CN1767402A - Double mode transmission mode for antenna feed line signal - Google Patents

Double mode transmission mode for antenna feed line signal Download PDF

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Publication number
CN1767402A
CN1767402A CN 200510061604 CN200510061604A CN1767402A CN 1767402 A CN1767402 A CN 1767402A CN 200510061604 CN200510061604 CN 200510061604 CN 200510061604 A CN200510061604 A CN 200510061604A CN 1767402 A CN1767402 A CN 1767402A
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China
Prior art keywords
signal
mode
frequency
transmission
broadband
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CN 200510061604
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Chinese (zh)
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CN100346579C (en
Inventor
赵民建
许峰
郑剑
李衡
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HANGZHOU TIANYIN RADIO COMMUNICATION CO Ltd
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HANGZHOU TIANYIN RADIO COMMUNICATION CO Ltd
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Priority to CNB2005100616048A priority Critical patent/CN100346579C/en
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Publication of CN100346579C publication Critical patent/CN100346579C/en
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Abstract

This invention relates to a signal transmission method for antenna feed lines including: signals got from the antenna are amplified and filtered to pass a double mode switch to be processed by the mode of broadband or narrow band and input into a related transmission medium corresponding to the selected process mode. When applying the broadband mode, one antenna can provide multiple receivers avoiding the signal power loss for the present technology and when applying the narrow band mode, it can increase the efficiency of the signal process and transmission.

