CN1812314A - Data with different rate group frame transmitting method and device - Google Patents

Data with different rate group frame transmitting method and device Download PDF

Info

Publication number
CN1812314A
CN1812314A CN 200510002604 CN200510002604A CN1812314A CN 1812314 A CN1812314 A CN 1812314A CN 200510002604 CN200510002604 CN 200510002604 CN 200510002604 A CN200510002604 A CN 200510002604A CN 1812314 A CN1812314 A CN 1812314A
Authority
CN
China
Prior art keywords
data
pointer
frame
write
read
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN 200510002604
Other languages
Chinese (zh)
Other versions
CN1812314B (en
Inventor
熊乐进
肖俊民
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
ZTE Corp
Original Assignee
ZTE Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by ZTE Corp filed Critical ZTE Corp
Priority to CN 200510002604 priority Critical patent/CN1812314B/en
Publication of CN1812314A publication Critical patent/CN1812314A/en
Application granted granted Critical
Publication of CN1812314B publication Critical patent/CN1812314B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Mobile Radio Communication Systems (AREA)
  • Communication Control (AREA)

Abstract

This invention provides a kind of method and equipment of separating data with different velocity into frames for transmission. The transmitting end separates the data with different velocity into frames. The data is transmitted by the velocity after form the frames. The receiving end checks the received frame data. The data with different velocity are separated and transmitted to corresponding module for processing. This invention can transmit two groups of data with different velocity in one link. Thus, it can decrease transmission cost and increase reliability.

