CN102263761A - Method for modulating framing of multimedia wireless broadcast signals - Google Patents

Method for modulating framing of multimedia wireless broadcast signals Download PDF

Info

Publication number
CN102263761A
CN102263761A CN2011102503798A CN201110250379A CN102263761A CN 102263761 A CN102263761 A CN 102263761A CN 2011102503798 A CN2011102503798 A CN 2011102503798A CN 201110250379 A CN201110250379 A CN 201110250379A CN 102263761 A CN102263761 A CN 102263761A
Authority
CN
China
Prior art keywords
time domain
coded data
sequence
radio broadcast
sample value
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN2011102503798A
Other languages
Chinese (zh)
Other versions
CN102263761B (en
Inventor
郑紫微
徐铁峰
聂秋华
何加铭
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Beijing Yong Bo Technology Co ltd
Liu Fumin
Wang Junfeng
Original Assignee
Ningbo University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Ningbo University filed Critical Ningbo University
Priority to CN 201110250379 priority Critical patent/CN102263761B/en
Publication of CN102263761A publication Critical patent/CN102263761A/en
Application granted granted Critical
Publication of CN102263761B publication Critical patent/CN102263761B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Abstract

The invention discloses a method for modulating framing of multimedia wireless broadcast signals, and relates to a time domain/frequency domain mixed framing modulating method. The method for modulating framing of multimedia wireless broadcast signals has the advantages of low peak-to-average power ratio, short synchronization time, resistance to fading and noise, controllable multiple services and the like.

