CN103763282A - Wireless multimedia broadcast signal framing modulation method - Google Patents

Wireless multimedia broadcast signal framing modulation method Download PDF

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CN103763282A
CN103763282A CN201410023909.9A CN201410023909A CN103763282A CN 103763282 A CN103763282 A CN 103763282A CN 201410023909 A CN201410023909 A CN 201410023909A CN 103763282 A CN103763282 A CN 103763282A
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time domain
data sample
discrete data
broadcast signal
block
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郑紫微
刘哲
何晨晖
熊欧
吴明昊
潘洋
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Ningbo University
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Ningbo University
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Abstract

The invention discloses a wireless multimedia broadcast signal framing modulation method and relates to a framing modulation scheme with the time domain and the frequency domain mixed. Through the training sequence optimization design, the signal generating mode and the signal selecting method of the wireless multimedia broadcast signal framing modulation method, original signals of OFDM signals can be obtained easily through processing and restoration at a receiver end, and the wireless multimedia broadcast signal framing modulation method has the advantages of being low in peek-to-average power ratio, short in synchronization time, resistant to channel fading, capable of controlling multiple services and the like.

Description

Wireless multi-media broadcast signal framing modulator approach
Technical field
The invention belongs to wireless communication field, relate more specifically to a kind of wireless multi-media broadcast signal framing modulator approach.
Background technology
At present, television broadcasting is from simulating gradually to digitlization future development.Digital Television radio multimedium broadcast transmission system, as the important component part of Digital Television radio multimedium broadcast, the development of its correlation technique, closely bound up with people's quality of life, and be therefore subject to people's extensive concern especially.Digital Television radio multimedium broadcast correlation technique and related industry thereof are that in Communications And Computer field, development is very fast, the industry of good market prospect.In Digital Television radio multimedium broadcast correlation technique, the emphasis that various countries pay close attention to is at present that the Digital Television radio multimedium broadcast how to pass under environment for complex wave provides the implementation of reliable high-speed mobile cheaply.Wireless multi-media broadcast signal transmitter framing modulation technique is the key technology of Digital Television wireless multimedia broadcasting system, for whole system performance, plays conclusive effect, is the object of everybody primary study.
Due to the develop rapidly of Digital Signal Processing and integrated circuit technique, the system of OFDM (OFDM) technology realizes and becomes more and more easier.Because OFDM Multicarrier Transmission Technology has simple in structure, the availability of frequency spectrum is high, the plurality of advantages such as in the time of can resisting frequency selectivity and channel, becomes and extremely everybody concern obtain deep research and the extensive use in the numerous areas such as Xdsl, wide-band mobile communication, wideband wireless local area network, the broadcast of Digital Television radio multimedium.
The peak-to-average power ratio (PAPR) that ofdm signal is higher has very high requirement to the range of linearity of amplifier and digital to analog converter, if system linearity scope can not meet the variation of signal, can cause signal distortion, signal spectrum is changed, thereby cause the orthogonality between subchannel to be destroyed, produce phase mutual interference, make system performance degradation.Therefore the solution that, must consider how to reduce the probability of occurrence of large peak power signal in ofdm signal and reduce nonlinear distortion impact.
In practical communication environment, Digital Television radio multimedium broadcast communication system performance is subject to the impact of the factors such as lock in time, clock jitter, channel fading, channel disturbance.Wireless multi-media broadcast signal transmitter framing modulator approach is to realize the key technology of reliable digit tv wireless multimedia broadcasting.
Utilizing Digital Television radio multimedium broadcast transmission system to provide free television broadcasting, paid television broadcasting, Secret Information Transmission, multimedia value-added service etc. can control multi-service is the embodiment that new-generation digital tv wireless multimedia broadcast transmission system satisfies social needs.
Based on above background, the present invention is directed to practical communication environment and propose a kind of wireless multi-media broadcast signal framing modulator approach just, can meet High Data Rate and can control the needs of multi-service Digital Television radio multimedium broadcasting transmitting.