Description

The group frame transmitting method of data with different rate and device
Technical field
The present invention relates to the CDMA mobile communication system field of data transmission, relate in particular to a kind of data with different rate group frame transmitting method and device.
Background technology
In the CDMA2000 mobile communication system, not only need to transmit base band data between base-band digital system and the radio system, also need to transmit the control signal between some base-band digital systems and the radio system, the speed of control signal and base band data is inequality, if they separately transmission separately, need more cable or optical fiber undoubtedly, strengthened the transmission cost of data.If can be the data combination framing of these different rates, according to same speed rates.Arrive after the receiving terminal,, the data of different rates are taken apart, deliver to processing module separately through rate-matched.With the cost that reduces greatly to transmit.
Chinese invention patent prospectus CN86105447A disclosed a kind of " frame forming tech of digital transmission channel " can transmit the data of several groups of different rates.But the data combination framing of particular frame format to different rates used in this invention, and the speed of several groups of data all is that certain relation is arranged, and the signal that is transmitted is limited to the standard signal of digital transmission system: as signals such as DS1, DS2, DS3.For the data of different rates, can not carry out the packet frames transmission so flexibly, and the also remarkable convenience of the method that is adopted.
Summary of the invention
The purpose of this invention is to provide a kind of transmission method and device that flexibly data of different rates is carried out packet frames, it is big to have solved in the prior art transmission cost, the problem that transmission method is not easy.
In order to realize the foregoing invention purpose, the invention provides a kind of transmitting device that the data combination framing of two groups of different rates is sent, wherein the sending part branch comprises: first dual port RAM (103), the control field that storage writes by the first write pointer controller (102); Second dual port RAM (106), the base band data that storage writes by the second write pointer controller (105); First read pointer controller (107) is read the data of two dual port RAMs in order successively, the component frame form; Transmitter sends to the frame of forming in the transmission link;
Receiving unit comprises: receiver (110) receives into frame data from output link; Searcher (111), the link data of reception framing according to predefined frame format, is searched for link data, searches the correct data frame on the link, and finds the frame head position; The 3rd write pointer controller (113), the frame lock index signal of exporting according to searcher writes the control field of data in the 3rd dual port RAM piece (114), and base band data is written in the 4th dual port RAM piece (117); Second reading indicating needle controller (115) is read the control field that receives from the 3rd dual port RAM piece (114); Third reading indicating needle controller (118) is read the base band data that receives from the 4th dual port RAM piece (117).
The present invention also provides a kind of transmission method that the data combination framing of two groups of different rates is sent, wherein forwarding step comprises: (a) initial condition, the first write pointer A (31) points to the original position of a RAMA1 (33), the first write pointer B (32) points to the original position of a RAMB1 (35), and the first read pointer C (37) points to the original position of a RAMA2 (34);
(b) the first write pointer A (31) is written to control field among the one RAMA1 (33) successively, the first write pointer B (32) is written to base band data among the one RAMB1 (35) successively, meanwhile, the first read pointer C (37) begins the data of a RAMA2 (34) to read successively;
(c) after the first read pointer C (37) runs through last data of a RAMA2 (34), jump to the original position of a RAMB2 (36), begin to call over the data of a RAMB2 (36);
(d) the first write pointer A (31) has write y1 control word, waits for;
(e) the first write pointer B (32) writes a RAMB1 (35) to last data, the first read pointer C (37) also just in time runs through last data of a RAMB2 (36) simultaneously, such first read pointer C (37) has just sent complete frame data, and that a RAMA1 (33) and a RAMB1 (35) have stored frame data etc. is to be sent;
(f) the first read pointer C (37) runs through after the data of a RAMB2 (36), begin to read first data of a RAMA1 (33), send the next frame data, simultaneously, the first write pointer A (31) has write a RAMA1 (33) afterwards, begin to write first data of a RAMA2 (34), the first write pointer B (32) begins to write first data of a RAMB2 (36);
(g) after the first read pointer C (37) runs through last data of a RAMA1 (33), jump to the original position of a RAMB1 (35), begin to call over the data of a RAMB1 (35);
