![]() Television system
专利摘要:
The invention relates to systems for the transmission and reception of television information, a swarm of subscribers who regularly make a subscription fee. The purpose of the invention is the processing of image and sound signals presented in analog form. The system contains a subscription control unit 1, which forms a C-channel C (i 1,2, ..., p), which are randomly measured in time. The transmitting side contains the source 2 of the information, written out in the form of an image signal conditioner (SI) and L CO 00 05 pu 公开号:SU1306492A3 申请号:SU813247277 申请日:1981-02-13 公开日:1987-04-23 发明作者:Бабонно Жерар;Клод Гиллу Луи;Сеше Клод 申请人:Этаблиссман Пюблик Де Диффюзьон Ди "Теледиффюзьон Де Франс" (Фирма);Жерар Бабонно (Фирма); IPC主号:
专利说明:
sound signal from the output to-rogo comes. SI, and from the 2nd output - NW ,, generator of 3 digital signals K, randomly varying in time, block 4 biases, at the output of which there is a signal M j Fgj (k), block 5 of data generation, which enters the signal M in the SI in the e-frame quenching frame, block 6 coding, in which the signal K encodes the SI and / or the sound signal and does not affect the signal M- contained in the frame quenching intervals and passes then one . . The invention relates to systems for the transmission and reception of television information, which can be used by subscribers who regularly pay a subscription fee. The aim of the invention is to process the image and sound signals presented in analog form. FIG. Figure 1 shows a structural electrical circuit of a thermal system; in fig. 2 is a structural electrical coding block diagram; in fig. 3 - standard received for video signal. TV system contains subscription control unit 1, which forms the l. signals С j (where i 1,2 ,, .., п), which randomly change in time .. ; - h -: - The transmitting side of the television system contains the source 2 of information, made in the form of a gel of the image signal and the sound signal, from the first output of which the image signal is received, and from the second output - a signal sound signal generator 3 digital signals. ; over time (on the order of a few minutes) 5 block 4 offset, at the output of which the signal M f T (K), block 5 va; Data generation, which allows you to enter the signal M, in the signal g, images in the interval frame blanking, coding block 6: in which the signal K encodes the image signal and / or the sound signal and is not affected by the Mt. signal contained in the blanking intervals in block 7 of the transfer. The receiving side (n receiving devices) contains a receiving block 8, a decoding block 9, which decodes the SI with the K signal. the sound signal, the selection unit 10, autonomously {card 11, recorded the signal C, -, the signal recovery unit K from the signal set M - C, which enters the block 9, as well as the video control unit 13, K-ppm is played by SI and a sound signal, 3 Il. . . . 2 over the frame, and then passes to block 7 of the transfer. The receiving side (n receiving devices, sotststv) sodefits receiving unit 8, decoding unit 9, to which the coded image signals are received. and / or sound and with the help of which the signal K decodes the image and sound signals, block 10 of selection, subscription card 11, on which the signal corresponding to one of the signals is recorded block 12 of signal recovery K from the set of signals M and C, i.e. . K g. (M | -), which arrives - then in block, 9, and also contains a video control unit 13, on which image and sound signals are reproduced. ... The coding block b (FIG. 2) contains the selector 14 of the horizontal sync pulse to the scanning unit 15 and the luminance and chrominance signals to the quantizer 16. In the scanning block 15, the horizontal sync pulses are used to form the synchronization signal H and the even signals odd lines, respectively, 2p and 2p. The output of the quantizer 16 is connected to the inputs of the elements And 17 and 18, the outputs of which are connected respectively to the inputs of the switches 19 and 20, the outputs of which through the elements 21 And 22 of the delay are connected to each other. to the populations of the switches 23, and 24, the outputs of which are combined by the element OR 25, the output signal of the element OR ° 25 through the smoothing element 26 enters s adder 27, 31306 .92 which is a full coded signal. The coding unit 6 also contains a pseudo-time sequence generator 28, a reference register 29, in which the word in eight binary elements is permanently written, which determines the construction of the generator 28. At each frame synchronization signal transmitted by the selector 14 to the f-o player 30, in which a word from ten binary elements is written, generator 28 is started. Generator 28 output but in the inlet block 10 at the receiving side. The recovery of the signal K on the transmitting side uses block 12, in which the algorithm K is implemented, as follows The signal M I (127 useful binary elements) is taken octet by octet and multiplied by C; the first floor is CG (2 -1), which forms the word / v - М-С modulo (-1). When transmitting, binary elements from 1 to 61 words (J make up a word, and binary elements, from 65 to 125 make up a word start counter 31, to the counting input f5 5 /. Binary elements 62, 63, 64, 126 which receives the synchronization signals H from block 15 sweep. The control input of the switch 19 is connected to the output of the element 32, the first input of which is connected to the signal 2p output of the block 15, and the second input to the output of the counter 31. the control input of the switch 20 is connected to the output of the element 33, the first input connected to the signal output of the 2p block 15, and the second input to the output of the counter 31. The control inputs of the switches 23 and 