CN102263737B - Robust transmission method for digital broadcasting wireless signals - Google Patents
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Abstract
本发明公开了一种数字广播无线信号鲁棒传输方法,是一种时域频域混合的传输方案。本发明的数字广播无线信号鲁棒传输方法,具有低峰均功率比、同步时间短、鲁棒、可控多业务等优点。
The invention discloses a robust transmission method of digital broadcast wireless signals, which is a transmission scheme of mixing time domain and frequency domain. The robust transmission method of digital broadcast wireless signals of the present invention has the advantages of low peak-to-average power ratio, short synchronization time, robustness, controllable multi-service, and the like.
Description
技术领域 technical field
本发明属于无线通信领域,更具体地涉及一种数字广播无线信号鲁棒传输方法。The invention belongs to the field of wireless communication, and more specifically relates to a method for robust transmission of digital broadcast wireless signals.
背景技术 Background technique
数字电视数字广播无线相关技术及其相关产业是通信与计算机领域内发展较快,市场前景较好的产业。数字广播无线信号鲁棒发射机传输技术是数字电视数字广播无线系统的关键技术,对于整个系统性能起着决定性的作用,是大家重点研究的对象。由于数字信号处理技术和集成电路技术的飞速发展,正交频分复用(OFDM)技术的系统实现变得越来越容易。因OFDM多载波传输技术具有结构简单,频谱利用率高,可以抗频率选择性和信道时变等诸多优点而倍受大家的关注并得到深入的研究和在Xdsl、宽带移动通信、宽带无线局域网、数字电视数字广播无线传输系统等诸多领域中的广泛应用。Digital TV, digital broadcasting and wireless related technologies and related industries are industries with rapid development and good market prospects in the field of communication and computer. Digital broadcast wireless signal robust transmitter transmission technology is the key technology of digital TV digital broadcast wireless system, which plays a decisive role in the performance of the whole system, and is the object of everyone's key research. Due to the rapid development of digital signal processing technology and integrated circuit technology, the system realization of Orthogonal Frequency Division Multiplexing (OFDM) technology becomes easier and easier. Because OFDM multi-carrier transmission technology has many advantages such as simple structure, high spectrum utilization rate, and anti-frequency selectivity and channel time variation, it has attracted much attention and has been deeply researched and applied in Xdsl, broadband mobile communication, broadband wireless local area network, It is widely used in many fields such as digital TV digital broadcasting wireless transmission system.
OFDM信号较高的峰均功率比(PAPR)对放大器和数模转换器的线性范围有很高的要求,如果系统的线性范围不能满足信号的变化,则会造成信号畸变,使信号频谱发生变化,从而导致子信道之间的正交性遭到破坏,产生相互干扰,使系统性能恶化。因此,必须要考虑如何减小OFDM信号中大峰值功率信号的出现概率并降低非线性失真影响的解决方案。The high peak-to-average power ratio (PAPR) of OFDM signals has high requirements on the linear range of amplifiers and digital-to-analog converters. If the linear range of the system cannot meet the signal changes, it will cause signal distortion and signal spectrum changes. , resulting in the destruction of the orthogonality between sub-channels, resulting in mutual interference and deteriorating system performance. Therefore, it is necessary to consider how to reduce the occurrence probability of high peak power signals in OFDM signals and reduce the impact of nonlinear distortion.
在多径衰落信道下,可以通过编码、交织和调制方案的级联优化设计达到尽可能大的信号分集阶数,以便在等于或超过最小自由距离的符号序列中得到独立衰落。级联不同的编码形式可以充分利用不同编码技术的优点;在编码和码元调制之间插入比特交织器,可以使得编码和调制过程相对独立并将分集阶数从不同的多进制符号数扩大到不同的二进制比特数,从而使得分集阶数得到明显提高并且在多径衰落信道下具有好的误码特性。Under multipath fading channels, the cascade optimization design of coding, interleaving and modulation schemes can achieve the largest possible signal diversity order, so as to obtain independent fading in symbol sequences equal to or exceeding the minimum free distance. Cascading different coding forms can make full use of the advantages of different coding techniques; inserting a bit interleaver between coding and symbol modulation can make the coding and modulation processes relatively independent and expand the diversity order from different multi-ary symbols To a different number of binary bits, so that the order of diversity is significantly improved and has good error characteristics in multipath fading channels.
在实际通信环境中,数字电视数字广播无线通信系统性能受到同步时间、时钟抖动、信道衰落、信道干扰等因素的影响。数字广播无线信号鲁棒发射机传输方法是实现可靠数字电视数字广播无线传输的关键技术。In the actual communication environment, the performance of digital TV digital broadcasting wireless communication system is affected by factors such as synchronization time, clock jitter, channel fading, and channel interference. The robust transmitter transmission method of digital broadcast wireless signal is the key technology to realize reliable digital TV digital broadcast wireless transmission.
利用数字电视数字广播无线传输系统提供无偿电视广播、有偿电视广播、保密信息传输、多媒体增值服务等可控制多业务是新一代数字电视数字广播无线传输系统满足社会需求的体现。Using the digital TV digital broadcast wireless transmission system to provide controllable multi-services such as free TV broadcast, paid TV broadcast, confidential information transmission, and multimedia value-added services is the embodiment of the new generation of digital TV digital broadcast wireless transmission system to meet social needs.