Description

A kind of multi-media radio broadcast singal framing modulator approach
Technical field
The invention belongs to wireless communication field, relate more specifically to a kind of multi-media radio broadcast singal framing modulator approach.
Background technology
At present, television broadcasting develops to the digitlization direction gradually from simulation.Digital Television radio multimedium broadcast transmission system, as the important component part of Digital Television radio multimedium broadcasting, its development of technologies, closely bound up with people's quality of life, and therefore be subjected to people's extensive concern especially.Digital Television radio multimedium broadcasting correlation technique and related industry thereof are that development is very fast in the Communications And Computer field, the industry of good market prospect.On digital TV multimedia radio broadcasting correlation technique, the emphasis of various countries' concern at present is that the digital TV multimedia radio broadcasting how to pass under the environment for complex wave provides the implementation of reliable high-speed mobile cheaply.Multi-media radio broadcast signal transmission machine framing modulation technique is the key technology of digital TV multimedia wireless broadcast system, for whole system performance decisive role, is the object of everybody primary study.
Because the develop rapidly of Digital Signal Processing and integrated circuit technique, the system of OFDM (OFDM) technology realizes becoming more and more easier.Because of OFDM multi-carrier transmission technology has simple in structure, the availability of frequency spectrum high plurality of advantages such as becomes and extremely everybody concern and obtain deep research and the extensive use in numerous areas such as Xdsl, wide-band mobile communication, wideband wireless local area network, digital TV multimedia radio broadcasting in the time of can resisting frequency selectivity and channel.
Peak-to-average power ratio (PAPR) pair amplifier that ofdm signal is higher and the range of linearity of digital to analog converter have very high requirement, if the system linearity scope can not satisfy the variation of signal, then can cause signal distortion, signal spectrum is changed, thereby cause the orthogonality between the subchannel to be destroyed, produce the phase mutual interference, make system performance degradation.Therefore, the solution that must consider how to reduce the probability of occurrence of big peak power signal in the ofdm signal and reduce the nonlinear distortion influence.
Chnnel coding is the important component part of digital communication system.Along with the develop rapidly of modern information technologies, channel coding technology has become the indispensable technology in modern communications field.Embed redundancy symbol in information sequence, the effect of channel coding technology by redundancy symbol reduces signal and makes a mistake in transmission course, thereby improves the reliability of communication system.Serially concatenated coding be a kind of message transmission rate that can make near theoretical maximum, i.e. the encoding scheme of shannon limit.
In the practical communication environment, Digital Television radio multimedium broadcast communication system performance is subjected to the influence of factors such as lock in time, clock jitter, channel fading, channel disturbance.Multi-media radio broadcast signal transmission machine framing modulator approach is to realize the key technology of reliable digit television multimedia radio broadcasting.
Utilizing Digital Television radio multimedium broadcast transmission system that may command multi-services such as free television broadcasting, paid television broadcasting, security information transmission, multimedia value-added service are provided is embodiments that Digital Television radio multimedium broadcast transmission system of new generation satisfies social needs.
Just be based on above background, the present invention is directed to the practical communication environment and propose a kind of multi-media radio broadcast singal framing modulator approach, can satisfy the needs of High Data Rate may command multi-service digital TV multimedia radio transmission.
Desire is done more deep understanding to the patent background can be with reference to following documents and materials:
R.V.Nee,R.Prasad.“OFDM?for?wireless?multimedia?communications””.Boston:Artech?House,2000.
Y.Wu,S.Hirakawa,U.H.Reimers,and?J.Whitaker.“Overview?of?digital?television?development,”Proceedings?of?the?IEEE,Special?Issue?on?Global?Digital?Television:Technology?and?Emerging?Services,pp.8-21,Jan.2006.
M.S.Richer,G.Reitmeier,T.Gurley,G.A.Jones,J.Whitaker,and?R.Rast.“The?ATSC?digital?television?system,”Proceedings?of?the?IEEE,Special?Issueon?Global?Digital?Television:Technology?and?Emerging?Services,pp.37-43,Jan.2006.
U.Ladebusch?and?C.A.Li?ss.“Terrestrial?DVB(DVB-T):A?broadcast?technology?for?stationary?portable?and?mobile?use,”Proceedings?of?the?IEEE,Special?Issueon?Global?Digital?Television:Technology?and?Emerging?Services,pp.183-194,Jan.2006.
M.Takada?and?M.Saito.“Transmission?systems?for?ISDB-T,”Proceedings?of?the?IEEE,Special?Issue?on?Global?Digital?Television:Technology?and?Emerging?Services,pp.251-256,Jan.2006.
S.Benedetto?and?G.Montorsi.“Iterative?decoding?of?serially?concatenated?convolutional?codes,”Electronics?Letters,pp.1186-1188,1996.
Summary of the invention
The present invention is directed to High Data Rate may command multi-service digital TV multimedia radio broadcasting problem, proposed a kind of multi-media radio broadcast singal framing modulator approach.
A kind of multi-media radio broadcast singal framing modulator approach that the present invention proposes is characterized in that it comprises the following steps:
1) multi-media radio broadcast signal transmission machine is deleted the input data bit of oneself the serially concatenated multi code Rate of Chinese character of flowing through surplus convolutional encoding form the FFT coded data block on frequency domain, and FFT represents the fast discrete Fourier conversion, and the length of FFT coded data block is K;
2) multi-media radio broadcast signal transmission machine adopts IFFT that the FFT coded data block is transformed to time domain discrete coded data sample value piece D Total, IFFT represents the fast discrete Fourier inverse transformation;
3) multi-media radio broadcast signal transmission machine is divided equally into two with time domain discrete coded data sample value piece in order, the sub-piece D of time domain discrete coded data sample value 1With the sub-piece D of time domain discrete coded data sample value 2, D Total=[D 1, D 2];