Wish is done more deep understanding to 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?Issue?on?Global?Digital?Television:Technology?and?Emerging?Services,pp.37-43,Jan.2006.
U.Ladebusch?and?C.A.Liss.“Terrestrial?DVB(DVB-T):A?broadcast?technology?for?stationary?portable?and?mobile?use,”Proceedings?of?the?IEEE,Special?Issue?on?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.
Summary of the invention
The present invention is directed to High Data Rate and can control multi-service Digital Television radio multimedium broadcast issue, proposed a kind of wireless multi-media broadcast signal framing modulator approach.
A kind of wireless multi-media broadcast signal framing modulator approach that the present invention proposes, is characterized in that it comprises the following steps:
1) wireless multi-media broadcast signal transmitter forms FFT data block by the input data bit flow of oneself on frequency domain, and the length of FFT data block is K, and the numerical value of K is got even number;
2) wireless multi-media broadcast signal transmitter adopts IFFT that FFT data block is transformed to time domain discrete data sample block D total=[d 0, d 1..., d k-2, d k-1];
3) wireless multi-media broadcast signal transmitter separates successively and generates the strange sub-block D of time domain discrete data sample by time domain discrete data sample block demultiplexing and according to the sequencing odd even of each time domain discrete data sample very=[d 0, d 2..., d k-4, d k-2] and the even sub-block D of time domain discrete data sample even=[d 1, d 3..., d k-3, d k-1];
4) wireless multi-media broadcast signal transmitter passes through peak-to-average power ratio adjustment unit to the strange sub-block D of time domain discrete data sample very, the even sub-block D of time domain discrete data sample evencarry out signal power adjustment and corresponding signal and process also synthetic new time domain discrete data sample block D again new, new time domain discrete data sample block D newadopt following generate pattern to obtain, generate pattern 1 is D new=[D very, D even], generate pattern 2 is
Figure BSA0000100545460000021
generate pattern 3 is
Figure BSA0000100545460000022
generate pattern 4 is
Figure BSA0000100545460000023
generate pattern 5 is
Figure BSA0000100545460000024
generate pattern 6 is
Figure BSA0000100545460000025
generate pattern 7 is D new=[D * very, D even], generate pattern 8 is
Figure BSA0000100545460000031
generate pattern 9 is
Figure BSA0000100545460000032
generate pattern 10 is
Figure BSA0000100545460000033
generate pattern 11 is
Figure BSA0000100545460000034
generate pattern 12 is
Figure BSA0000100545460000035
generate pattern 13 is D new=[D very, D * even], generate pattern 14 is
Figure BSA0000100545460000036
generate pattern 15 is generate pattern 16 is
Figure BSA0000100545460000038
generate pattern 17 is
Figure BSA0000100545460000039
generate pattern 18 is
Figure BSA00001005454600000310
relatively 18 kinds of time domain discrete data sample block D that generate pattern is synthetic new, choose wherein there is minimum peak-to-average power ratio peak-to-average power ratio time domain discrete data sample block falls
Figure BSA00001005454600000311
and peak-to-average power ratio time domain discrete data sample block will be fallen
Figure BSA00001005454600000312
the corresponding generate pattern information adopting send to operational indicator sequence setting unit, wherein, D * veryexpression is to the strange sub-block D of time domain discrete data sample veryeach time domain discrete data sample carry out conjugate operation processing and the time domain discrete data sample sub-block that obtains; D * evenexpression is to the even sub-block D of time domain discrete data sample eveneach time domain discrete data sample carry out conjugate operation processing and the time domain discrete data sample sub-block that obtains;
5) wireless multi-media broadcast signal transmitter Insert service index series after training sequence forms time domain embedding training sequence discrete sample block in time domain, and operational indicator sequence is comprising and unique each system parameters and business model information of expressing wireless multi-media broadcast signal transmitter; Time domain embeds the length and the length numerically equal of falling peak-to-average power ratio time domain discrete data sample block of training sequence discrete sample block;
6) wireless multi-media broadcast signal transmitter will fall peak-to-average power ratio time domain discrete data sample block, 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 data sample block, as frame;
7) wireless multi-media broadcast signal transmitter is that frame head inserts time domain and embeds training sequence to fall peak-to-average power ratio time domain discrete data sample block be frame using Cyclic Prefix as protection interval, and to form signal frame, the length of Cyclic Prefix is C;
8) wireless multi-media broadcast signal transmitter adopts square root raised cosine filter to be shaped to the signal pulse of signal frame;
9) wireless multi-media broadcast signal transmitter by baseband signal up-conversion to carrier wave.