24 are connected respectively to the outputs of the signals 2p and 2p of the block 15. The signal S from the output of the block 15 also goes to the adder 27. The television system works as follows. The calculation of the signals Mj from the signals C- and K is carried out on the transmitting side using the offset unit 4 in the following manner, 1) form the redundancy word 3f, which contents 61 binary elements randomly formed with each Use of a given algorithm 2) calculate 5G, inverse 7G, modulo () using an arithmetic program using a variant of the Euclidean algorithm, 3) decipher the first multiplication using another arithmetic program: Kjfpo module (); 4) calculate C, inverse C, modulo 2 -1 according to the program of item 2; 5) count messages according to the program of p. 3: M (+ +) modulo (). The collection of current messages -; the signals M, - - composes information of the access control to the transmitted subscriber service, which is generated in block 5 on the transmission side and but in the inlet block 10 at the receiving side. The recovery of signal K on the transmitting side uses block 12, in which the algorithm K is implemented, as follows. The signal M I (127 useful binary elements) is taken octet by octet and multiplied by C; the first floor is CG (2 -1), which forms the word / v - М-С modulo (-1). When transmitting, binary elements from 1 to 61 words (J make up a word, and binary elements 20) and 127 should be zero. If they are not zero, the word is reset to zero before continuing with the calculations. I 35 five 0 five Tf and O are multiplied by CG (), which eliminates redundancy, resulting in K-7G modulo (-1). Since the signal K has .56 useful D1 optical elements, the binary elements 57, 58, 59, 60 and 61 should be zero. Otherwise, before continuing the calculations, the signal K must be reset to zero. In the ready state, 56 useful binary elements of the signal K are found when they consist of eight odd octets4 The encoding and decoding of the image signal in blocks 6 and 9, respectively, is carried out as follows. The encoded signal is quantized, its samples are inserted into the video signal line, n samples V - v V constituting the line are moved to (p-I) positions so that the samples y () tU are placed before the samples V tUr, then the samples are transferred in reverse order. At the receiving side, the samples are again moved to (nr) positions to restore the initial sequence, At the time of the odd string signal 2p has a high level, the element And 17 is open, the switch 23 passes signals to the element OR 25, the switch 24 is closed and the element And 18 is closed. Thus, in the delay element 21, samples of an odd row are entered, During the next even line. 2p has a high level, And 17 is closed, the switch driver 23 is closed, the 2D switch is open and And 18 is open. In this case, the first samples are sent to the input of the delay element 21, while the last samples to the output of the delay element 21 and the contents of the delay element 21 remain unchanged until. end of even line With the similar operation of the delay element 22, the coding of the even rows is obtained. The decoding unit 9 at the receiving side is similarly made and is used to restore the initial shape of the strings. When processing signals AND (5, in analog form, delay elements 21 and 22 are made on charge transfer circuits, while processing digital image signals, they are shift registers. The encoding of the image signal makes it sensitive to transmission defects and requires the introduction of redundancy. In the received video station 20 of a pseudo-time sequence, the first input of which is connected to the output of the signal recovery unit, the first input of which is connected to the output of the selection unit, and the second input of the dart (FIG. 3) for this circuit is 25 with a subscription card, and the video interval is 2 6 µs. This inter-block, as well as containing the block, is left free of any subscription-control signal, which has been connected prior to encoding. Each row is the second input of the mixing block on the video signal contains the interval of the hash-side and with the subscription no 1, which contains the signals 30 by the card on the receiving side, the horizontal sync line and the digital channel N for the sound signals, and the interval -1 containing the image signal - 7, 5 mcr designed for use in themes that, for the purpose of processing image signals and analog signals, are presented on the transmitting side of the source for chroma pulses C (4j9 µs) 35 information polypropylene in the form of a form for carrying out coding (interval B with a capacity of 2.6 µs), When a sound signal passes through a digital channel using interval 1, or a digital channel using the introduction of additional signals into chroma pulses, it is quantized at one of the following frequencies compatible with synchronization: f, 7812.5 Hz, - f, 15626 Hz ; f5 31259 Hz. The choice of mode can be laid in the word signal K, The change in the signal K can be obtained by using the image signaling signal and the sound signal, the first output of which is connected to the second input of the Coding block through the purpose of the data block, the second 40 bpd - to the third input of the coding block, and the output of the mixing block is connected to the second input of the block in the data section; on the receiving side, the first output of the receiving block is connected to 45 to the third input of the signal recovery bypass, the second output to the second input of the decoding unit, the first output of which is connected to the first input of the video control unit directly. and to its second entrance through the selection unit. detection of a subsequent signal K and signals of a temporary marking introduced into the frame before changing the signal K.