Description

The double mode transmission mode of antenna feed line signal
Technical field
The present invention relates to antenna feed line signal transmission field, particularly shortwave, the transmission of ultrashort feeder, realize broadband and arrowband and the dual-mode working mode of depositing.
Background technology
Feeder is a kind of transmission system that the signal of telecommunication that receives on the antenna is transferred to receiver.Feeder commonly used generally adopts coaxial cable, and it is very big to the decay of radiofrequency signal, and general several meters shielded cable just has the decay about 1dB.Because antenna is bigger to distance between the receiver, coaxial cable not only attenuation ratio is bigger, and is subjected to other electromagnetic interference easily, makes the degradation of receiver.
The pattern in broadband is meant that antenna all sends out to the feeder line transmission system of the receiver broadband signal with the whole frequency band that receives on the antenna.Be that what general transmission network adopted all is the pattern in broadband in " WiMAX insert transmission network base station " patent of CN03237254.X situation about announcing for example in the patent No..In the situation of reality,, in the feeder line transmission system, need handle accordingly aerial signal in order to draw back the distance of antenna system and receiver.Complicated now aerial electromagnetic wave environment, under the overwhelming majority's situation, in the radio frequency line spectral limit of antenna receiving signal, signal to noise ratio is all poor, if transmission is broadband signal, because the existence of larger interference signal makes the transmission performance of feeder system descend, handle becoming complicated, treatment effeciency is lower.So adopting the pattern in broadband merely is not the solution that best feeder line transmits.
Summary of the invention
The objective of the invention is at the deficiencies in the prior art, the feeder transmission method of a kind of broadband/arrowband bimodulus coexistence is provided, this method can either satisfy the transmission requirement of antenna to the one-to-many of receiver, has reduced the interference of noise to useful signal again.
Broadband/arrowband dual-mode working mode that the present invention realizes, divide following step:
(1) signal that receives of antenna is through amplifying and Filtering Processing, by the double mode diverter switch of a broadband/arrowband, selects signal is adopted a kind of processing the in broadband mode and two kinds of methods of narrow band mode.Double mode diverter switch can adopt electronic switch, relay etc.; The selection of broadband mode and two kinds of processing methods of narrow band mode is to realize by the artificial judgement of effect to received signal.
(2) handle to received signal respectively according to selected tupe:
If 1. adopt broadband mode to handle, adopt prior art, promptly through the amplifier of multistage fixed gain and the amplifier of multistage automatic gain control, output is fit to the signal of telecommunication of transmission;
If 2. adopting narrow band mode to handle may further comprise the steps:
A. will be ω through frequency after amplification and the Filtering Processing RFAerial signal be ω by first order frequency mixer and frequency LOLocal oscillated signal carry out mixing;
B. the signal after the mixing is ω by centre frequency IFBand pass filter carry out narrow-band filtering, the generation fixed frequency is ω IFIntermediate-freuqncy signal, ω wherein IFLORF
C. intermediate-freuqncy signal is amplified through the amplifier of multistage fixed gain and the amplifier of multistage automatic gain control;
D. amplified IF signal is ω by second level frequency mixer and frequency LOLocal oscillated signal carry out mixing;
E. obtaining frequency through the signal after the mixing of the second level through filter is ω RFThe signal of telecommunication of suitable transmission.It is ω that described filter can adopt centre frequency RFBand pass filter, cut-off frequency be more than or equal to ω RFLow pass filter etc.
(3) through the signal of telecommunication of the suitable transmission after broadband/arrowband processing, the tupe that corresponding step (1) is selected is input to transmission medium by the either-or switch selector.
The present invention is because the working method that has adopted the two kinds of patterns in broadband/arrowband and deposited can obtain the benefit that broadband mode transmission and narrow band mode transmit simultaneously.Their common benefits are exactly the processing by the feeder line transmission system, have prolonged signal transmission distance; The low-noise performance of feeder system can receiver receiving sensitivity; The AGC of the great dynamic range of feeder system (control of Auto Gain Control automatic gain) function can be improved the dynamic range of receiver.Adopt broadband transmission mode, an antenna can provide many receivers, and an aerial signal avoiding traditional employing power divider to realize provides the signal power loss problem of many receivers.Adopt the narrow band transmission pattern, can further improve quality of signals, improve the efficient of signal processing and transmission, strengthen the interference free performance of receiver.
The present invention is further illustrated below in conjunction with accompanying drawing:
Description of drawings
Fig. 1 is broadband among the present invention/arrowband bimodulus and the feeder line transmission system structural representation deposited;
Fig. 2 is the schematic diagram of broadband work pattern of the present invention;
Fig. 3 is the schematic diagram of arrowband of the present invention mode of operation.
Embodiment
As shown in Figure 1: 11 expression antennas, 12 expression pretreatment module, the double mode diverter switch of 13 expressions, 14 expression The Wideband Signal Processing passages, 15 expression narrow band signal treatment channel, 16 expression either-or switch selectors, 17 expression transmission mediums.
Broadband/arrowband bimodulus and the feeder line transmission system of depositing may further comprise the steps:
Signal is put and Filtering Processing simply in advance by pretreatment module 12 after antenna 11 receives, again by double mode diverter switch 13, select to adopt broadband mode handle and the narrow band mode processing in a kind of.Switching realizes by the judgement generation mode switch control signal of artificial effect to received signal.If select the broadband tupe, the signal after the amplification is by The Wideband Signal Processing passage 14, and output is fit to the signal of telecommunication of transmission; If select the arrowband tupe, the signal after the amplification is by narrow band signal processing module 15, and output is fit to the signal of telecommunication of transmission.Through the signal of telecommunication of the suitable transmission after broadband/arrowband processing, the tupe that corresponding double mode diverter switch 13 is selected outputs to transmission medium 17 by either-or switch selector 16.The control of switching selector is realized by the mode switch control signal.Under broadband mode, the signal bandwidth of transmission is the frequency band range of the received signal of antenna, can be corresponding shortwave frequency range, ultrashort wave frequency range, microwave band etc.; Under narrow band mode, the signal bandwidth of transmission is the less narrow band signal of carrier frequency relatively such as tens KHz, tens megahertzes, centre frequency controlled by receiver and the tuned frequency of receiver is consistent, and narrow band mode inhibition zone effectively disturbs outward.
As shown in Figure 2,21 expression cascade high-gain amplifiers, 22 expression controllable gain amplifiers, 23 expression signal powers detect, 24 expression gain level controls.
The The Wideband Signal Processing pattern may further comprise the steps:
Signal is put and Filtering Processing simply in advance by pretreatment module 12 after antenna 11 receives, and again by double mode diverter switch 13, selects to adopt the The Wideband Signal Processing pattern.Signal after the amplification carries out fixed gain by cascade high-gain amplifier 21 and amplifies, and carries out the amplification of different gains by controllable gain amplifier 22 again, and gain is specifically controlled by level, and control level is provided by gain level control module 24.Gain level is controlled fully by the output of signal power detection 23.When the output of controllable gain amplifier 22 was relatively large, signal power detected 23 detection level that output is bigger, and correspondingly, 24 less control levels of output of gain level control make the gain of controllable gain amplifier 22 reduce.Through the adjustment that repeats, the level of the output signal of telecommunication of controllable gain amplifier 22 is basicly stable.The signal of level equalization relatively is fit to media transmission.The signal of telecommunication of the suitable transmission after controllable gain amplifies is by either-or switch selector 16, and selector is selected broadband mode, and signal outputs to transmission medium 17, carries out long-distance transmissions to receiver by media.
As shown in Figure 3,31 expression first order frequency mixers, 32 expression intermediate frequency narrow band filters, 33 expression controllable gain amplifiers, 34 expression signal power detector, 35 expression gain level controls, 36 expression second level frequency mixers, 37 expression low pass filters.
The narrow band signal tupe may further comprise the steps:
Signal is put and Filtering Processing simply in advance by pretreatment module 12 after antenna 11 receives, and again by double mode diverter switch 13, selects to adopt the narrow band signal tupe.Signal after the amplification and local oscillated signal carry out first order mixing by first frequency mixer 31, the received signal input of first order mixing:
s RF=A 1·cos(ω RFt)
The local oscillated signal input of first order mixing:
s LO=A 2·cos(ω LOt)
The output signal of first order mixing:
s IF=s RF·s LO=A 1cos(ω RFt)·A 2cos(ω LOt)
= A 1 A 2 2 cos [ ( ω LO - ω RF ) t ] + cos [ ( ω LO + ω RF ) t ]
The output signal of frequency mixer is carried out the Filtering Processing of arrowband by 32 pairs of intermediate-freuqncy signals of intermediate frequency narrow band filter, and centre frequency is got difference frequency signal ω LORF, noise and high reject signal that the filtering band is outer.The output of intermediate-frequency filter:
ω IF=ω LORF
The intermediate-freuqncy signal of filter output is through the metastable signal of telecommunication of controllable gain amplifier 33 output levels.The operation principle of controllable gain amplifier 33, signal power detector 34 and gain level control 35 is controlled 24 consistent with controllable gain amplifier 22, signal power detector 23 and gain level, concrete operating state has difference with parameter according to different occasions.
Carry out mixing through the signal after the controllable gain amplification by second level frequency mixer 36,
The intermediate-freuqncy signal input of second level mixing:
s IF=A 3·cos(ω IFt)
The local oscillation signal input of second level mixing:
s LO=A 4·cos(ω LOt)
The signal output of second level mixing:
s RF=s IF·s LO=A 3cos(ω IFt)·A 4cos(ω LOt)
= A 3 A 4 2 cos [ ( ω LO - ω IF ) t ] + cos [ ( ω LO + ω IF ) t ]
Signal after the mixing of the second level is by low pass filter 37, and output obtains receiving the frequency signal:
ω RF=ω LOIF
By the signal of telecommunication of the suitable transmission after the low pass filter, by either-or switch selector 16, selector is selected narrow band mode, outputs to transmission medium 17.Carry out long-distance transmissions to receiver by media.
The first order and second level frequency mixer adopt the local oscillated signal of same frequency.Its frequency is determined by the frequency of the frequency of received signal and intermediate-freuqncy signal, is satisfied ω LORF+ ω IFω wherein LOBe the frequency of oscillator signal originally, ω RFThe frequency of received signal, ω IFFrequency for intermediate-freuqncy signal.Adopt the mode of arrowband, the signal frequency ω of output after handling RFThe signal frequency ω that receives with antenna RFBe consistent, illustrate that feeder system has transferred out signal undistortedly.Because the use of high performance intermediate frequency narrow band filter, the processing mode of arrowband has improved the interference free performance of system.