正是基于以上背景,本发明针对实际通信环境提出一种数字广播无线信号鲁棒传输方法,可以满足高数据率可控制多业务数字电视数字广播无线传输的需要。Based on the above background, the present invention proposes a robust digital broadcast wireless signal transmission method for the actual communication environment, which can meet the needs of high data rate controllable multi-service digital TV digital broadcast wireless transmission.
欲对专利背景作更深入的了解可参考以下文献资料:For a more in-depth understanding of the patent background, please refer to the following literature:
R.V.Nee,R.Prasad.“OFDM for wireless multimedia communications”.Boston:Artech House,2000.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 digitaltelevision development,”Proceedings of the IEEE,Special Issue on GlobalDigital Television:Technology and Emerging Services,pp.8-21,Jan.2006.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.
U.Ladebusch and C.A.Liss.“Terrestrial DVB(DVB-T):A broadcasttechnology 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.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, .2006.
M.Takada and M.Saito.“Transmission systems for ISDB-T,”Proceedingsof the IEEE,Special Issue on Global Digital Television:Technology andEmerging Services,pp.251-256,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.
G.Caire,G.Taricco,E.Biglieri,“Bit-interleaved coded modulation,”IEEE Trans.Information Theory,vol.44,no.3,pp.927-946,May 1998.G.Caire, G.Taricco, E.Biglieri, "Bit-interleaved coded modulation," IEEE Trans.Information Theory, vol.44, no.3, pp.927-946, May 1998.
S.Benedetto,D.Divsalar,G.Montorsi,and F.Pollara,“Serialconcatenation of interleaved codes:performance analysis,design,anditerative decoding,”IEEE Trans.Inform.Theory,vol.44,no.3,pp.909-925,May 1998.S. Benedetto, D. Divsalar, G. Montorsi, and F. Pollara, "Serial concatenation of interleaved codes: performance analysis, design, and iterative decoding," IEEE Trans. Inform. Theory, vol.44, no.3, pp.909 -925, May 1998.
发明内容 Contents of the invention
本发明针对高数据率可控制多业务数字电视数字广播无线传输问题,提出了一种数字广播无线信号鲁棒传输方法。Aiming at the problem of high data rate controllable multi-service digital TV digital broadcast wireless transmission, the invention proposes a robust digital broadcast wireless signal transmission method.
本发明提出的一种数字广播无线信号鲁棒传输方法,其特征在于它包括下列步骤:A kind of digital broadcast wireless signal robust transmission method that the present invention proposes is characterized in that it comprises the following steps:
1)数字广播无线信号鲁棒发射机将多媒体数据流经媒体数据处理器转换成比特流,利用反馈移位寄存器产生的扰码序列进行加扰处理以形成输入数据比特流;1) The digital broadcast wireless signal robust transmitter converts the multimedia data stream into a bit stream through the media data processor, and uses the scrambling code sequence generated by the feedback shift register to perform scrambling processing to form the input data bit stream;
2)数字广播无线信号鲁棒发射机将自己的输入数据比特流经BCH编码(BoseChaudhuri Hocquenghem,BCH)、比特交织、LDPC编码(Low Density Parity Check,LDPC)、码元调制、码元交织后在频域上形成FFT级联交织编码调制数据块,FFT表示快速离散傅立叶变换,FFT级联交织编码调制数据块的长度为K;2) The digital broadcast wireless signal robust transmitter passes its input data bit stream through BCH encoding (BoseChaudhuri Hocquenghem, BCH), bit interleaving, LDPC encoding (Low Density Parity Check, LDPC), symbol modulation, and symbol interleaving. An FFT concatenated interleaved coded modulation data block is formed in the frequency domain, FFT means fast discrete Fourier transform, and the length of the FFT concatenated interleaved coded modulated data block is K;
3)数字广播无线信号鲁棒发射机采用IFFT将FFT级联交织编码调制数据块变换为时域离散级联交织编码调制数据样值块Dtotal,IFFT表示快速离散傅立叶反变换;3) The digital broadcast wireless signal robust transmitter uses IFFT to transform the FFT concatenated interleaved coded modulation data block into a time-domain discrete concatenated interleaved coded modulated data sample block D total , and IFFT means inverse fast discrete Fourier transform;
4)数字广播无线信号鲁棒发射机按顺序将时域离散级联交织编码调制数据样值块平分成两块,时域离散级联交织编码调制数据样值子块D1和时域离散级联交织编码调制数据样值子块D2,Dtotal=[D1,D2];4) The digital broadcast wireless signal robust transmitter divides the time-domain discrete concatenated interleaved coded modulation data sample block into two blocks in sequence, the time-domain discrete cascaded interleaved coded modulated data sample sub-block D 1 and the time-domain discrete level Interleaved coded modulation data sample sub-block D 2 , D total = [D 1 , D 2 ];
5)数字广播无线信号鲁棒发射机通过峰均功率比调整单元对时域离散级联交织编码调制数据样值子块D1、时域离散级联交织编码调制数据样值子块D2进行信号加、减、共轭运算处理并重新合成新的时域离散级联交织编码调制数据样值块Dnew,新的时域离散级联交织编码调制数据样值块Dnew采用如下生成模式得到,生成模式1为Dnew=[D1,D2],生成模式2为
6)数字广播无线信号鲁棒发射机将循环前缀作为保护间隔插入降峰均功率比时域离散级联交织编码调制数据样值块,形成降峰均功率比时域循环前缀离散级联交织编码调制数据样值块,作为帧体,循环前缀的长度为C,降峰均功率比时域循环前缀离散级联交织编码调制数据样值块的长度为C+K;6) The digital broadcast wireless signal robust transmitter inserts the cyclic prefix as a guard interval into the peak-to-average power ratio time-domain discrete concatenated interleaved coding modulation data sample block to form a peak-to-average power ratio time-domain cyclic prefix discrete concatenated interleaved code The modulated data sample block is used as a frame body, the length of the cyclic prefix is C, and the length of the peak-to-average power ratio time-domain cyclic prefix discrete concatenated interleaved coded modulated data sample block is C+K;