权利要求:
Claims (1) [1] Invention Formula A television system containing an information source on the transmitting side. The data extraction unit, the digital signal generator, the first output of which is connected to the first input of the mixing unit, and the second code to the first output of the coding unit, which includes the pseudo-time sequence generator, the output of which is connected to the input of the transmission unit at the receiving side — the reception unit, generator decoding unit pseudo-time sequence, the first input of which is connected to the output of the signal recovery unit, the first input of which is connected to the output of the selection unit, and the second input to the subscription card, and the video control unit, and also contains a subscription control unit connected to the second input of the mixing unit pe- to the receiving party and with the subscription card at the receiving side, and which depends on the image signal processing and ka, presented in analog form, on the transmitting side the source 35 information as a imager of the image signal and the sound signal, the first output of which is connected to the second input of the Coding block through the data purpose block, the second 40 bpd - to the third input of the coding block, and the output of the mixing block is connected to the second input of the block in the data section; on the receiving side, the first output of the receiving block is connected to 45 to the third input of the signal recovery bypass, the second output to the second input of the decoding unit, the first output of which is connected to the first input of the video control unit directly. and to its second entrance through the selection unit. FIG. 2 .T.Afanasyev's compiler Editor. A.Shandor Tehred L.Serdyukova Corrector A.Zimokosov Order 1471/59 Circulation 639Subscription VNIIPI USSR State Committee for inventions and discoveries 113035, Moscow, Zh-35, Raushsk nab., 4/5 Production and printing company, Lkgorod, ul. Project, 4 Fi9,
类似技术:
公开号 | 公开日 | 专利标题 SU1306492A3|1987-04-23|Television system US4396947A|1983-08-02|Apparatus for encoding of information KR940003390A|1994-02-21|Reset Control Network for Video Signal Encoder US4405942A|1983-09-20|Method and system for secure transmission and reception of video information, particularly for television CA1137214A|1982-12-07|Stv subscriber address system GB1531698A|1978-11-08|Pay television billing system TW366669B|1999-08-11|Picture encoding device and picture encoding method, picture decoding device and picture decoding method, and data recording media EP0046798B1|1988-06-08|Method and system for secure transmission and reception of video information particularly for television CN102238392A|2011-11-09|Signal transmission apparatus and signal transmission method CA1175556A|1984-10-02|System for transmitting a video signal with shortruns avoided in a signal encoded from the videosignal CN105306837A|2016-02-03|Multi-image splicing method and device CN100380985C|2008-04-09|Signal processor CA1139429A|1983-01-11|Matrix array camera CN106464852A|2017-02-22|Video processing system with high dynamic range sensor mechanism and method of operation thereof GB823541A|1959-11-11|Improvements in or relating to secrecy television systems US3749831A|1973-07-31|Television multiplexing system EP0463827A2|1992-01-02|Video cameras US5267036A|1993-11-30|Video coder/decoder with shift prevision for correctly decoded signal blocks JPS5773578A|1982-05-08|Television receiver US4517592A|1985-05-14|Television system FR2496376A1|1982-06-18|METHOD AND SYSTEM FOR TELETEXT FOR DISPLAYING DATA ON THE SCREEN OF A TELEVISION RECEIVER SU766039A1|1980-09-23|Device for compression of television signal SU1166342A2|1985-07-07|Device for synchronizing equipment for one-frame picture transmission JPH06303588A|1994-10-28|Video signal encoding device SU1136325A1|1985-01-23|Device for compression of digital television signals
同族专利:
公开号 | 公开日 US4354201A|1982-10-12| EP0021938B1|1984-02-01| JPS56500714A|1981-05-21| ES492393A0|1980-12-16| FR2459595B1|1984-03-16| EP0021938A1|1981-01-07| CA1167562A|1984-05-15| FR2459595A1|1981-01-09| DE3066372D1|1984-03-08| ES8102445A1|1980-12-16| WO1980002901A1|1980-12-24| JPH027235B2|1990-02-16|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题 US3538243A|1965-09-23|1970-11-03|Skiatron Elect & Tele|Subscription television system| US3997718A|1973-02-01|1976-12-14|The Magnavox Company|Premium interactive communication system| US4045814A|1973-08-15|1977-08-30|System Development Corporation|Method and apparatus for scrambling and unscrambling communication signals| US3934079A|1973-10-26|1976-01-20|Jerrold Electronics Corporation|Bilateral communications system for distributing commerical and premium video signaling on an accountable basis| US3956615A|1974-06-25|1976-05-11|Ibm Corporation|Transaction execution system with secure data storage and communications| US4025948A|1975-02-25|1977-05-24|Teleglobe Pay-Tv System, Inc.|Coding system for pay television apparatus| GB1558168A|1975-06-20|1979-12-19|Indep Television Co|Systems for broadcasting data simultaneously with but independently of television programmes| CA1097794A|1975-08-08|1981-03-17|Harold B. Shutterly|Secure television transmission system| US4081832A|1976-06-08|1978-03-28|Pay Television Corporation|Pay television system, method and apparatus| US4163254A|1977-02-14|1979-07-31|Block Robert S|Method and system for subscription television billing and access| US4214230A|1978-01-19|1980-07-22|Rolf Blom|Personal identification system|DE3125767A1|1980-07-05|1982-06-09|Communications Patents Ltd., London|CABLE TV SYSTEM| AU547877B2|1980-09-26|1985-11-07|B. Lofberg|Method for processing an information signal and means for carrying out the method| AU562395B2|1981-09-10|1987-06-11|Sony Corporation|Subscription television system| US7831204B1|1981-11-03|2010-11-09|Personalized Media Communications, Llc|Signal processing apparatus and methods| US4965825A|1981-11-03|1990-10-23|The Personalized Mass Media Corporation|Signal processing apparatus and methods| USRE47642E1|1981-11-03|2019-10-08|Personalized Media Communications LLC|Signal processing apparatus and methods| USRE33189E|1981-11-19|1990-03-27|Communications Satellite Corporation|Security system for SSTV encryption| US4484027A|1981-11-19|1984-11-20|Communications Satellite Corporation|Security system for SSTV encryption| CA1186028A|1982-06-23|1985-04-23|Robert M. Arn|Method and apparatus for scrambling and unscramblingdata streams using encryption and decryption| US4642688A|1983-06-24|1987-02-10|Scientific Atlanta, Inc.|Method and apparatus for creating encrypted and decrypted television signals| US4531020A|1982-07-23|1985-07-23|Oak Industries Inc.|Multi-layer encryption system for the broadcast of encrypted information| CA1253616A|1982-07-29|1989-05-02|Robert W. Field|Secure coding and decoding system and method fortelevision program signals| US4740912A|1982-08-02|1988-04-26|Whitaker Ranald O|Quinews-electronic replacement for the newspaper| JPS59112783A|1982-12-20|1984-06-29|Sony Corp|Digital data receiver| GB2140656A|1983-05-13|1984-11-28|Philips Electronic Associated|Television transmission system| US4608456A|1983-05-27|1986-08-26|M/A-Com Linkabit, Inc.|Digital audio scrambling system with error conditioning| US4613901A|1983-05-27|1986-09-23|M/A-Com Linkabit, Inc.|Signal encryption and distribution system for controlling scrambling and selective remote descrambling of television signals| GB2141905A|1983-06-20|1985-01-03|Philips Electronic Associated|Secure transmission system| US4554584B1|1983-07-08|1998-04-07|Browne Lee H|Video and audio blanking system| US4802215A|1983-07-22|1989-01-31|Independent Broadcasting Authority|Security system for television signal encryption| AU559311B2|1984-02-15|1987-03-05|Matsushita Electric Industrial Co., Ltd.|Pay tv charge/time data display| US4890322A|1984-02-23|1989-12-26|American Telephone And Telegraph Company|Method and apparatus for subscription broadcast| US4634808A|1984-03-15|1987-01-06|M/A-Com Government Systems, Inc.