupler can be improved as well, which should also belong to the scope of the present invention. Those skilled in the art should appreciate that various modifications of the architecture of the 90-degree hybrid coupler may be made without departing from the spirit of the present invention.
Please also note that, the open-circuited transmission line 400 and the short-circuited transmission line 450 shown in
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Those skilled in the art should appreciate that various modifications of the open-circuited transmission line and the short-circuited transmission line may be made without departing from the spirit of the present invention. The abovementioned embodiments are presented merely for illustrating practicable designs of the present invention, and should not be considered to be limitations of the present invention. Furthermore, the number of bends, the shape, and the included angle of the first section and the section include by the open-circuited transmission line or the short-circuited transmission line are not limited and can be adjusted depending on design requirements.
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From the above descriptions, the present invention provides a down-converter with a higher bandwidth of CPI. Through additionally disposing open-circuited transmission lines or short-circuited transmission lines to the two input ports, the two output ports, or all ports of the 90-degree hybrid coupler, the bandwidth of the isolation of the 90-degree hybrid coupler is greatly improved. Therefore, linear polarization antennas can be used for receiving the RHCP signal and the LHCP signal if the 90-degree hybrid coupler disclosed in the present invention is adopted. In addition, because the bandwidth of the isolation of the 90-degree hybrid coupler is improved, cross polarization interference can be avoided, which improve the receiving efficiency of the LNB. Furthermore, the architectures of the open-circuited transmission line and the short-circuited transmission line are very simple and can be manufactured cheaply, which will not increase difficulties in design and extra costs.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention.
Number | Date | Country | Kind |
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096147006 | Dec 2007 | TW | national |