7)数字广播无线信号鲁棒发射机将训练序列作为复数训练序列的实部序列、将业务指标序列设置单元所设置的业务指标序列作为复数训练序列的虚部序列,在时域上构成复数训练序列的离散样值块,训练序列、业务指标序列、复数训练序列的离散样值块的长度都为X,业务指标序列包含着并且唯一表达着数字广播无线信号鲁棒发射机的各系统参数和业务模式信息;7) The digital broadcast wireless signal robust transmitter uses the training sequence as the real part sequence of the complex training sequence, and uses the service index sequence set by the service index sequence setting unit as the imaginary part sequence of the complex training sequence to form a complex training sequence in the time domain The discrete sample value block of the sequence, the length of the discrete sample value block of the training sequence, the service index sequence, and the complex training sequence are all X, and the service index sequence contains and uniquely expresses the system parameters and parameters of the robust transmitter of the digital broadcast wireless signal business model information;
8)数字广播无线信号鲁棒发射机将在时域上构成的复数训练序列的离散样值块在时域上连续重复2次形成时域重复训练序列离散样值块,作为帧头;8) The digital broadcast wireless signal robust transmitter repeats the discrete sample blocks of the complex training sequence formed in the time domain twice continuously in the time domain to form the discrete sample blocks of the repeated training sequence in the time domain as the frame header;
9)数字广播无线信号鲁棒发射机将时域重复训练序列离散样值块即帧头插入到降峰均功率比时域循环前缀离散级联交织编码调制数据样值块即帧体,以形成信号帧;9) The digital broadcast wireless signal robust transmitter inserts the time-domain repetitive training sequence discrete sample block, namely the frame header, into the peak-to-average power ratio time-domain cyclic prefix discrete concatenated interleaved coded modulation data sample block, namely the frame body, to form signal frame;
10)数字广播无线信号鲁棒发射机采用平方根升余弦滚降滤波器对信号帧的信号脉冲成形;10) The digital broadcast wireless signal robust transmitter adopts the square root raised cosine roll-off filter to shape the signal pulse of the signal frame;
11)数字广播无线信号鲁棒发射机将基带信号上变频至载波上形成射频信号发射到空中无线信道;11) The digital broadcast wireless signal robust transmitter up-converts the baseband signal to the carrier to form a radio frequency signal and transmits it to the wireless channel in the air;
12)数字广播无线信号鲁棒接收机检测接收数字广播无线信号鲁棒发射机所发送的射频信号并将其下变频形成基带信号,利用信号帧的循环前缀特性和信号帧的结构特性进行基带信号接收处理。12) The digital broadcast wireless signal robust receiver detects and receives the radio frequency signal sent by the digital broadcast wireless signal robust transmitter and down-converts it to form a baseband signal, and uses the cyclic prefix characteristics of the signal frame and the structural characteristics of the signal frame to perform baseband signal Receive processing.
按照上述的数字广播无线信号鲁棒传输方法,其特征在于:数字广播无线信号鲁棒发射机的降峰均功率比时域离散级联交织编码调制数据样值块由时域离散级联交织编码调制数据样值子块通过特定12种生成模式而进行的信号加、减、共轭运算处理而重新合成;数字广播无线信号鲁棒发射机的信号帧中具有周期性的时域重复训练序列离散样值块;数字广播无线信号鲁棒发射机的训练序列的长度X为512、1024、2048中的一个,相对应的FFT级联交织编码调制数据块的长度K分别为2048、4096、8192,相对应的子载波的频率间隔分别为4KHz、2KHz、1KHz,相对应的循环前缀长度C分别为FFT级联交织编码调制数据块长度K大小的1/4、1/8、1/16;数字广播无线信号鲁棒发射机的训练序列、业务指标序列由一系列的1或-1组成,具有伪随机特性;数字广播无线信号鲁棒发射机的训练序列、业务指标序列相互之间具有正交性;数字广播无线信号鲁棒发射机的各个不同的业务指标序列包含着并且唯一表达着数字广播无线信号鲁棒发射机的各系统参数和业务模式信息;LDPC编码的编码率为1/4、1/2、5/8、3/4和7/8中的一个;比特交织采用随机交织方式;码元调制为QPSK、16QAM、32QAM和64QAM中的一种,码元星座图映射方式采用格雷码映射;码元交织采用随机交织方式。数字广播无线信号鲁棒接收机能够充分利用信号帧的循环前缀特性和信号帧的结构特性进行基带信号接收处理,其中包括对信号帧头与信号帧体的时频域联合迭代分离处理。According to the above-mentioned method for robust transmission of digital broadcast wireless signals, it is characterized in that: the peak-to-average power ratio of the robust transmitter for digital broadcast wireless signals is reduced by time-domain discrete concatenated interleaved coded modulation data sample block by time-domain discrete concatenated interleaved coded Modulated data sample sub-blocks are re-synthesized through signal addition, subtraction, and conjugate operation processing for 12 specific generation modes; the signal frame of the digital broadcast wireless signal robust transmitter has a periodic time-domain repetitive training sequence discrete Sample block; the length X of the training sequence of the digital broadcast wireless signal robust transmitter is one of 512, 1024, 2048, and the length K of the corresponding FFT concatenated interleaving coded modulation data block is 2048, 4096, 8192 respectively, The frequency intervals of the corresponding subcarriers are 4KHz, 2KHz, and 1KHz respectively, and the corresponding cyclic prefix lengths C are 1/4, 1/8, and 1/16 of the length K of the FFT concatenated interleaving coded modulation data block; the numbers The training sequence and service index sequence of the broadcast wireless signal robust transmitter are composed of a series of 1 or -1, which have pseudo-random characteristics; the training sequence and service index sequence of the digital broadcast wireless signal robust transmitter are orthogonal to each other The various service index sequences of the digital broadcast wireless signal robust transmitter contain and uniquely express the various system parameters and business mode information of the digital broadcast wireless signal robust transmitter; the coding rate of LDPC coding is 1/4, One of 1/2, 5/8, 3/4, and 7/8; random interleaving is used for bit interleaving; one of QPSK, 16QAM, 32QAM, and 64QAM is used for symbol modulation, and Gray is used for symbol constellation mapping Code mapping; symbol interleaving adopts random interleaving. The robust receiver of digital broadcast wireless signal can make full use of the cyclic prefix characteristic of the signal frame and the structural characteristic of the signal frame to carry out the baseband signal reception processing, including the time-frequency domain joint iterative separation processing of the signal frame header and the signal frame body.