(h) the first write pointer A (31) has write y1 the control word of a RAMA2 (34), waits for;
(I) the first write pointer B (32) writes a RAMB2 (36) to last data, the first read pointer C (37) also just in time runs through last data of a RAMB1 (35) simultaneously, such first read pointer C (37) has just sent complete frame data, and that a RAMA2 (34) and a RAMB2 (36) have stored frame data etc. is to be sent;
(i) finish after the top process, the read-write pointer is got back to initial position again, the read-write operation that constantly circulates, and data continuously send on the link from transmitting terminal with complete frame structure form;
Receiving step comprises: (k) when searcher locking link, and the data on the indication link are first data of a frame, the second write pointer A (51) points to the original position of the 2nd RAMA1 (53), second reading pointer B (52) points to the original position of the 2nd RAMA2 (54), and second reading pointer C (55) points to the original position of the 2nd RAMB2 (57);
(1) second write pointer A (51) writes control field among the 2nd RAMA1 (53) successively, second reading pointer B (52) reads control field successively since first data of the 2nd RAMA2 (54), and second reading pointer C (55) reads base band data successively from the 2nd RAMB2 (57);
(m) the second write pointer A (51) has write the 2nd RAMA1 (53) afterwards, jumps to the original position of the 2nd RAMB1 (56), and beginning writes the 2nd RAMB1 (56) to base band data successively;
(n) when the second write pointer A (51) is written to the 2nd RAMB1 (56) fully to base band data, second reading pointer B (52) has run through the control field of the 2nd RAMA2 (54), second reading pointer C (55) has run through the base band data of the 2nd RAMB2 (57), read pointer is read away the control field of a frame and base band data, and write pointer is deposited into new frame data in the dual port RAM;
(o) finish after the read-write of a frame, the second write pointer A (51) points to the original position of the 2nd RAMA2 (54), and second reading pointer B (52) points to the original position of the 2nd RAMA1 (53), and second reading pointer C (55) points to the original position of the 2nd RAMB1 (56);
(p) the second write pointer A (51) has write the 2nd RAMA2 (54) afterwards, jumps to the original position of the 2nd RAMB2 (57), and beginning writes the 2nd RAMB2 (57) to base band data successively;
(q) when the second write pointer A (51) is written to the 2nd RAMB2 (57) fully to base band data, second reading pointer B (52) has run through the control field of the 2nd RAMA1 (53), second reading pointer C (55) has run through the base band data of the 2nd RAMB1 (56), finishes the read-write of frame data;
(r) the read-write pointer is got back to initial position again, and the read-write pointer constantly moves, and the data that receive on the link are constantly splitted into control field and base band data, and the module of delivering to separately goes to handle.
Adopt the method for the invention and device, can on a link, transmit the data of two groups of different rates, transmit with two links of use and compare, reduce transmission cost, increase reliability.
Description of drawings
Figure 1 shows that the structural representation of packet frames transmitting device;
Figure 2 shows that the schematic diagram of data frame structure;
Figure 3 shows that framing rate module coupling schematic diagram;
Figure 4 shows that frame search module flow chart;
Figure 5 shows that and tear frame module rate-matched schematic diagram open.
Embodiment
Describe operation principle of the present invention in detail below in conjunction with accompanying drawing and enforcement, will more help to be well understood to characteristic of the present invention, purpose.
Fig. 1 has provided the structural representation of this device.The course of work of transfer of data is:
(1) control field 101 is written in the dual port RAM piece 103 by write pointer controller 102;
(2) meanwhile, base band data 104 is written in the dual port RAM piece 106 by write pointer controller 105;
(3) read pointer controller 107 is read the data of two dual port RAM pieces in order successively, forms certain frame format, sends in the transmission link 109 from transmitter 108;
(4) receiver 110 receives into frame data from output link, delivers to searcher 111;
(5) searcher 111 is searched for link data according to predefined frame format.Search the correct data frame on the link, and find the frame head position;
(6) write pointer controller 113 writes the control field of data in the dual port RAM piece 114 according to the frame lock index signal 112 of searcher output, and base band data is written in the dual port RAM piece 117;
(7) read pointer controller 115 is read the data of dual port RAM piece 114, the control field 116 that Here it is receives;
(8) read pointer controller 118 is read the data of dual port RAM piece 117, the base band data 119 that Here it is receives.
The structural representation of Fig. 2 complete frame data when having provided transfer of data.The data of a complete frame can comprise the data of many group different rates: data 1, data 2, data 3 ... data n.