According to above-mentioned wireless multi-media broadcast signal framing modulator approach, it is characterized in that: wireless multi-media broadcast signal transmitter peak-to-average power ratio time domain discrete data sample block is fallen by time domain discrete data sample block demultiplexing and separate successively the strange sub-block of time domain discrete data sample of generation and the even sub-block of time domain discrete data sample according to the sequencing odd even of each time domain discrete data sample and carry out signal power adjustment and corresponding signal and process and pass through 18 kinds of generate patterns of particular design and again synthesize; The training sequence of wireless multi-media broadcast signal transmitter is comprised of the first training sequence and the second training sequence; The Cyclic Prefix that the first training sequence is G by each symbol new sequence that alternately insertion produces and the length thereof of permanent envelope zero auto-correlation CAZAC sequence B and pseudorandom PN sequence A forms; The second training sequence is by permanent envelope zero auto-correlation CAZAC sequence-B *with pseudorandom PN sequence A *each symbol alternately insert the Cyclic Prefix composition that the new sequence that produces and length thereof are G; B *expression is carried out conjugate operation processing, A to each symbol of B *expression is carried out conjugate operation processing to each symbol of A, and B has identical symbol lengths L with A; The circulating prefix-length G of the first training sequence and the second training sequence be the first training sequence and the second training sequence symbol lengths L 1/8; The circulating prefix-length C of wireless multi-media broadcast signal transmitter signal frame is 1/16 of FFT data block length K; The operational indicator sequence of wireless multi-media broadcast signal transmitter has pseudo-random characteristics, by one group of Phase shift m sequence, is realized; Each different operational indicator sequence of wireless multi-media broadcast signal transmitter is comprising and unique each system parameters and business model information of expressing wireless multi-media broadcast signal transmitter; The FFT data block of wireless multi-media broadcast signal transmitter is comprised of subcarrier, and the frequency interval of subcarrier is got the one in 2KHz, 4KHz, 1KHz.
Feature of the present invention:
The present invention is the framing modulation scheme that a kind of time-domain and frequency-domain mixes.Time domain discrete data sample block demultiplexing of the present invention also separates successively and generates the strange sub-block of time domain discrete data sample and the even sub-block of time domain discrete data sample and the corresponding signal power adjustment of carrying out and signal processing according to the sequencing odd even of each time domain discrete data sample, what by particular design 18 kinds fell the generate pattern of peak-to-average power ratio time domain discrete data sample block and had a minimum peak-to-average power ratio falls peak-to-average power ratio time domain discrete data sample block choosing method, but the very high large peak power signal probability of the maximum peak power that not only can make full use of ofdm signal is very low, the power regularity of distribution that the characteristic that the real part (or imaginary part) of the ofdm signal when number of sub carrier wave is larger is multiple Gaussian random process and whose amplitude obeys Rayleigh distribution and then low complex degree ground effectively change over frame signal reaches the object that reduces peak-to-average power ratio, the amount of information of the required extra transmission of generate pattern adopting is little, be easy to process at receiver end the primary signal of recovering to obtain ofdm signal, the orthogonal property that can not destroy sub-carrier signal simultaneously can not produce extra nonlinear distortion yet.Training sequence in the signal frame of wireless multi-media broadcast signal transmitter is obtained through certain optimisation design by permanent envelope zero auto-correlation CAZAC sequence and pseudorandom PN sequence, it is by falling peak-to-average power ratio time domain discrete data sample block that peak-to-average power ratio time domain discrete data sample block falls in the time domain embedding training sequence of wireless