本发明的特点:Features of the present invention:
本发明是一种时域频域混合的传输方案。本发明的降峰均功率比时域离散级联交织编码调制数据样值块的生成模式和具有最低峰均功率比的降峰均功率比时域离散级联交织编码调制数据样值块选取方法,不仅能够充分利用OFDM信号的最大峰值功率很高但是大峰值功率信号概率非常低、当子载波数目较大时的OFDM信号的实部(或虚部)为复高斯随机过程且幅度服从Rayleigh分布的特性,所采用的生成模式所需额外发送的信息量小,易于在接收机端处理恢复得到OFDM信号的原始信号,同时不会破坏子载波信号的正交特性也不会产生额外的非线性失真。数字广播无线信号鲁棒发射机的信号帧中具有周期性的时域重复训练序列离散样值块,数字广播无线信号鲁棒发射机的训练序列、业务指标序列具有伪随机特性,数字广播无线信号鲁棒发射机的训练序列、业务指标序列相互之间具有正交性,数字广播无线信号鲁棒发射机的信号帧由时域重复训练序列离散样值块即帧头插入到降峰均功率比时域循环前缀离散级联交织编码调制数据样值块即帧体而形成,这些保证了数字广播无线信号鲁棒接收机可以实现快速准确的帧同步、频率同步、时间同步、信道传输特性估计、以及对相位噪声和信道传输特性进行可靠跟踪。将循环前缀作为保护间隔插入降峰均功率比时域离散级联交织编码调制数据样值块以形成信号帧体,可以减少信号帧头与帧体级联交织编码调制数据之间的干扰影响。对输入数据进行级联交织编码调制提高了分集阶数,使得通信系统在多径衰落信道下具有好的误码特性。数字广播无线信号鲁棒发射机的各个不同的业务指标序列包含着并且唯一表达着数字广播无线信号鲁棒发射机的各系统参数和业务模式信息,可以使得数字电视数字广播无线传输系统能够提供无偿电视广播、有偿电视广播、保密信息传输、多媒体增值服务等可控制多业务,满足社会需求。本发明的传输方法具有低峰均功率比、同步时间短、时钟抖动小、抗信道衰落、抗信道干扰、可以提供高级联交织编码调制数据率可控制多业务数字电视数字广播无线传输等诸多优点。The present invention is a mixed transmission scheme of time domain and frequency domain. The generation mode of the peak-to-average power ratio time-domain discrete concatenated interleaved coded modulation data sample block and the method for selecting the peak-to-average power ratio time-domain discrete cascaded interleaved coded modulated data sample block with the lowest peak-to-average power ratio of the present invention , not only can make full use of the maximum peak power of OFDM signal is very high but the probability of high peak power signal is very low, when the number of subcarriers is large, the real part (or imaginary part) of OFDM signal is a complex Gaussian random process and the amplitude obeys Rayleigh distribution The characteristics of the used generation mode require a small amount of additional information to be sent, and it is easy to process and restore the original signal of the OFDM signal at the receiver without destroying the orthogonality of the subcarrier signal and generating additional nonlinearity distortion. The signal frame of the digital broadcast wireless signal robust transmitter has periodic time-domain repetitive training sequence discrete sample blocks, the digital broadcast wireless signal robust transmitter training sequence and service index sequence have pseudo-random characteristics, and the digital broadcast wireless signal The training sequence and service index sequence of the robust transmitter are orthogonal to each other. The signal frame of the robust transmitter of the digital broadcast wireless signal is inserted into the peak-to-average power ratio by inserting the discrete sample block of the time-domain repeated training sequence, that is, the frame header. Time-domain cyclic prefix discrete concatenated interleaved coding modulated data sample block is formed, which ensures that the robust receiver of digital broadcast wireless signal can realize fast and accurate frame synchronization, frequency synchronization, time synchronization, channel transmission characteristic estimation, As well as reliable tracking of phase noise and channel transfer characteristics. The cyclic prefix is inserted as a guard interval into the peak-to-average power ratio time-domain discrete concatenated interleaved coded modulation data sample block to form a signal frame body, which can reduce the interference effect between the signal frame header and the frame body concatenated interleaved coded modulated data. The cascaded interleaving code modulation on the input data improves the diversity order and makes the communication system have good bit error characteristics in the multipath fading channel. The various service index sequences of the digital broadcast wireless signal robust transmitter contain and uniquely express the system parameters and business mode information of the digital broadcast wireless signal robust transmitter, which can enable the digital TV digital broadcast wireless transmission system to provide free TV broadcasting, paid TV broadcasting, confidential information transmission, multimedia value-added services, etc. can control multiple services to meet social needs. The transmission method of the present invention has many advantages such as low peak-to-average power ratio, short synchronization time, small clock jitter, anti-channel fading, anti-channel interference, and can provide high-level interleaving code modulation data rate controllable multi-service digital TV digital broadcasting wireless transmission, etc. .