Wherein first word of data 1 is the frame head sign, as the start bit of frame head.
The depth y 1 of each data, y2, y3, yn are decided by the transmission rate of each data, and physical relationship can illustrate referring to Fig. 3.
Fig. 3 has provided framing module work schematic diagram.The basic functional principle of framing module is that control field and base band data are written to dual port RAM respectively.The word that decision takies in a frame according to the speed of control field and base band data, and the speed of read pointer.Read pointer is read the control field in the frame earlier according to this speed, and then base band data is read, and so just will put in order frame data and send according to form.The framing module is wanted operate as normal, and key will guarantee that write pointer and read pointer are according to certain speed, certain relational operation.
Bump for fear of the read-write pointer, every dual port RAM all divides for RAM1 and RAM2 two parts, and when write pointer carried out write operation at RAM1, read pointer carried out read operation at RAM2.
RAMA and RAMB are respectively applied for storage control field part and base band data part, as shown in Figure 3.The RAMA of storage control field is divided into RAMA133 and RAMA234 two parts; The RAMB of storage base band data is divided into RAMB135 and RAMB236 two parts.
Write pointer A 31 is specifically designed to and writes control field, and write pointer B 32 is specifically designed to and writes base band data.37 of read pointer C are used for whole frame data are read.
The course of work that the read-write pointer is detailed is as follows:
(1) initial condition, the position of write pointer and read pointer as shown in Figure 3, write pointer A 31 points to the original position of RAMA1, write pointer B 32 points to the original position of RAMB1, and read pointer C points to the original position of RAMA2.
(2) write pointer A 31 begins control field is written to the RAMA1 successively from first word, and write pointer B 32 begins base band data is written to the RAMB1 successively from first word.Meanwhile, read pointer C 37 begins the data of RAMA2 to read successively.
(3) after read pointer C 37 runs through last word of RAMA2, jump to the original position of RAMB2, begin to call over the data of RAMB2.
(4) write pointer A 31 has write y1 control word, waits for.
(5) write pointer B 32 writes RAMB1 to last word, and read pointer C 37 also just in time runs through last word of RAMB2 simultaneously.Read pointer C 37 has just sent complete frame data like this, and that RAMA1 and RAMB1 have stored frame data etc. is to be sent.
(6) read pointer C 37 runs through after the data of RAMB2, begins to read first word of RAMA1, sends the next frame data.Simultaneously, write pointer A 31 has write after the RAMA1, begins to write first word of RAMA2.Write pointer B 32 begins to write first word of RAMB2.
(7) similar with prior process, after read pointer C 37 runs through last word of RAMA1, jump to the original position of RAMB1, begin to call over the data of RAMB1.
(8) write pointer A 31 has write y1 the control word of RAMA2, waits for.
(9) write pointer B 32 writes RAMB2 to last word, and read pointer C 37 also just in time runs through last word of RAMB1 simultaneously.Read pointer C 37 has just sent complete frame data like this, and that RAMA2 and RAMB2 have stored frame data etc. is to be sent.
(10) finish after the top process, the read-write pointer is got back to initial position again.By the read-write operation of so continuous circulation, data continuously send on the link from transmitting terminal with complete frame structure form.
Three pointers will be worked good, and must meet some requirements.The speed of supposing write pointer A is a, and the speed of write pointer B is b, and the speed of read pointer C is c.Must satisfy following relationship.
The time that write pointer B has write base band data must equal the time that read pointer is read whole frame, promptly
y 2 b = y 1 + y 2 c
Write pointer A has write the time that time of control word must write smaller or equal to base band data, promptly
y 1 a ≤ y 2 b
Fig. 4 has provided the flow chart of search module.Whether search module wants the frame head sign and the check digit of the data that continuous verification receives correct.In the incipient stage of search procedure, if it is all correct to search the frame head sign and the check digit of multiframe data continuously, then think the link data locking, it is effective to put the frame lock index signal, provides the frame head marking signal simultaneously.After frame lock, receive wrong frame head sign or check digit again, then, restart search procedure the frame counter zero clearing.The concrete course of work is as follows:
(1) in initial condition, frame counter is zero.Module receives data, judges whether it is frame head sign 41.If not, the frame counter zero clearing receives next data 42, judges whether it is frame head sign 41 again.