4) multi-media radio broadcast signal transmission machine passes through the peak-to-average power ratio adjustment unit to the sub-piece D of time domain discrete coded data sample value 1, the sub-piece D of time domain discrete coded data sample value 2Carry out that signal adds, subtracts, conjugate operation is handled and synthetic again new time domain discrete coded data sample value piece D New, new time domain discrete coded data sample value piece D NewAdopt following generate pattern to obtain, generate pattern 1 is D New=[D 1, D 2], generate pattern 2 is D new = [ D 1 , 1 / 2 ( D 1 + D 2 ) ] , Generate pattern 3 is D new = [ D 1 , 1 / 2 ( D 1 - D 2 ) ] , Generate pattern 4 is D new = [ 1 / 2 ( D 1 + D 2 ) , D 2 ] , Generate pattern 5 is D new = [ 1 / 2 ( D 1 - D 2 ) , D 2 ] , Generate pattern 6 is D new = [ 1 / 2 ( D 1 + D 2 ) , 1 / 2 ( D 1 - D 2 ) ] , Generate pattern 7 is D New=[D * 1, D 2], generate pattern 8 is D new = [ D * 1 , 1 / 2 ( D * 1 + D 2 ) ] , Generate pattern 9 is D new = [ D * 1 , 1 / 2 ( D * 1 - D 2 ) ] , Generate pattern 10 is D new = [ 1 / 2 ( D * 1 + D 2 ) , D 2 ] , Generate pattern 11 is D new = [ 1 / 2 ( D * 1 - D 2 ) , D 2 ] , Generate pattern 12 is D new = [ 1 / 2 ( D * 1 + D 2 ) , 1 / 2 ( D * 1 - D 2 ) ] , Compare the synthetic time domain discrete coded data sample value piece D of 12 kinds of generate patterns New, choose wherein have a minimum peak-to-average power ratio peak-to-average power ratio time domain discrete coded data sample value piece falls
Figure BSA00000564217000035
And peak-to-average power ratio time domain discrete coded data sample value piece will fall
Figure BSA00000564217000036
The corresponding generate pattern information that adopts send to the operational indicator sequence unit be set, wherein, D * 1Expression is to the sub-piece D of time domain discrete coded data sample value 1Each time domain discrete coded data sample value carry out that conjugate operation is handled and the sub-piece of time domain discrete coded data sample value that obtains;
5) multi-media radio broadcast signal transmission machine with training sequence as the real part sequence of sequence of plural training, the operational indicator sequence is provided with the imaginary part sequence of the set operational indicator sequence in unit as sequence of plural training, on time domain, constitute the discrete sample block of sequence of plural training, the length of the discrete sample block of training sequence, operational indicator sequence, sequence of plural training all is X, and the operational indicator sequence is comprising and unique each system parameters and business model information of expressing multi-media radio broadcast signal transmission machine;
6) multi-media radio broadcast signal transmission machine will repeat 4 times continuously and form time domain embedding training sequence discrete sample block on time domain in the discrete sample block of the sequence of plural training that constitutes on the time domain, time domain embeds the length and the length numerically equal of falling peak-to-average power ratio time domain discrete coded data sample value piece, i.e. K=4 * X of training sequence discrete sample block;
7) multi-media radio broadcast signal transmission machine will fall peak-to-average power ratio time domain discrete coded data sample value piece, time domain and embed training sequence discrete sample block and directly superpose and form time domain and embed training sequence and fall peak-to-average power ratio time domain discrete coded data sample value piece, as frame;
8) multi-media radio broadcast signal transmission machine at interval is that frame head inserts time domain and embeds training sequence to fall peak-to-average power ratio time domain discrete coded data sample value piece be frame with Cyclic Prefix as protection, and to form signal frame, the length of Cyclic Prefix is C;
9) multi-media radio broadcast signal transmission machine adopts square root raised cosine filter that the signal pulse of signal frame is shaped;
10) multi-media radio broadcast signal transmission machine with the baseband signal up-conversion to carrier wave.
Multi-media radio broadcast singal framing modulator approach according to above-mentioned is characterized in that: multi-media radio broadcast signal transmission machine fall peak-to-average power ratio time domain discrete coded data sample value piece by the signal that the sub-piece of time domain discrete coded data sample value is undertaken by specific 12 kinds of generate patterns add, subtract, conjugate operation is handled and synthetic again; Have periodic time domain in the signal frame of multi-media radio broadcast signal transmission machine and embed training sequence discrete sample block; The length X of the training sequence of multi-media radio broadcast signal transmission machine is in 512,1024,2048, the length K of corresponding FFT data block is respectively 2048,4096,8192, the frequency interval of corresponding subcarrier is respectively 4KHz, 2KHz, 1KHz, and corresponding circulating prefix-length C is respectively 1/4,1/8,1/16 of FFT data block length K size; The training sequence of multi-media radio broadcast signal transmission machine, operational indicator sequence are formed by a series of 1 or-1, have pseudo-random characteristics; Training sequence, the operational indicator sequence of multi-media radio broadcast signal transmission machine have orthogonality each other; Each different operational indicator sequence of multi-media radio broadcast signal transmission machine is comprising and unique each system parameters and business model information of expressing multi-media radio broadcast signal transmission machine; The serially concatenated multi code Rate of Chinese character is deleted surplus convolutional encoding and is deleted surplus forming by two convolutional encodings by the random interleaving serially concatenated, and the encoding rate that the serially concatenated multi code Rate of Chinese character is deleted surplus convolutional encoding is in 1/4,4/9,3/8,7/16 and 5/9.
Characteristics of the present invention:
The present invention is the framing modulation scheme that a kind of time-domain and frequency-domain mixes.Generate pattern of falling peak-to-average power ratio time domain discrete coded data sample value piece of the present invention and have a minimum peak-to-average power ratio peak-to-average power ratio time domain discrete coded data sample value piece choosing method falls, but the very high big peak power signal probability of the maximum peak power that not only can make full use of ofdm signal is very low, the real part (or imaginary part) of the ofdm signal when number of sub carrier wave is big is the characteristic of multiple Gaussian random process and whose amplitude obeys Rayleigh distribution, the amount of information of the required extra transmission of being adopted of generate pattern is little, be easy to handle the primary signal of recovering to obtain ofdm signal at receiver end, the orthogonal property that can not destroy sub-carrier signal simultaneously can not produce extra nonlinear distortion yet.Have periodic time domain in the signal frame of