附图说明 Description of drawings
图1是按照本发明的数字广播无线信号鲁棒传输方法的某个发射机和接收机间信号传输的实施例示意图。Fig. 1 is a schematic diagram of an embodiment of signal transmission between a certain transmitter and a receiver according to a method for robust transmission of digital broadcast wireless signals of the present invention.
图2是按照本发明的数字广播无线信号鲁棒传输方法的某个发射机和接收机间信号传输过程中信号帧形成的实施例示意图。Fig. 2 is a schematic diagram of an embodiment of signal frame formation during signal transmission between a certain transmitter and a receiver in the method for robust transmission of digital broadcast wireless signals according to the present invention.
具体实施方式 Detailed ways
下面将结合附图对本发明的具体实施例进行详细描述。Specific embodiments of the present invention will be described in detail below in conjunction with the accompanying drawings.
按照本发明提出的数字广播无线信号鲁棒传输方法的某个发射机和接收机间信号传输的实施例示意图,如图1所示,按下列步骤进行:A schematic diagram of an embodiment of signal transmission between a certain transmitter and a receiver according to the robust transmission method for digital broadcast wireless signals proposed by the present invention, as shown in Figure 1, proceed in the following steps:
1)该某个数字广播无线信号鲁棒发射机将多媒体数据流经媒体数据处理器转换成比特流,利用反馈移位寄存器产生的扰码序列进行加扰处理以形成输入数据比特流;1) The certain digital broadcast wireless signal robust transmitter converts the multimedia data stream into a bit stream through a media data processor, and uses the scrambling code sequence generated by the feedback shift register to perform scrambling processing to form an input data bit stream;
2)该某个数字广播无线信号鲁棒发射机将自己的输入数据比特流经BCH编码(Bose Chaudhuri Hocquenghem,BCH)、比特交织、LDPC编码(Low Density ParityCheck,LDPC)、码元调制、码元交织后在频域上形成FFT级联交织编码调制数据块,FFT表示快速离散傅立叶变换,FFT级联交织编码调制数据块的长度为K;LDPC编码的编码率为1/4、1/2、5/8、3/4和7/8中的一个;比特交织采用随机交织方式;码元调制为QPSK、16QAM、32QAM和64QAM中的一种,码元星座图映射方式采用格雷码映射;码元交织采用随机交织方式;2) The certain digital broadcast wireless signal robust transmitter passes its input data bit stream through BCH encoding (Bose Chaudhuri Hocquenghem, BCH), bit interleaving, LDPC encoding (Low Density Parity Check, LDPC), symbol modulation, symbol After interleaving, an FFT concatenated interleaved coded modulation data block is formed in the frequency domain, FFT means fast discrete Fourier transform, and the length of the FFT concatenated interleaved coded modulated data block is K; One of 5/8, 3/4, and 7/8; random interleaving is used for bit interleaving; one of QPSK, 16QAM, 32QAM, and 64QAM is used for symbol modulation, and Gray code mapping is used for symbol constellation mapping; Meta interleaving adopts random interleaving;
3)该某个数字广播无线信号鲁棒发射机采用IFFT将FFT级联交织编码调制数据块变换为时域离散级联交织编码调制数据样值块Dtotal,IFFT表示快速离散傅立叶反变换;3) The certain digital broadcast wireless signal robust transmitter uses IFFT to transform the FFT concatenated interleaved coded modulation data block into a time-domain discrete concatenated interleaved coded modulated data sample block D total , and IFFT stands for Inverse Fast Discrete Fourier Transform;
4)该某个数字广播无线信号鲁棒发射机按顺序将时域离散级联交织编码调制数据样值块平分成两块,时域离散级联交织编码调制数据样值子块D1和时域离散级联交织编码调制数据样值子块D2,Dtotal=[D1,D2];4) The certain digital broadcast wireless signal robust transmitter divides the time-domain discrete concatenated interleaved coded modulation data sample block into two equally in sequence, and the time domain discrete concatenated interleaved coded modulated data sample sub-block D1 and the time domain Domain discrete concatenated interleaving coding modulated data sample sub-block D 2 , D total = [D 1 , D 2 ];
5)该某个数字广播无线信号鲁棒发射机通过峰均功率比调整单元对时域离散级联交织编码调制数据样值子块D1、时域离散级联交织编码调制数据样值子块D2进行信号加、减、共轭运算处理并重新合成新的时域离散级联交织编码调制数据样值块Dnew,新的时域离散级联交织编码调制数据样值块Dnew采用如下生成模式得到,生成模式1为Dnew=[D1,D2],生成模式2为