multi-media broadcast signal transmitter, time domain embeds training sequence discrete sample block and directly superposes and form, these have guaranteed that wireless multi-media 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 are reliably followed the tracks of.Using Cyclic Prefix as protection interval, insert time domain embedding training sequence and fall peak-to-average power ratio time domain discrete data sample block to form signal frame, can reduce the interference effect between adjacent signals frame.Each different operational indicator sequence of wireless multi-media broadcast signal transmitter is comprising and unique each system parameters and business model information of expressing wireless multi-media broadcast signal transmitter, can make Digital Television radio multimedium broadcast transmission system can provide free television broadcasting, paid television broadcasting, Secret Information Transmission, multimedia value-added service etc. can control multi-service, satisfy social needs.Framing modulator approach of the present invention has low peak-to-average power ratio, lock in time is short, clock jitter is little, anti-channel fading, anti-channel disturbance, can provide High Data Rate can control the plurality of advantages such as multi-service Digital Television radio multimedium broadcasting transmitting.
Accompanying drawing explanation
Fig. 1 is according to the embodiment schematic diagram of certain transmitter of wireless multi-media broadcast signal framing modulator approach of the present invention.
Fig. 2 is according to the embodiment schematic diagram of certain transmitter signal framing modulation of wireless multi-media broadcast signal 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 wireless multi-media broadcast signal framing modulator approach proposing according to the present invention, as shown in Figure 1, follows these steps to carry out:
1) this certain wireless multi-media broadcast signal transmitter forms FFT data block by the input data bit flow of oneself on frequency domain, and the length of FFT data block is K, and the numerical value of K is got even number;
2) this certain wireless multi-media broadcast signal transmitter adopts IFFT that FFT data block is transformed to time domain discrete data sample block D total=[d 0, d 1..., d k-2, d k-1];
3) this certain wireless multi-media broadcast signal transmitter separates successively and generates the strange sub-block D of time domain discrete data sample by time domain discrete data sample block demultiplexing and according to the sequencing odd even of each time domain discrete data sample very=[d 0, d 2..., d k-4, d k-2] and the even sub-block D of time domain discrete data sample even=[d 1, d 3..., d k-3, d k-1];
4) this certain wireless multi-media broadcast signal transmitter passes through peak-to-average power ratio adjustment unit to the strange sub-block D of time domain discrete data sample very, the even sub-block D of time domain discrete data sample evencarry out signal power adjustment and corresponding signal and process also synthetic new time domain discrete data sample block D again new, new time domain discrete data sample block D newadopt following generate pattern to obtain, generate pattern 1 is D new=[D very, D even], generate pattern 2 is
Figure BSA0000100545460000051
generate pattern 3 is generate pattern 4 is
Figure BSA0000100545460000053
generate pattern 5 is
Figure BSA0000100545460000054
generate pattern 6 is
Figure BSA0000100545460000055
generate pattern 7 is D new=[D * very, D even], generate pattern 8 is
Figure BSA0000100545460000056
generate pattern 9 is
Figure BSA0000100545460000057
generate pattern 10 is
Figure BSA0000100545460000058
generate pattern 11 is
Figure BSA0000100545460000059
generate pattern 12 is generate pattern 13 is D new=[D very, D * even], generate pattern 14 is
Figure BSA0000100545460000061
generate pattern 15 is
Figure BSA0000100545460000062
generate pattern 16 is
Figure BSA0000100545460000063
generate pattern 17 is
Figure BSA0000100545460000064
generate pattern 18 is relatively 18 kinds of time domain discrete data sample block D that generate pattern is synthetic new, choose wherein there is minimum peak-to-average power ratio peak-to-average power ratio time domain discrete data sample block falls and peak-to-average power ratio time domain discrete data sample block will be fallen
Figure BSA0000100545460000067