multi-media radio broadcast signal transmission machine and embed training sequence discrete sample block, the training sequence of multi-media radio broadcast signal transmission machine, the operational indicator sequence has pseudo-random characteristics, the training sequence of multi-media radio broadcast signal transmission machine, the operational indicator sequence has orthogonality each other, it is by falling peak-to-average power ratio time domain discrete coded data sample value piece that peak-to-average power ratio time domain discrete coded data sample value piece falls in the time domain embedding training sequence of multi-media radio broadcast signal transmission machine, time domain embeds training sequence discrete sample block and directly superposes and form, and these have guaranteed that the multi-media radio broadcast signal receiver can realize frame synchronization fast and accurately, Frequency Synchronization, time synchronized, channel transfer characteristic is estimated, and phase noise and channel transfer characteristic reliably followed the tracks of.Cyclic Prefix is inserted time domain embedding training sequence at interval as protection fall peak-to-average power ratio time domain discrete coded data sample value piece, can reduce the interference effect between the adjacent signals frame to form signal frame.Adopting the serial multi code Rate of Chinese character to delete surplus convolutional encoding carries out chnnel coding to the input data error-correcting performance near shannon limit is provided.Each different operational indicator sequence of multi-media radio broadcast signal transmission machine is comprising and unique each system parameters and business model information of expressing multi-media radio broadcast signal transmission machine, digital TV multimedia radio transmission system can satisfy social needs so that can provide may command multi-services such as free television broadcasting, paid television broadcasting, security information transmission, multimedia value-added service.Framing modulator approach of the present invention has the equal power ratio of ebb, lock in time is short, clock jitter is little, anti-channel fading, anti-channel disturbance, can provide plurality of advantages such as High Data Rate may command multi-service digital TV multimedia radio transmission.
Description of drawings
Fig. 1 is the embodiment schematic diagram according to certain transmitter of multi-media radio broadcast singal framing modulator approach of the present invention.
Fig. 2 is the embodiment schematic diagram that forms signal frame according to certain transmitter of multi-media radio broadcast singal framing modulator approach of the present invention.
Embodiment
Below in conjunction with accompanying drawing specific embodiments of the invention are described in detail.
The embodiment of certain transmitter of the multi-media radio broadcast singal framing modulator approach that proposes according to the present invention as shown in Figure 1, follows these steps to carry out:
1) this certain multi-media radio broadcast signal transmission machine is deleted the input data bit of oneself the serially concatenated multi code Rate of Chinese character of flowing through surplus convolutional encoding form the FFT coded data block on frequency domain, and FFT represents the fast discrete Fourier conversion, and the length of FFT coded data block is K; The serially concatenated multi code Rate of Chinese character is deleted surplus convolutional encoding and is deleted surplus forming by two convolutional encodings by the random interleaving serially concatenated, and the encoding rate that the serially concatenated multi code Rate of Chinese character is deleted surplus convolutional encoding is in 1/4,4/9,3/8,7/16 and 5/9;
2) this certain multi-media radio broadcast signal transmission machine adopts IFFT that the FFT coded data block is transformed to time domain discrete coded data sample value piece D Total, IFFT represents the fast discrete Fourier inverse transformation;
3) this certain multi-media radio broadcast signal transmission machine is divided equally into two with time domain discrete coded data sample value piece in order, the sub-piece D of time domain discrete coded data sample value 1With the sub-piece D of time domain discrete coded data sample value 2, D Total=[D 1, D 2];
4) this certain multi-media radio broadcast signal transmission machine passes through the peak-to-average power ratio adjustment unit to the sub-piece D of time domain discrete coded data sample value 1, the sub-piece D of time domain discrete coded data sample value 2Carry out that signal adds, subtracts, conjugate operation is handled and synthetic again new time domain discrete coded data sample value piece D New, new time domain discrete coded data sample value piece D NewAdopt following generate pattern to obtain, generate pattern 1 is D New=[D 1, D 2], generate pattern 2 is D new = [ D 1 , 1 / 2 ( D 1 + D 2 ) ] , Generate pattern 3 is D new = [ D 1 , 1 / 2 ( D 1 - D 2 ) ] , Generate pattern 4 is D new = [ 1 / 2 ( D 1 + D 2 ) , D 2 ] , Generate pattern 5 is D new = [ 1 / 2 ( D 1 - D 2 ) , D 2 ] , Generate pattern 6 is D new = [ 1 / 2 ( D 1 + D 2 ) , 1 / 2 ( D 1 - D 2 ) ] , Generate pattern 7 is D New=[D * 1, D 2], generate pattern 8 is D new = [ D * 1 , 1 / 2 ( D * 1 + D 2 ) ] , Generate pattern 9 is D new = [ D * 1 , 1 / 2 ( D * 1 - D 2 ) ] , Generate pattern 10 is D new = [ 1 / 2 ( D * 1 + D 2 ) , D 2 ] , Generate pattern 11 is D new = [ 1 / 2 ( D * 1 - D 2 ) , D 2 ] , Generate pattern 12 is D new = [ 1 / 2 ( D * 1 + D 2 ) , 1 / 2 ( D * 1 - D 2 ) ] , Compare the synthetic time domain discrete coded data sample value piece D of 12 kinds of generate patterns New, choose wherein have a minimum peak-to-average power ratio peak-to-average power ratio time domain discrete coded data sample value piece falls
Figure BSA000005642170000511
And peak-to-average power ratio time domain discrete coded data sample value piece will fall
Figure BSA000005642170000512
The corresponding generate pattern information that adopts send to the operational indicator sequence unit be set, wherein, D * 1Expression is to the sub-piece D of time domain discrete coded data sample value 1Each time domain discrete coded data sample value carry out that conjugate operation is handled and the sub-piece of time domain discrete coded data sample value that obtains;
5) this certain multi-media radio broadcast signal transmission machine is with the real part sequence of training sequence as sequence of plural training, the operational indicator sequence is provided with the imaginary part sequence of the set operational indicator sequence in unit as sequence of plural training, on time domain, constitute the discrete sample block of sequence of plural training, training sequence, the operational indicator sequence, the length of the discrete sample block of sequence of plural training all is X, the operational indicator sequence is comprising and unique each system parameters and business model information of expressing multi-media radio broadcast signal transmission machine, and X gets 512,1024, in 2048 one;