6)数字广播无线信号鲁棒发射机将循环前缀作为保护间隔插入降峰均功率比时域离散级联交织编码调制数据样值块,形成降峰均功率比时域循环前缀离散级联交织编码调制数据样值块,作为帧体,循环前缀的长度为C,降峰均功率比时域循环前缀离散级联交织编码调制数据样值块的长度为C+K;6) The digital broadcast wireless signal robust transmitter inserts the cyclic prefix as a guard interval into the peak-to-average power ratio time-domain discrete concatenated interleaved coding modulation data sample block to form a peak-to-average power ratio time-domain cyclic prefix discrete concatenated interleaved code The modulated data sample block is used as a frame body, the length of the cyclic prefix is C, and the length of the peak-to-average power ratio time-domain cyclic prefix discrete concatenated interleaved coded modulated data sample block is C+K;
7)数字广播无线信号鲁棒发射机将训练序列作为复数训练序列的实部序列、将业务指标序列设置单元所设置的业务指标序列作为复数训练序列的虚部序列,在时域上构成复数训练序列的离散样值块,训练序列、业务指标序列、复数训练序列的离散样值块的长度都为X,业务指标序列包含着并且唯一表达着数字广播无线信号鲁棒发射机的各系统参数和业务模式信息,X取512、1024、2048中的一个;当X取512时,K取2048,C取K大小的1/4,FFT级联交织编码调制数据块子载波的频率间隔取4KHz;当X取1024时,K取4096,C取K大小的1/8,FFT级联交织编码调制数据块子载波的频率间隔取2KHz;当X取2048时,K取8192,C取K大小的1/16,FFT级联交织编码调制数据块子载波的频率间隔取1KHz;7) The digital broadcast wireless signal robust transmitter uses the training sequence as the real part sequence of the complex training sequence, and uses the service index sequence set by the service index sequence setting unit as the imaginary part sequence of the complex training sequence to form a complex training sequence in the time domain The discrete sample value block of the sequence, the length of the discrete sample value block of the training sequence, the service index sequence, and the complex training sequence are all X, and the service index sequence contains and uniquely expresses the system parameters and parameters of the robust transmitter of the digital broadcast wireless signal For business mode information, X is one of 512, 1024, and 2048; when X is 512, K is 2048, C is 1/4 of the size of K, and the frequency interval of FFT concatenated interleaving code modulation data block subcarriers is 4KHz; When X is 1024, K is 4096, C is 1/8 of the size of K, and the frequency interval of the FFT concatenated interleaving code modulation data block subcarrier is 2KHz; when X is 2048, K is 8192, and C is of the size of K 1/16, the frequency interval of FFT cascaded interleaving coding modulation data block subcarriers is 1KHz;
8)数字广播无线信号鲁棒发射机将在时域上构成的复数训练序列的离散样值块在时域上连续重复2次形成时域重复训练序列离散样值块,作为帧头;8) The digital broadcast wireless signal robust transmitter repeats the discrete sample blocks of the complex training sequence formed in the time domain twice continuously in the time domain to form the discrete sample blocks of the repeated training sequence in the time domain as the frame header;
9)数字广播无线信号鲁棒发射机将时域重复训练序列离散样值块即帧头插入到降峰均功率比时域循环前缀离散级联交织编码调制数据样值块即帧体,以形成信号帧;9) The digital broadcast wireless signal robust transmitter inserts the time-domain repetitive training sequence discrete sample block, namely the frame header, into the peak-to-average power ratio time-domain cyclic prefix discrete concatenated interleaved coded modulation data sample block, namely the frame body, to form signal frame;
10)该某个数字广播无线信号鲁棒发射机采用平方根升余弦滚降滤波器对信号帧的信号脉冲成形;10) The certain digital broadcast wireless signal robust transmitter uses a square root raised cosine roll-off filter to shape the signal pulse of the signal frame;
11)该某个数字广播无线信号鲁棒发射机将基带信号上变频至载波上形成射频信号发射到空中无线信道;11) The certain digital broadcast wireless signal robust transmitter up-converts the baseband signal to the carrier to form a radio frequency signal and transmits it to the wireless channel in the air;
12)该某个数字广播无线信号鲁棒接收机检测接收数字广播无线信号鲁棒发射机所发送的射频信号并将其下变频形成基带信号,利用信号帧的循环前缀特性和信号帧的结构特性进行基带信号接收处理,其中包括对信号帧头与信号帧体的时频域联合迭代分离处理。12) The certain digital broadcast wireless signal robust receiver detects and receives the radio frequency signal sent by the digital broadcast wireless signal robust transmitter and down-converts it to form a baseband signal, using the cyclic prefix characteristics of the signal frame and the structural characteristics of the signal frame Perform baseband signal reception processing, including joint iterative separation processing of the time-frequency domain of the signal frame header and signal frame body.