(2), then receive (n+m) individual data more continuously, and carry out verification 43 if receiving data is frame head signs.
(3) judge check results whether correct 43.If the check results mistake, then frame counter zero clearing receives next data 42.
(4), then show correctly to receive frame data if check results is correct.Judge whether the present frame counter arrives set point x45.
(5) if frame counter no show set point adds 1 to frame counter, receive next data 46.If frame counter arrives set point, show to search (x+1) frame correct data continuously that it is effective to put the frame lock index signal, and provides next frame head sign 47.
(6) continue to receive next data 48.
Fig. 5 has provided and has torn frame work schematic diagram open.The basic functional principle of tearing frame open is: according to the index signal of search module, write pointer is written to the data different piece in each dual port RAM, read pointer is read control field in the content frame and base band data respectively then, so just two parts content of data is taken apart.Take the data that receive accurately apart, key will guarantee that write pointer and read pointer are according to certain speed, certain relational operation.
Similar with the framing process, tear frame open and used two dual port RAMs, store control field and base band data respectively.Bump for fear of the read-write pointer, every dual port RAM all divides for RAM1 and RAM2 two parts, and when write pointer carried out write operation at RAM1, read pointer carried out read operation at RAM2.
The detailed operation process of tearing frame module read-write pointer open is:
(1) when search module locking link, and the data on the indication link are first data of a frame, and write pointer A 51 points to the original position of RAMA1, and read pointer B 52 points to the original position of RAMA2, and read pointer C 55 points to the original position of RAMB2.
(2) write pointer A 51 writes control field among the RAMA1 successively.Read pointer B 52 begins to read successively control field from first word of RAMA 254, and read pointer C 55 reads base band data successively from RAMB2.
(3) write pointer A51 has write after the RAMA1, jumps to the original position of RAMB1, and beginning writes RAMB1 to base band data successively.
(4) when write pointer A 51 was written to RAMB1 to base band data fully, read pointer B 52 had run through the control field of RAMA2, and read pointer C 55 has run through the base band data of RAMB2.Like this, read pointer is read away the control field of a frame and base band data, and write pointer is deposited into new frame data in the dual port RAM.
(5) finish after the read-write of a frame, write pointer A 51 points to the original position of RAMA2, and read pointer B 52 points to the original position of RAMA1, and read pointer C 55 points to the original position of RAMB1.
(6) write pointer A51 has write after the RAMA2, jumps to the original position of RAMB2, and beginning writes RAMB257 to base band data successively.
(7) when write pointer A 51 was written to RAMB2 to base band data fully, read pointer B 52 had run through the control field of RAMA1, and read pointer C 55 has run through the base band data of RAMB1.Finished the read-write of frame data so again.
(8) the read-write pointer is got back to initial position again.According to top process, the read-write pointer constantly moves, and just can constantly split into control field and base band data to the data that receive on the link, and the module of delivering to separately goes to handle.
Tearing frame module open will take data apart accurately, and three pointers must satisfy certain speed relation.The speed of write pointer A 51 is a, and the speed of read pointer B 52 is b, and the speed of read pointer C 55 is c, and they should satisfy following relation: the time that write pointer A has write a complete frame equals the time that read pointer B runs through base band data, promptly
y 1 + y 2 a = y 2 c
The time that read pointer B runs through control word runs through time of base band data smaller or equal to read pointer C, promptly
y 1 b ≤ y 2 c
Through above-mentioned labor as can be seen, when the different data of two kinds of speed of transmission, the invention provides a kind of simple and reliable method, the different data combination framing of speed, with same speed transmission.Reduced to send required cable or optical fiber, simplified system.Can be widely used in transmitting the system of two kinds of speed datas, in addition, apparatus of the present invention can be expanded with in the system that is applied to multiple speed data, in the device of expansion, transmission or receiving system can comprise 2 above twoport ram, these twoports ram is identical, but the data that are used for storing different rates respectively, and a part is used to store control field, a part and is used to store the data that base band data, a part can be used to store other speed; The twoport ram quantity correspondence that dispensing device and receiving device comprise; Corresponding 1 indicating needle controller of each twoport ram.