6) this certain multi-media radio broadcast signal transmission machine will repeat 4 times continuously and form time domain embedding training sequence discrete sample block on time domain in the discrete sample block of the sequence of plural training that constitutes on the time domain, time domain embeds the length and the length numerically equal of falling peak-to-average power ratio time domain discrete coded data sample value piece, i.e. K=4 * X of training sequence discrete sample block; When X got 512, K got 2048, and the frequency interval of corresponding subcarrier is got 4KHz; When X got 1024, K got 4096, and the frequency interval of corresponding subcarrier is got 2KHz; When X got 2048, K got 8192, and the frequency interval of corresponding subcarrier is got 1KHz;
7) this certain multi-media radio broadcast signal transmission machine will fall peak-to-average power ratio time domain discrete coded data sample value piece, time domain and embed training sequence discrete sample block and directly superpose and form time domain and embed training sequence and fall peak-to-average power ratio time domain discrete coded data sample value piece, as frame;
8) this certain multi-media radio broadcast signal transmission machine at interval is that frame head inserts time domain and embeds training sequence to fall peak-to-average power ratio time domain discrete coded data sample value piece be frame with Cyclic Prefix as protection, and to form signal frame, the length of Cyclic Prefix is C; When X got 512, C got 1/4 of K size; When X got 1024, C got 1/8 of K size; When X got 2048, C got 1/16 of K size;
9) this certain multi-media radio broadcast signal transmission machine adopts square root raised cosine filter that the signal pulse of signal frame is shaped;
10) this certain multi-media radio broadcast signal transmission machine with the baseband signal up-conversion to carrier wave.
Form the embodiment of signal frame according to certain transmitter of multi-media radio broadcast singal framing modulator approach of the present invention, as shown in Figure 2, specifically implement as follows:
This certain multi-media radio broadcast signal transmission machine is deleted the input data bit of oneself the serially concatenated multi code Rate of Chinese character of flowing through surplus convolutional encoding form the FFT coded data block on frequency domain, through IFFT it is transformed to the discrete coded data sample value piece of time domain again, generates by the peak-to-average power ratio adjustment unit and choose the peak-to-average power ratio time domain discrete coded data sample value piece that falls that wherein has minimum peak-to-average power ratio and simultaneously the generate pattern information of the corresponding employing of institute is sent to the operational indicator sequence unit is set; The serially concatenated multi code Rate of Chinese character is deleted surplus convolutional encoding and is deleted surplus forming by two convolutional encodings by the random interleaving serially concatenated, and the encoding rate that the serially concatenated multi code Rate of Chinese character is deleted surplus convolutional encoding is in 1/4,4/9,3/8,7/16 and 5/9.
The FFT data block is made up of subcarrier.The length of FFT data block is K; When X got 512, corresponding K got 2048, and the frequency interval of corresponding subcarrier is got 4KHz; When X got 1024, corresponding K got 4096, and the frequency interval of corresponding subcarrier is got 2KHz; When X got 2048, corresponding K got 8192, and the frequency interval of corresponding subcarrier is got 1KHz.
This certain multi-media radio broadcast signal transmission machine with training sequence as the real part sequence of sequence of plural training, with the imaginary part sequence of operational indicator sequence as sequence of plural training, on time domain, constitute the discrete sample block of sequence of plural training, on time domain, it is repeated 4 times continuously again and form time domain embedding training sequence discrete sample block.The length of the discrete sample block of training sequence, operational indicator sequence, sequence of plural training all is X, and X gets in 512,1024,2048, and the length that time domain embeds training sequence discrete sample block is K, K=4 * X.
Training sequence, operational indicator sequence as multi-media radio broadcast signal transmission machine are formed by a series of 1 or-1, have pseudo-random characteristics, and training sequence, operational indicator sequence have orthogonality each other.The training sequence that satisfies above-mentioned feature can be by realizing as one group of displacement m sequence of a kind of specific type of pseudo-random number sequence with as the walsh sequence of orthogonal sequence, Hadamard sequences or by the orthogonal sequence that other modes produce.Each different operational indicator sequence is comprising and unique each system parameters and business model information of expressing multi-media radio broadcast signal transmission machine.
This certain multi-media radio broadcast signal transmission machine will fall peak-to-average power ratio time domain discrete coded data sample value piece, time domain and embed training sequence discrete sample block and directly superpose and form time domain and embed training sequence and fall peak-to-average power ratio time domain discrete coded data sample value piece, as frame; Embed training sequence in time domain and fall and insert Cyclic Prefix in the peak-to-average power ratio time domain discrete coded data sample value piece at interval, form signal frame as protection.Length as protection Cyclic Prefix at interval is C; When X got 512, corresponding C got 1/4 of K size; When X got 1024, corresponding C got 1/8 of K size; When X got 2048, corresponding C got 1/16 of K size.
This certain multi-media radio broadcast signal transmission machine adopts square root raised cosine filter that the signal of signal frame is carried out pulse shaping.When X got 512, the rolloff-factor that corresponding signal to signal frame carries out the square root raised cosine filter of pulse shaping got 0.1; When X got 1024, the rolloff-factor that corresponding signal to signal frame carries out the square root raised cosine filter of pulse shaping got 0.05; When X got 2048, the rolloff-factor that corresponding signal to signal frame carries out the square root raised cosine filter of pulse shaping got 0.025.
In conjunction with the accompanying drawings specific embodiments of the invention are had been described in detail above, but the present invention is not limited to the foregoing description, under the spirit and scope situation of the claim that does not break away from the application, those skilled in the art can make various modifications or remodeling.