按照本发明的数字广播无线信号鲁棒传输方法的某个发射机和接收机间信号传输过程中信号帧形成的实施例示意图,如图2所示,具体实施如下:According to the schematic diagram of an embodiment of signal frame formation in the process of signal transmission between a certain transmitter and receiver according to the method for robust transmission of digital broadcast wireless signals of the present invention, as shown in FIG. 2 , the specific implementation is as follows:
该某个数字广播无线信号鲁棒发射机将多媒体数据流经媒体数据处理器转换成比特流,利用反馈移位寄存器产生的扰码序列进行加扰处理以形成输入数据比特流。The certain digital broadcast wireless signal robust transmitter converts the multimedia data stream into a bit stream through a media data processor, and uses the scrambling code sequence generated by the feedback shift register to perform scrambling processing to form an input data bit stream.
该某个数字广播无线信号鲁棒发射机将自己的输入数据比特流经BCH编码、比特交织、LDPC编码、码元调制、码元交织后在频域上形成FFT级联交织编码调制数据块,FFT级联交织编码调制数据块的长度为K,FFT级联交织编码调制数据块由子载波组成,再经IFFT将其变换为时域的离散级联交织编码调制数据样值块,通过峰均功率比调整单元生成选取其中具有最低峰均功率比的降峰均功率比时域离散级联交织编码调制数据样值块同时将所对应采用的生成模式信息发送给业务指标序列设置单元。LDPC编码的编码率为1/4、1/2、5/8、3/4和7/8中的一个;比特交织采用随机交织方式;码元调制为QPSK、16QAM、32QAM和64QAM中的一种,码元星座图映射方式采用格雷码映射;码元交织采用随机交织方式。The certain digital broadcast wireless signal robust transmitter forms an FFT concatenated interleaved coded modulation data block in the frequency domain after its input data bit stream undergoes BCH coding, bit interleaving, LDPC coding, symbol modulation, and symbol interleaving. The length of the FFT concatenated interleaved coded modulation data block is K, and the FFT concatenated interleaved coded modulated data block is composed of subcarriers, which are then transformed into discrete concatenated interleaved coded modulated data sample blocks in the time domain by IFFT. The ratio adjustment unit generates and selects the time-domain discrete concatenated interleaving coded modulation data sample block with the lowest peak-to-average power ratio among them, and sends the corresponding generation mode information to the service index sequence setting unit. The coding rate of LDPC coding is one of 1/4, 1/2, 5/8, 3/4 and 7/8; the bit interleaving adopts random interleaving; the symbol modulation is one of QPSK, 16QAM, 32QAM and 64QAM One, the symbol constellation mapping method adopts Gray code mapping; the symbol interleaving adopts the random interleaving method.
该某个数字广播无线信号鲁棒发射机将循环前缀作为保护间隔插入降峰均功率比时域离散级联交织编码调制数据样值块,形成降峰均功率比时域循环前缀离散级联交织编码调制数据样值块,作为帧体,循环前缀的长度为C。The certain digital broadcast wireless signal robust transmitter inserts the cyclic prefix as a guard interval into the peak-to-average power ratio time-domain discrete concatenated interleaving coded modulation data sample block to form a peak-to-average power ratio time-domain cyclic prefix discrete concatenated interleaving Coded and modulated data sample blocks are used as a frame body, and the length of the cyclic prefix is C.
该某个数字广播无线信号鲁棒发射机将训练序列作为复数训练序列的实部序列、将业务指标序列设置单元所设置的业务指标序列作为复数训练序列的虚部序列,在时域上构成复数训练序列的离散样值块,训练序列、业务指标序列、复数训练序列的离散样值块的长度都为X,业务指标序列包含着并且唯一表达着数字广播无线信号鲁棒发射机的各系统参数和业务模式信息。The certain digital broadcast wireless signal robust transmitter uses the training sequence as the real part sequence of the complex training sequence, and uses the service index sequence set by the service index sequence setting unit as the imaginary part sequence of the complex training sequence to form a complex number in the time domain The discrete sample value blocks of the training sequence, the length of the discrete sample value blocks of the training sequence, service index sequence, and complex training sequence are all X, and the service index sequence contains and uniquely expresses the system parameters of the robust transmitter of the digital broadcast wireless signal and business model information.
该某个数字广播无线信号鲁棒发射机将在时域上构成的复数训练序列的离散样值块在时域上连续重复2次形成时域重复训练序列离散样值块,作为帧头。The certain digital broadcast wireless signal robust transmitter repeats the discrete sample blocks of the complex training sequence formed in the time domain twice continuously in the time domain to form the discrete sample blocks of the repeated training sequence in the time domain as the frame header.
该某个数字广播无线信号鲁棒发射机将时域重复训练序列离散样值块即帧头插入到降峰均功率比时域循环前缀离散级联交织编码调制数据样值块即帧体,以形成信号帧。The certain digital broadcast wireless signal robust transmitter inserts the time-domain repeated training sequence discrete sample block, that is, the frame header, into the peak-to-average power ratio time-domain cyclic prefix discrete concatenated interleaved coded modulation data sample block, that is, the frame body, to Form a signal frame.