Claims (1)

1, the double mode transmission mode of antenna feed line signal is characterized in that this method may further comprise the steps:
(1) signal that receives of antenna is through amplifying and Filtering Processing, by a double mode diverter switch, selects signal is adopted a kind of processing the in broadband mode and two kinds of methods of narrow band mode;
(2) handle to received signal respectively according to selected tupe:
If 1. adopt broadband mode to handle, then through the amplifier of multistage fixed gain and the amplifier of multistage automatic gain control, output is fit to the signal of telecommunication of transmission;
If 2. adopt narrow band mode to handle, then may further comprise the steps:
A. will be ω through frequency after amplification and the Filtering Processing RFAerial signal be ω by first order frequency mixer and frequency LOLocal oscillated signal carry out mixing;
B. the signal after the mixing is ω by centre frequency IFBand pass filter carry out narrow-band filtering, the generation fixed frequency is ω IFIntermediate-freuqncy signal, ω wherein IFLORF
C. intermediate-freuqncy signal is amplified through the amplifier of multistage fixed gain and the amplifier of multistage automatic gain control;
D. amplified IF signal is ω by second level frequency mixer and frequency LOLocal oscillated signal carry out mixing;
E. through the filtering of the process of the signal after the mixing of the second level, obtaining frequency is ω RFThe signal of telecommunication of suitable transmission;
(3) through the signal of telecommunication of the suitable transmission after handling, the tupe that corresponding step (1) is selected is input to transmission medium by the either-or switch selector.
CNB2005100616048A 2005-11-18 2005-11-18 Double mode transmission mode for antenna feed line signal Expired - Fee Related CN100346579C (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102647200A (en) * 2011-02-18 2012-08-22 中国移动通信集团公司 Radio frequency front-end receiving device, emitting device and terminal
CN109842380A (en) * 2017-11-28 2019-06-04 锐迪科微电子(上海)有限公司 A kind of power amplification circuit for realizing HPUE

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5668837A (en) * 1993-10-14 1997-09-16 Ericsson Inc. Dual-mode radio receiver for receiving narrowband and wideband signals
US5914942A (en) * 1996-10-25 1999-06-22 Ericsson Inc. Satellite communications system with dual mode bandwidth control
DE69806405T2 (en) * 1997-10-21 2002-11-21 Interwave Comm International L INDEPENDENT MASTER-MOUNTED UNIT FOR CELLULAR COMMUNICATION NETWORKS
GB0015374D0 (en) * 2000-06-23 2000-08-16 Koninkl Philips Electronics Nv Antenna arrangement
CN2652064Y (en) * 2003-10-27 2004-10-27 李学军 Separated bi-directional base station power amplifier

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102647200A (en) * 2011-02-18 2012-08-22 中国移动通信集团公司 Radio frequency front-end receiving device, emitting device and terminal
CN109842380A (en) * 2017-11-28 2019-06-04 锐迪科微电子(上海)有限公司 A kind of power amplification circuit for realizing HPUE

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C14 Grant of patent or utility model
GR01 Patent grant
EE01 Entry into force of recordation of patent licensing contract

Assignee: Topone Information Technology Co., Ltd

Assignor: Hangzhou Tianyin Radio Communication Co., Ltd.

Contract fulfillment period: 2007.11.1 to 2012.10.31 contract change

Contract record no.: 2008330002483

Denomination of invention: Double mode transmission mode for antenna feed line signal

Granted publication date: 20071031

License type: Exclusive license

Record date: 2008.12.1

LIC Patent licence contract for exploitation submitted for record

Free format text: EXCLUSIVE LICENSE; TIME LIMIT OF IMPLEMENTING CONTACT: 2007.11.1 TO 2012.10.31; CHANGE OF CONTRACT

Name of requester: HANGZHOU TIANYUAN INFORMATION TECHNOLOGY CO., LTD.

Effective date: 20081201

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Granted publication date: 20071031

Termination date: 20131118