Claims (7)

1. a multi-media radio broadcast singal framing modulator approach is characterized in that it comprises the following steps:
1) multi-media radio broadcast signal transmission machine is deleted the input data bit of oneself the serially concatenated multi code Rate of Chinese character of flowing through surplus convolutional encoding form the FFT coded data block on frequency domain, and FFT represents the fast discrete Fourier conversion, and the length of FFT coded data block is K;
2) multi-media radio broadcast signal transmission machine adopts IFFT that the FFT coded data block is transformed to time domain discrete coded data sample value piece D Total, IFFT represents the fast discrete Fourier inverse transformation;
3) multi-media radio broadcast signal transmission machine is divided equally into two with time domain discrete coded data sample value piece in order, the sub-piece D of time domain discrete coded data sample value 1With the sub-piece D of time domain discrete coded data sample value 2, D Total=[D 1, D 2];
4) multi-media radio broadcast signal transmission machine passes through the peak-to-average power ratio adjustment unit to the sub-piece D of time domain discrete coded data sample value 1, the sub-piece D of time domain discrete coded data sample value 2Carry out that signal adds, subtracts, conjugate operation is handled and synthetic again new time domain discrete coded data sample value piece D New, new time domain discrete coded data sample value piece D NewAdopt following generate pattern to obtain, generate pattern 1 is D New=[D 1, D 2], generate pattern 2 is D new = [ D 1 , 1 / 2 ( D 1 + D 2 ) ] , Generate pattern 3 is D new = [ D 1 , 1 / 2 ( D 1 - D 2 ) ] , Generate pattern 4 is D new = [ 1 / 2 ( D 1 + D 2 ) , D 2 ] , Generate pattern 5 is D new = [ 1 / 2 ( D 1 - D 2 ) , D 2 ] , Generate pattern 6 is D new = [ 1 / 2 ( D 1 + D 2 ) , 1 / 2 ( D 1 - D 2 ) ] , Generate pattern 7 is D New=[D * 1, D 2], generate pattern 8 is D new = [ D * 1 , 1 / 2 ( D * 1 + D 2 ) ] , Generate pattern 9 is D new = [ D * 1 , 1 / 2 ( D * 1 - D 2 ) ] , Generate pattern 10 is D new = [ 1 / 2 ( D * 1 + D 2 ) , D 2 ] , Generate pattern 11 is D new = [ 1 / 2 ( D * 1 - D 2 ) , D 2 ] , Generate pattern 12 is D new = [ 1 / 2 ( D * 1 + D 2 ) , 1 / 2 ( D * 1 - D 2 ) ] , Compare the synthetic time domain discrete coded data sample value piece D of 12 kinds of generate patterns New, choose wherein have a minimum peak-to-average power ratio peak-to-average power ratio time domain discrete coded data sample value piece falls
Figure FSA000005642169000111
And peak-to-average power ratio time domain discrete coded data sample value piece will fall The corresponding generate pattern information that adopts send to the operational indicator sequence unit be set, wherein, D * 1Expression is to the sub-piece D of time domain discrete coded data sample value 1Each time domain discrete coded data sample value carry out that conjugate operation is handled and the sub-piece of time domain discrete coded data sample value that obtains;
5) multi-media radio broadcast signal transmission machine with training sequence as the real part sequence of sequence of plural training, the operational indicator sequence is provided with the imaginary part sequence of the set operational indicator sequence in unit as sequence of plural training, on time domain, constitute the discrete sample block of sequence of plural training, the length of the discrete sample block of training sequence, operational indicator sequence, sequence of plural training all is X, and the operational indicator sequence is comprising and unique each system parameters and business model information of expressing multi-media radio broadcast signal transmission machine;
6) multi-media radio broadcast signal transmission machine will repeat 4 times continuously and form time domain embedding training sequence discrete sample block on time domain in the discrete sample block of the sequence of plural training that constitutes on the time domain, time domain embeds the length and the length numerically equal of falling peak-to-average power ratio time domain discrete coded data sample value piece, i.e. K=4 * X of training sequence discrete sample block;
7) multi-media radio broadcast signal transmission machine will fall peak-to-average power ratio time domain discrete coded data sample value piece, time domain and embed training sequence discrete sample block and directly superpose and form time domain and embed training sequence and fall peak-to-average power ratio time domain discrete coded data sample value piece, as frame;
8) multi-media radio broadcast signal transmission machine at interval is that frame head inserts time domain and embeds training sequence to fall peak-to-average power ratio time domain discrete coded data sample value piece be frame with Cyclic Prefix as protection, and to form signal frame, the length of Cyclic Prefix is C;
9) multi-media radio broadcast signal transmission machine adopts square root raised cosine filter that the signal pulse of signal frame is shaped;
10) multi-media radio broadcast signal transmission machine with the baseband signal up-conversion to carrier wave.
2. by the multi-media radio broadcast singal framing modulator approach of claim 1, it is characterized in that: the length X of the discrete sample block of the training sequence of described multi-media radio broadcast signal transmission machine, operational indicator sequence, sequence of plural training is got in 512,1024,2048.
3. by the multi-media radio broadcast singal framing modulator approach of claim 2, it is characterized in that: described training sequence, operational indicator sequence are formed by a series of 1 or-1, have pseudo-random characteristics.
4. by the multi-media radio broadcast singal framing modulator approach of claim 2, it is characterized in that: described training sequence, operational indicator sequence have orthogonality each other.
5. by the multi-media radio broadcast singal framing modulator approach of claim 1, it is characterized in that: described FFT data block is made up of subcarrier; When X got 512, sub-carrier number got 2048, and the frequency interval of subcarrier is got 4KHz; When X got 1024, sub-carrier number got 4096, and the frequency interval of subcarrier is got 2KHz; When X got 2048, sub-carrier number got 8192, and the frequency interval of subcarrier is got 1KHz.
6. by the multi-media radio broadcast singal framing modulator approach of claim 1, it is characterized in that: the length C value of described Cyclic Prefix is relevant with the X value; When X got 512, C got 1/4 of K size; When X got 1024, C got 1/8 of K size; When X got 2048, C got 1/16 of K size.
7. press the multi-media radio broadcast singal framing modulator approach of claim 1, it is characterized in that: described serially concatenated multi code Rate of Chinese character is deleted surplus convolutional encoding and is deleted surplus forming by two convolutional encodings by the random interleaving serially concatenated, and the encoding rate that the serially concatenated multi code Rate of Chinese character is deleted surplus convolutional encoding is in 1/4,4/9,3/8,7/16 and 5/9.
CN 201110250379 2011-08-22 2011-08-22 Method for modulating framing of multimedia wireless broadcast signals Expired - Fee Related CN102263761B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201110250379 CN102263761B (en) 2011-08-22 2011-08-22 Method for modulating framing of multimedia wireless broadcast signals