the corresponding generate pattern information adopting send to operational indicator sequence setting unit, wherein, D * veryexpression is to the strange sub-block D of time domain discrete data sample veryeach time domain discrete data sample carry out conjugate operation processing and the time domain discrete data sample sub-block that obtains; D * evenexpression is to the even sub-block D of time domain discrete data sample eveneach time domain discrete data sample carry out conjugate operation processing and the time domain discrete data sample sub-block that obtains;
5) this certain wireless multi-media broadcast signal transmitter Insert service index series after training sequence forms time domain embedding training sequence discrete sample block in time domain, and operational indicator sequence is comprising and unique each system parameters and business model information of expressing wireless multi-media broadcast signal transmitter; Time domain embeds the length and the length numerically equal of falling peak-to-average power ratio time domain discrete data sample block of training sequence discrete sample block;
6) this certain wireless multi-media broadcast signal transmitter will fall peak-to-average power ratio time domain discrete data sample block, 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 data sample block, as frame;
7) this certain wireless multi-media broadcast signal transmitter is that frame head inserts time domain and embeds training sequence to fall peak-to-average power ratio time domain discrete data sample block be frame using Cyclic Prefix as protection interval, and to form signal frame, the length of Cyclic Prefix is C;
8) this certain wireless multi-media broadcast signal transmitter adopts square root raised cosine filter to be shaped to the signal pulse of signal frame;
9) this certain wireless multi-media broadcast signal transmitter by baseband signal up-conversion to carrier wave.
According to the embodiment of certain transmitter signal framing modulation of wireless multi-media broadcast signal framing modulator approach of the present invention, as shown in Figure 2, be specifically implemented as follows:
This certain wireless multi-media broadcast signal transmitter forms FFT data block by the input data bit flow of oneself on frequency domain, through IFFT, be transformed to again the discrete data sample block of time domain, by peak-to-average power ratio adjustment unit, generate and choose the peak-to-average power ratio time domain discrete data sample block of falling wherein with minimum peak-to-average power ratio and the generate pattern information of corresponding institute employing is sent to operational indicator sequence setting unit simultaneously.
The FFT data block of this certain wireless multi-media broadcast signal transmitter is comprised of subcarrier, and the frequency interval of subcarrier is got the one in 2KHz, 4KHz, 1KHz.
The training sequence of this certain wireless multi-media broadcast signal transmitter is comprised of the first training sequence and the second training sequence; The Cyclic Prefix that the first training sequence is G by each symbol new sequence that alternately insertion produces and the length thereof of permanent envelope zero auto-correlation CAZAC sequence B and pseudorandom PN sequence A forms; The second training sequence is by permanent envelope zero auto-correlation CAZAC sequence-B *with pseudorandom PN sequence A *each symbol alternately insert the Cyclic Prefix composition that the new sequence that produces and length thereof are G; B *expression is carried out conjugate operation processing, A to each symbol of B *expression is carried out conjugate operation processing to each symbol of A, and B has identical symbol lengths L with A; The circulating prefix-length G of the first training sequence and the second training sequence be the first training sequence and the second training sequence symbol lengths L 1/8.
This certain wireless multi-media broadcast signal transmitter Insert service index series after training sequence forms time domain and embeds training sequence discrete sample block in time domain.
The operational indicator sequence of this certain wireless multi-media broadcast signal transmitter has pseudo-random characteristics, by one group of Phase shift m sequence, is realized; Each different operational indicator sequence of this certain wireless multi-media broadcast signal transmitter is comprising and unique each system parameters and business model information of expressing wireless multi-media broadcast signal transmitter.