Claims (7)

1, a kind of packet frames transmitting device of data with different rate is characterized in that:
The sending part branch comprises: first dual port RAM (103), the control field that storage writes by the first write pointer controller (102); Second dual port RAM (106), the base band data that storage writes by the second write pointer controller (105); First read pointer controller (107) is read the data of two dual port RAMs in order successively, the component frame form; Transmitter sends to the frame of forming in the transmission link;
Receiving unit comprises: receiver (110) receives into frame data from output link; Searcher (111), the link data of reception framing according to predefined frame format, is searched for link data, searches the correct data frame on the link, and finds the frame head position; The 3rd write pointer controller (113), the frame lock index signal of exporting according to searcher writes the control field of data in the 3rd dual port RAM piece (114), and base band data is written in the 4th dual port RAM piece (117); Second reading indicating needle controller (115) is read the control field that receives from the 3rd dual port RAM piece (114); Third reading indicating needle controller (118) is read the base band data that receives from the 4th dual port RAM piece (117).
2, device according to claim 1, it is characterized in that: a RAM (103) of storage control field is divided into a RAMA1 (33) and a RAMA2 (34) two parts, and the 2nd RAM (106) of storage base band data is divided into a RAMB1 (35) and a RAMB2 (36) two parts.
3, device according to claim 1, it is characterized in that: the 3rd RAM (114) of storage control field is divided into the 2nd RAMA1 (53) and the 2nd RAMA2 (54) two parts, and the 4th RAM (117) of storage base band data is divided into the 2nd RAMB1 (56) and the 2nd RAMB2 (57) two parts.
4, a kind of group frame transmitting method of data with different rate is characterized in that, forwarding step comprises:
(a) initial condition, the first write pointer A (31) points to the original position of a RAMA1 (33), and the first write pointer B (32) points to the original position of a RAMB1 (35), and the first read pointer C (37) points to the original position of a RAMA2 (34);
(b) the first write pointer A (31) is written to control field among the one RAMA1 (33) successively, the first write pointer B (32) is written to base band data among the one RAMB1 (35) successively, meanwhile, the first read pointer C (37) begins the data of a RAMA2 (34) to read successively;
(c) after the first read pointer C (37) runs through last data of a RAMA2 (34), jump to the original position of a RAMB2 (36), begin to call over the data of a RAMB2 (36);
(d) the first write pointer A (31) has write y1 control word, waits for;
(e) the first write pointer B (32) writes a RAMB1 (35) to last data, the first read pointer C (37) also just in time runs through last data of a RAMB2 (36) simultaneously, such first read pointer C (37) has just sent complete frame data, and that a RAMA1 (33) and a RAMB1 (35) have stored frame data etc. is to be sent;
(f) the first read pointer C (37) runs through after the data of a RAMB2 (36), begin to read first data of a RAMA1 (33), send the next frame data, simultaneously, the first write pointer A (31) has write a RAMA1 (33) afterwards, begin to write first data of a RAMA2 (34), the first write pointer B (32) begins to write first data of a RAMB2 (36);
(g) after the first read pointer C (37) runs through last data of a RAMA1 (33), jump to the original position of a RAMB1 (35), begin to call over the data of a RAMB1 (35);
(h) the first write pointer A (31) has write y1 the control word of a RAMA2 (34), waits for;
(I) the first write pointer B (32) writes a RAMB2 (36) to last data, the first read pointer C (37) also just in time runs through last data of a RAMB1 (35) simultaneously, such first read pointer C (37) has just sent complete frame data, and that a RAMA2 (34) and a RAMB2 (36) have stored frame data etc. is to be sent;
(j) finish after the top process, the read-write pointer is got back to initial position again, the read-write operation that constantly circulates, and data continuously send on the link from transmitting terminal with complete frame structure form;
Receiving step comprises: (k) when searcher locking link, and the data on the indication link are first data of a frame, the second write pointer A (51) points to the original position of the 2nd RAMA1 (53), second reading pointer B (52) points to the original position of the 2nd RAMA2 (54), and second reading pointer C (55) points to the original position of the 2nd RAMB2 (57);
(l) the second write pointer A (51) writes control field among the 2nd RAMA1 (53) successively, second reading pointer B (52) reads control field successively since first data of the 2nd RAMA2 (54), and second reading pointer C (55) reads base band data successively from the 2nd RAMB2 (57);
(m) the second write pointer A (51) has write the 2nd RAMA1 (53) afterwards, jumps to the original position of the 2nd RAMB1 (56), and beginning writes the 2nd RAMB1 (56) to base band data successively;
(n) when the second write pointer A (51) is written to the 2nd RAMB1 (56) fully to base band data, second reading pointer B (52) has run through the control field of the 2nd RAMA2 (54), second reading pointer C (55) has run through the base band data of the 2nd RAMB2 (57), read pointer is read away the control field of a frame and base band data, and write pointer is deposited into new frame data in the dual port RAM;
(o) finish after the read-write of a frame, the second write pointer A (51) points to the original position of the 2nd RAMA2 (54), and second reading pointer B (52) points to the original position of the 2nd RAMA1 (53), and second reading pointer C (55) points to the original position of the 2nd RAMB1 (56);
(p) the second write pointer A (51) has write the 2nd RAMA2 (54) afterwards, jumps to the original position of the 2nd RAMB2 (57), and beginning writes the 2nd RAMB2 (57) to base band data successively;
(q) when the second write pointer A (51) is written to the 2nd RAMB2 (57) fully to base band data, second reading pointer B (52) has run through the control field of the 2nd RAMA1 (53), second reading pointer C (55) has run through the base band data of the 2nd RAMB1 (56), finishes the read-write of frame data;
(r) the read-write pointer is got back to initial position again, and the read-write pointer constantly moves, and the data that receive on the link are constantly splitted into control field and base band data, and the module of delivering to separately goes to handle.
5, method according to claim 4, it is characterized in that: the time that the first write pointer B (32) has write base band data in the forwarding step must equal the time that the first read pointer C (37) reads whole frame, and the first write pointer A (31) has write the time that time of control word must write smaller or equal to base band data.
6, method according to claim 4, it is characterized in that: the time that the second write pointer A (51) has write a complete frame in the receiving step equals the time that second reading pointer B (52) runs through base band data, and the time that second reading pointer B (52) runs through control word runs through the time of base band data smaller or equal to second reading pointer C (55).
7, method according to claim 4 is characterized in that, the process of search frame specifically may further comprise the steps:
(s) in initial condition, frame counter is zero, receives data, judges whether it is the frame head sign, if not, the frame counter zero clearing receives next data, judges whether it is the frame head sign again;
(t), then receive (n+m) individual data more continuously, and carry out verification if receiving data is frame head signs;
(u) judge whether check results is correct, if the check results mistake, then frame counter zero clearing receives next data;
If (v) check results is correct, then shows correctly to receive frame data, judges whether the present frame counter arrives set point x;
(w) if frame counter no show set point adds 1 to frame counter, receive next data, if frame counter arrives set point, show to search (x+1) frame correct data continuously that it is effective to put the frame lock index signal, and provides next frame head sign;
(x) continue to receive next data.
CN 200510002604 2005-01-24 2005-01-24 Data with different rate group frame transmitting method and device Expired - Fee Related CN1812314B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200510002604 CN1812314B (en) 2005-01-24 2005-01-24 Data with different rate group frame transmitting method and device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200510002604 CN1812314B (en) 2005-01-24 2005-01-24 Data with different rate group frame transmitting method and device