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201110250379 CN102263761B (en) 2011-08-22 2011-08-22 Method for modulating framing of multimedia wireless broadcast signals

Publications (2)

Publication Number Publication Date
CN102263761A true CN102263761A (en) 2011-11-30
CN102263761B CN102263761B (en) 2013-06-12

Family

ID=45010220

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201110250379 Expired - Fee Related CN102263761B (en) 2011-08-22 2011-08-22 Method for modulating framing of multimedia wireless broadcast signals

Country Status (1)

Country Link
CN (1) CN102263761B (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103763244A (en) * 2014-01-13 2014-04-30 宁波大学 Framing modulation method for multimedia wireless broadcast signals

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1567763A (en) * 2003-07-09 2005-01-19 北京三星通信技术研究有限公司 Method and apparatus for reducing peak-to-average ratio of OFDM system using pilot frequency symbol sequence
CN1885846A (en) * 2006-05-22 2006-12-27 北京北方烽火科技有限公司 Orthogonal frequency-division multiplexing system and selective mapping transmitting and receiving method
CN101005478A (en) * 2007-01-18 2007-07-25 西安电子科技大学 Matrix block interveaving method and device for reducing OFDM system peak-to-average power ratio
CN101103570A (en) * 2004-12-02 2008-01-09 新泽西理工学院 Method and/or system for reduction of papr
KR20100064665A (en) * 2008-12-05 2010-06-15 엘지이노텍 주식회사 Apparatus for papr reduction and method for operating the same
CN101785227A (en) * 2007-08-14 2010-07-21 Lg电子株式会社 Peak to average power ratio reduction