The time domain of this certain wireless multi-media broadcast signal transmitter embeds the length and the length numerically equal of falling peak-to-average power ratio time domain discrete data sample block of training sequence discrete sample block; This certain wireless multi-media broadcast signal transmitter will fall peak-to-average power ratio time domain discrete data sample block, 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 data sample block, as frame; This certain wireless multi-media broadcast signal transmitter is that frame head inserts time domain and embeds training sequence to fall peak-to-average power ratio time domain discrete data sample block be frame using Cyclic Prefix as protection interval, and to form signal frame, the length of Cyclic Prefix is C; The circulating prefix-length C of this certain wireless multi-media broadcast signal transmitter signal frame is 1/16 of FFT data block length K.
This certain wireless multi-media broadcast signal transmitter adopts square root raised cosine filter to carry out pulse shaping to the signal of signal frame.
By reference to the accompanying drawings specific embodiments of the invention are had been described in detail above, but the present invention is not limited to above-described embodiment, in the spirit and scope situation of claim that does not depart from the application, those skilled in the art can make various modifications or remodeling.

Claims (6)

1. a wireless multi-media broadcast signal framing modulator approach, is characterized in that it comprises the following steps:
1) wireless multi-media broadcast signal transmitter forms FFT data block by the input data bit flow of oneself on frequency domain, and the length of FFT data block is K, and the numerical value of K is got even number;
2) wireless multi-media broadcast signal transmitter adopts IFFT that FFT data block is transformed to time domain discrete data sample block D total=[d 0, d 1..., d k-2, d k-1];
3) wireless multi-media broadcast signal transmitter separates successively and generates the strange sub-block D of time domain discrete data sample by time domain discrete data sample block demultiplexing and according to the sequencing odd even of each time domain discrete data sample very=[d 0, d 2..., d k-4, d k-2] and the even sub-block D of time domain discrete data sample even=[d 1, d 3..., d k-3, d k-1];
4) wireless multi-media broadcast signal transmitter passes through peak-to-average power ratio adjustment unit to the strange sub-block D of time domain discrete data sample very, the even sub-block D of time domain discrete data sample evencarry out signal power adjustment and corresponding signal and process also synthetic new time domain discrete data sample block D again new, new time domain discrete data sample block D newadopt following generate pattern to obtain, generate pattern 1 is D new=[D very, D even], generate pattern 2 is
Figure FSA0000100545450000011
generate pattern 3 is
Figure FSA0000100545450000012
generate pattern 4 is
Figure FSA0000100545450000013
generate pattern 5 is
Figure FSA0000100545450000014
generate pattern 6 is
Figure FSA0000100545450000015
generate pattern 7 is D new=[D * very, D even], generate pattern 8 is generate pattern 9 is
Figure FSA0000100545450000017
generate pattern 10 is
Figure FSA0000100545450000018
generate pattern 11 is generate pattern 12 is generate pattern 13 is D new=[D very, D * even], generate pattern 14 is
Figure FSA00001005454500000111
generate pattern 15 is
Figure FSA00001005454500000112
generate pattern 16 is
Figure FSA00001005454500000113
generate pattern 17 is
Figure FSA00001005454500000114
generate pattern 18 is relatively 18 kinds of time domain discrete data sample block D that generate pattern is synthetic new, choose wherein there is minimum peak-to-average power ratio peak-to-average power ratio time domain discrete data sample block falls
Figure FSA0000100545450000022
and peak-to-average power ratio time domain discrete data sample block will be fallen
Figure FSA0000100545450000023
the corresponding generate pattern information adopting send to operational indicator sequence setting unit, wherein, D * veryexpression is to the strange sub-block D of time domain discrete data sample veryeach time domain discrete data sample carry out conjugate operation processing and the time domain discrete data sample sub-block that obtains; D * evenexpression is to the even sub-block D of time domain discrete data sample eveneach time domain discrete data sample carry out conjugate operation processing and the time domain discrete data sample sub-block that obtains;
5) wireless multi-media broadcast signal transmitter Insert service index series after training sequence forms time domain embedding training sequence discrete sample block in time domain, and operational indicator sequence is comprising and unique each system parameters and business model information of expressing wireless multi-media broadcast signal transmitter; Time domain embeds the length and the length numerically equal of falling peak-to-average power ratio time domain discrete data sample block of training sequence discrete sample block;
6) wireless multi-media broadcast signal transmitter will fall peak-to-average power ratio time domain discrete data sample block, 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 data sample block, as frame;
7) wireless multi-media broadcast signal transmitter is that frame head inserts time domain and embeds training sequence to fall peak-to-average power ratio time domain discrete data sample block be frame using Cyclic Prefix as protection interval, and to form signal frame, the length of Cyclic Prefix is C;
8) wireless multi-media broadcast signal transmitter adopts square root raised cosine filter to be shaped to the signal pulse of signal frame;
9) wireless multi-media broadcast signal transmitter by baseband signal up-conversion to carrier wave.