|Descrambler subscriber key production system utilizing key seeds stored in descrambler| FR2563402B1|1984-04-19|1987-08-28|Loire Electronique|ENCODING AND DECODING METHOD FOR A TOLL TELEVISION SYSTEM| US4907273A|1984-10-12|1990-03-06|Wiedemer John D|High security pay television system| US4696034A|1984-10-12|1987-09-22|Signal Security Technologies|High security pay television system| US4905280A|1984-10-12|1990-02-27|Wiedemer John D|High security videotext and videogame system| US4908834A|1984-10-12|1990-03-13|Wiedemer John D|High security pay television system| US5036537A|1984-11-19|1991-07-30|General Instrument Corp.|Geographic black-out method for direct broadcast satellite system| US4868866A|1984-12-28|1989-09-19|Mcgraw-Hill Inc.|Broadcast data distribution system| US4815129A|1985-01-02|1989-03-21|General Instrument Corp.|Video encryption system| FR2583946B1|1985-06-24|1988-07-29|France Etat|ACCESS CONTROL TELEVISION SYSTEM USING A VARIABLE ELECTRONIC KEY| FR2604021B1|1986-09-17|1988-10-28|Commissariat Energie Atomique|METHOD FOR PRODUCING MAGNETIC HEADS IN THIN FILMS AND WITH A PLANAR STRUCTURE AND HEAD OBTAINED BY THIS PROCESS| US4771429A|1986-09-18|1988-09-13|Abbott Laboratories|Circuit combining functions of cyclic redundancy check code and pseudo-random number generators| US4849817A|1987-02-19|1989-07-18|Isix, Inc.|Video system, method and apparatus for incorporating audio or data in video scan intervals| GB8704850D0|1987-03-02|1987-04-08|Mars Inc|Access systems| US4944006A|1987-03-12|1990-07-24|Zenith Electronics Corporation|Secure data packet transmission system and method| US4771458A|1987-03-12|1988-09-13|Zenith Electronics Corporation|Secure data packet transmission system and method| US4876718A|1987-03-12|1989-10-24|Zenith Electronics Corporation|Secure data packet transmission system and method| FR2621204B1|1987-09-24|1994-07-01|Aeta|METHOD AND DEVICE FOR ANALOGUE ENCRYPTION / DECRYPTION OF AN ANALOGUE VIDEO SIGNAL| FR2632148B1|1988-05-27|1990-08-10|France Etat|METHOD FOR BROADCASTING AND RECEIVING ACCESS TITLE MANAGEMENT MESSAGES| US4937865A|1988-11-15|1990-06-26|Syrcuits International Inc.|Cable TV channel security system having remotely addressable traps| FR2643529B1|1989-02-22|1991-06-07|Kudelski Sa Fabr Enregistr Nag|PAID TELEVISION SYSTEM USING A MEMORY CARD ASSOCIATED WITH A DECODER| US5140420A|1990-10-05|1992-08-18|General Electric Company|Information in vertical blanking interval of video sync signal| JPH0550172B2|1990-10-19|1993-07-28|Matsushita Electric Ind Co Ltd| US6002720A|1991-01-07|1999-12-14|H. Lee Browne, D/B/A Greenwich Information Technologies Llc|Audio and video transmission and receiving system| US5253275A|1991-01-07|1993-10-12|H. Lee Browne|Audio and video transmission and receiving system| EP0567474B1|1991-01-18|1995-11-15|THOMSON multimedia|Method and apparatus for access control and/or identification| US5642418A|1995-02-21|1997-06-24|Bell Atlantic Network Services, Inc.|Satellite television system and method| DE19604691A1|1996-02-09|1997-08-14|Sel Alcatel Ag|Chip card, method and system for using paid services| US6216263B1|1998-04-24|2001-04-10|Soundview Technologies Incorporated|Receiver apparatus and method for providing conditional access to received televison programs| US6820203B1|1999-04-07|2004-11-16|Sony Corporation|Security unit for use in memory card| GB0005878D0|2000-03-10|2000-05-03|British Broadcasting Corp|Method and apparatus for broadcast signal recording| US9107030B2|2000-12-13|2015-08-11|Thomas E. Coverstone|Communication system for sending advertisements based on location determination and previously specified user selections| US7239705B2|2003-12-10|2007-07-03|Motorola Inc.|Apparatus and method for broadcast services transmission and reception|
法律状态:
优先权:
[返回顶部]
申请号 | 申请日 | 专利标题 FR7915400A|FR2459595B1|1979-06-15|1979-06-15| 相关专利
Sulfonates, polymers, resist compositions and patterning process
Washing machine
Washing machine
Device for fixture finishing and tension adjusting of membrane
Structure for Equipping Band in a Plane Cathode Ray Tube
Process for preparation of 7 alpha-carboxyl 9, 11-epoxy steroids and intermediates useful therein an
国家/地区
|