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1567763A (en) * 2003-07-09 2005-01-19 北京三星通信技术研究有限公司 Method and apparatus for reducing peak-to-average ratio of OFDM system using pilot frequency symbol sequence
CN101103570A (en) * 2004-12-02 2008-01-09 新泽西理工学院 Method and/or system for reduction of papr
CN1885846A (en) * 2006-05-22 2006-12-27 北京北方烽火科技有限公司 Orthogonal frequency-division multiplexing system and selective mapping transmitting and receiving method
CN101005478A (en) * 2007-01-18 2007-07-25 西安电子科技大学 Matrix block interveaving method and device for reducing OFDM system peak-to-average power ratio
CN101785227A (en) * 2007-08-14 2010-07-21 Lg电子株式会社 Peak to average power ratio reduction
KR20100064665A (en) * 2008-12-05 2010-06-15 엘지이노텍 주식회사 Apparatus for papr reduction and method for operating the same

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
刘明珠等: "基于PTS级联抵消的峰均比抑制性能仿真", 《系统仿真学报》 *

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103763244A (en) * 2014-01-13 2014-04-30 宁波大学 Framing modulation method for multimedia wireless broadcast signals

Also Published As

Publication number Publication date
CN102263761B (en) 2013-06-12

Similar Documents

Publication Publication Date Title
CN102255862B (en) Method for transmitting digital mobile broadcast signal
CN102307170B (en) Anti-interference wireless multimedia mobile broadcast signal framing modulation method
CN102263739A (en) Anti-noise digital broadcast wireless signal transmitting method
CN102299890B (en) Multimedia broadcasting wireless signal anti-interference framing modulation method
CN102244639A (en) Method for framing and modulating wireless multimedia broadcast signals
CN102255699B (en) Method for framing and modulating anti-fading wireless multimedia broadcast signals
CN102307171B (en) Anti-interference wireless multimedia broadcast signal framing modulation method
CN102281231B (en) Multimedia broadcast mobile signal anti-interference framing modulation method
CN102291356B (en) Digital radio broadcast signal transmission method
CN102271116A (en) Anti-fading multimedia wireless broadcast signal framing modulation method
CN102271118B (en) Robust multimedia wireless broadcast signal framing modulation method
CN102263760B (en) Anti-noise multimedia wireless broadcast signal framing modulation method
CN102281237B (en) Mobile multimedia broadcast signal framing modulation method
CN102255849B (en) Robust method for framing and modulating wireless multimedia broadcast signal
CN102271117B (en) Anti-interference multimedia wireless broadcast signal framing modulation method
CN102281233B (en) Multimedia broadcast mobile signal framing modulation method
CN102281232B (en) Multimedia broadcast mobile signal anti-noise framing modulation method
CN102263761B (en) Method for modulating framing of multimedia wireless broadcast signals
CN102281241B (en) Multimedia mobile broadcast signal framing modulation method
CN102307169B (en) Multimedia broadcast wireless signal noise-immune framing modulation method
CN102281235B (en) Anti-interference method for modulating mobile multimedia broadcast signal by framing
CN102291358A (en) Robust multi-media mobile broadcast signal framing modulation method
CN102281236B (en) Anti-noise mobile multimedia broadcast signal framing modulation method
CN102281238B (en) Anti-fading method for transmitting digital wireless broadcast signal
CN102291357B (en) Anti-fading multimedia mobile broadcast signal framing modulation method

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CB03 Change of inventor or designer information

Inventor after: Liu Fumin

Inventor after: Wang Junfeng

Inventor before: Zheng Ziwei

Inventor before: Xu Tiefeng

Inventor before: Nie Qiuhua

Inventor before: He Jiaming

CB03 Change of inventor or designer information
TR01 Transfer of patent right

Effective date of registration: 20170927

Address after: 300000, Tianjin Binhai New Area, Hangu one road perfume Bay Garden 11-3-1101

Co-patentee after: Wang Junfeng

Patentee after: Liu Fumin

Address before: 102600, room 2, building 2212, pop Center, Xinghua street, Beijing, Daxing District

Patentee before: Beijing Yong Bo Technology Co.,Ltd.

Effective date of registration: 20170927

Address after: 102600, room 2, building 2212, pop Center, Xinghua street, Beijing, Daxing District

Patentee after: Beijing Yong Bo Technology Co.,Ltd.

Address before: 315211 Zhejiang Province, Ningbo Jiangbei District Fenghua Road No. 818

Patentee before: Ningbo University

TR01 Transfer of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20130612

Termination date: 20180822

CF01 Termination of patent right due to non-payment of annual fee