2. by the wireless multi-media broadcast signal framing modulator approach of claim 1, it is characterized in that: described training sequence is comprised of the first training sequence and the second training sequence; The Cyclic Prefix that the first training sequence is G by each symbol new sequence that alternately insertion produces and the length thereof of permanent envelope zero auto-correlation CAZAC sequence B and pseudorandom PN sequence A forms; The second training sequence is by permanent envelope zero auto-correlation CAZAC sequence-B *with pseudorandom PN sequence A *each symbol alternately insert the Cyclic Prefix composition that the new sequence that produces and length thereof are G; B *expression is carried out conjugate operation processing, A to each symbol of B *expression is carried out conjugate operation processing to each symbol of A, and B has identical symbol lengths L with A.
3. by the wireless multi-media broadcast signal framing modulator approach of claim 1, it is characterized in that: described C gets 1/16 of K.
4. by the wireless multi-media broadcast signal framing modulator approach of claim 1, it is characterized in that: described operational indicator sequence has pseudo-random characteristics, by one group of Phase shift m sequence, realized.
5. by the wireless multi-media broadcast signal framing modulator approach of claim 1, it is characterized in that: described FFT data block is comprised of subcarrier, and the frequency interval of subcarrier is got the one in 2KHz, 4KHz, 1KHz.
6. by the wireless multi-media broadcast signal framing modulator approach of claim 1, it is characterized in that: described G gets 1/8 of L.
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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050270968A1 (en) * 2004-06-02 2005-12-08 Chih-Chun Feng Method and apparatus for PAPR reduction of an OFDM signal
US20090003478A1 (en) * 2006-01-13 2009-01-01 Electronics And Telecommunications Research Method and Apparatus for Generating and Receiving Ofdm Symbol
CN102244639A (en) * 2011-08-22 2011-11-16 宁波大学 Method for framing and modulating wireless multimedia broadcast signals
CN102281230A (en) * 2011-08-22 2011-12-14 宁波大学 Multimedia broadcast mobile signal robust framing modulation method
CN102307170A (en) * 2011-08-22 2012-01-04 宁波大学 Anti-interference wireless multimedia mobile broadcast signal framing modulation method
CN102882670A (en) * 2012-09-13 2013-01-16 电子科技大学 Synchronous processing method based on CMMB signals

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050270968A1 (en) * 2004-06-02 2005-12-08 Chih-Chun Feng Method and apparatus for PAPR reduction of an OFDM signal
US20090003478A1 (en) * 2006-01-13 2009-01-01 Electronics And Telecommunications Research Method and Apparatus for Generating and Receiving Ofdm Symbol
CN102244639A (en) * 2011-08-22 2011-11-16 宁波大学 Method for framing and modulating wireless multimedia broadcast signals
CN102281230A (en) * 2011-08-22 2011-12-14 宁波大学 Multimedia broadcast mobile signal robust framing modulation method
CN102307170A (en) * 2011-08-22 2012-01-04 宁波大学 Anti-interference wireless multimedia mobile broadcast signal framing modulation method
CN102882670A (en) * 2012-09-13 2013-01-16 电子科技大学 Synchronous processing method based on CMMB signals

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Application publication date: 20140430