该某个数字广播无线信号鲁棒发射机采用平方根升余弦滚降滤波器对信号帧的信号脉冲成形。The certain digital broadcast radio signal robust transmitter employs a square root raised cosine roll-off filter to shape signal pulses of a signal frame.
该某个数字广播无线信号鲁棒发射机的X取512、1024、2048中的一个;当X取512时,K取2048,C取K大小的1/4,FFT级联交织编码调制数据块子载波的频率间隔取4KHz;当X取1024时,K取4096,C取K大小的1/8,FFT级联交织编码调制数据块子载波的频率间隔取2KHz;当X取2048时,K取8192,C取K大小的1/16,FFT级联交织编码调制数据块子载波的频率间隔取1KHz;作为数字广播无线信号鲁棒发射机的训练序列、业务指标序列由一系列的1或-1组成,具有伪随机特性,训练序列、业务指标序列相互之间具有正交性。满足上述特征的训练序列可由作为伪随机数序列的一种特殊类型的一组移位m序列和作为正交序列的沃尔什序列、哈达玛序列或由其他方式产生的正交序列实现。各个不同的业务指标序列包含着并且唯一表达着数字广播无线信号鲁棒发射机的各系统参数和业务模式信息。当X取512时,相对应的对信号帧的信号进行脉冲成形的平方根升余弦滚降滤波器的滚降系数取0.1;当X取1024时,相对应的对信号帧的信号进行脉冲成形的平方根升余弦滚降滤波器的滚降系数取0.05;当X取2048时,相对应的对信号帧的信号进行脉冲成形的平方根升余弦滚降滤波器的滚降系数取0.025。One of 512, 1024, and 2048 is selected as X of the robust transmitter of a certain digital broadcast wireless signal; when X is 512, K is 2048, C is 1/4 of the size of K, and FFT concatenated interleaving coding modulates data blocks The frequency interval of subcarriers is 4KHz; when X is 1024, K is 4096, C is 1/8 of the size of K, and the frequency interval of subcarriers of FFT concatenated interleaving code modulation data block is 2KHz; when X is 2048, K Take 8192, C takes 1/16 of the size of K, and the frequency interval of FFT concatenated interleaving coded modulation data block subcarriers takes 1KHz; as the training sequence and service index sequence of a robust transmitter for digital broadcast wireless signals, a series of 1 or -1, which has pseudo-random characteristics, and the training sequence and service index sequence are orthogonal to each other. The training sequence satisfying the above characteristics can be realized by a special type of shifted m-sequence as a pseudo-random number sequence and Walsh sequence, Hadamard sequence or orthogonal sequence generated by other methods as an orthogonal sequence. Each different service index sequence contains and uniquely expresses various system parameters and service mode information of the robust transmitter of the digital broadcast wireless signal. When X is 512, the roll-off coefficient of the square root raised cosine roll-off filter corresponding to the pulse shaping of the signal frame is 0.1; when X is 1024, the corresponding pulse shaping of the signal frame is The roll-off coefficient of the square root raised cosine roll-off filter is 0.05; when X is 2048, the corresponding roll-off coefficient of the square root raised cosine roll-off filter for pulse shaping the signal frame is 0.025.
该某个数字广播无线信号鲁棒发射机将基带信号上变频至载波上形成射频信号发射到空中无线信道。The certain digital broadcast wireless signal robust transmitter converts the baseband signal up-converted to the carrier to form a radio frequency signal and transmits it to the wireless channel in the air.
该某个数字广播无线信号鲁棒接收机检测接收数字广播无线信号鲁棒发射机所发送的射频信号并将其下变频形成基带信号,利用信号帧的循环前缀特性和信号帧的结构特性进行基带信号接收处理,其中包括对信号帧头与信号帧体的时频域联合迭代分离处理。The digital broadcast wireless signal robust receiver detects and receives the radio frequency signal sent by the digital broadcast wireless signal robust transmitter and converts it down to form a baseband signal, and uses the cyclic prefix characteristics of the signal frame and the structural characteristics of the signal frame to perform Signal receiving processing, which includes time-frequency domain joint iterative separation processing of signal frame header and signal frame body.
上面结合附图对本发明的具体实施例进行了详细说明,但本发明并不局限于上述实施例,在不脱离本申请的权利要求的精神和范围情况下,本领域的技术人员可作出各种修改或改型。The specific embodiments of the present invention have been described in detail above in conjunction with the accompanying drawings, but the present invention is not limited to the above embodiments, and those skilled in the art can make various modifications without departing from the spirit and scope of the claims of the application modify or remodel.
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Publication number | Priority date | Publication date | Assignee | Title |
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CN101305576A (en) * | 2005-11-14 | 2008-11-12 | 艾利森电话股份有限公司 | Peak-to-average power reduction |
CN101815051A (en) * | 2010-03-03 | 2010-08-25 | 宁波大学 | Robust transmission method of multimedia broadcasting wireless signals |
Non-Patent Citations (2)
Title |
---|
利用子块二维优化组合降低MIMO-OFDM系统峰均比;王立波等;《西北工业大学学报》;20091231;第27卷(第6期);第833-837页 * |
王立波等.利用子块二维优化组合降低MIMO-OFDM系统峰均比.《西北工业大学学报》.2009,第27卷(第6期), |
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