Publications (2)

Publication Number Publication Date
CN1812314A true CN1812314A (en) 2006-08-02
CN1812314B CN1812314B (en) 2010-05-05

Family

ID=36845023

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 200510002604 Expired - Fee Related CN1812314B (en) 2005-01-24 2005-01-24 Data with different rate group frame transmitting method and device

Country Status (1)

Country Link
CN (1) CN1812314B (en)

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102497265A (en) * 2011-11-24 2012-06-13 飞天诚信科技股份有限公司 Pulse light signal identification method and apparatus thereof
CN108319557A (en) * 2017-12-15 2018-07-24 天津津航计算技术研究所 A kind of data buffer and its reading/writing method with data retransmission function
CN111158588A (en) * 2019-12-12 2020-05-15 北京邮电大学 Double-rate control method and system
CN112241328A (en) * 2020-09-10 2021-01-19 长沙市到家悠享网络科技有限公司 Data processing method, device and system
CN113934133A (en) * 2021-09-28 2022-01-14 国网电力科学研究院有限公司 Control command confirmation method and system suitable for security control system
CN114896184A (en) * 2022-05-24 2022-08-12 西安微电子技术研究所 DMA controller FPGA and solid-state memory based on same

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1243369A (en) * 1998-06-22 2000-02-02 诺基亚流动电话有限公司 Signal coding method and data transmission system in data transmission system
KR20070098913A (en) * 2000-01-20 2007-10-05 노오텔 네트웍스 리미티드 Hybrid arq schemes with soft combining in variable rate packet data applications

Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102497265A (en) * 2011-11-24 2012-06-13 飞天诚信科技股份有限公司 Pulse light signal identification method and apparatus thereof
WO2013075379A1 (en) * 2011-11-24 2013-05-30 飞天诚信科技股份有限公司 Pulse optical signal recognition method and device
CN102497265B (en) * 2011-11-24 2014-03-12 飞天诚信科技股份有限公司 Pulse light signal identification method and apparatus thereof
US9112855B2 (en) 2011-11-24 2015-08-18 Feitian Technologies Co., Ltd. Method for identifying pulse optical signal and device thereof
CN108319557B (en) * 2017-12-15 2022-02-08 天津津航计算技术研究所 Data buffer with data retransmission function and read-write method thereof
CN108319557A (en) * 2017-12-15 2018-07-24 天津津航计算技术研究所 A kind of data buffer and its reading/writing method with data retransmission function
CN111158588A (en) * 2019-12-12 2020-05-15 北京邮电大学 Double-rate control method and system
CN111158588B (en) * 2019-12-12 2021-04-06 北京邮电大学 Double-rate control method and system
CN112241328A (en) * 2020-09-10 2021-01-19 长沙市到家悠享网络科技有限公司 Data processing method, device and system
CN112241328B (en) * 2020-09-10 2024-01-23 长沙市到家悠享网络科技有限公司 Data processing method, device and system
CN113934133A (en) * 2021-09-28 2022-01-14 国网电力科学研究院有限公司 Control command confirmation method and system suitable for security control system
CN113934133B (en) * 2021-09-28 2024-05-31 国网电力科学研究院有限公司 Control command confirmation method and system suitable for security control system
CN114896184A (en) * 2022-05-24 2022-08-12 西安微电子技术研究所 DMA controller FPGA and solid-state memory based on same

Also Published As

Publication number Publication date
CN1812314B (en) 2010-05-05

Similar Documents

Publication Publication Date Title
CN1812314A (en) Data with different rate group frame transmitting method and device
CN1025267C (en) Method and apparatus for detecting frame alignment word in data stream
EP1926030A3 (en) Apparatus and method for optimized index search
CN1236262A (en) Apparatus and method for transporting information about broadcast programs
EP1349361A3 (en) Image data processing system
CN1326131A (en) Image display system
EP1610239A3 (en) Content transferring apparatus, content transferring method, and computer program
CN1396748A (en) Block processing device
CN1272748A (en) Frame converter and conversion method, and digital camera and monitor system
EP1959704A3 (en) Method and apparatus for transmitting and receiving system information in a mobile communication system
CN1667965A (en) Data transfer control device and electronic instrument
CN1166169C (en) Information transmitting/receiving system, information transmitting/receiving method, and handwritten information compressing method used for them
CN1244241C (en) Method of optimizing small zone search in mobile telecon net
CN1150720C (en) Method for sending time coordination data in bus
CN1264328C (en) Portable information apparatus for processing inputted data from external apparatus and method thereof
CN101047447A (en) Point-to-point industrial series real-time communication system based on optical fibre and its control method
CN1286320C (en) System and method for transmitting video signals
CN1602475A (en) Asynchronous serial data interface
CN1342938A (en) Plug-and-play method for measuring-controlling module in RS-485 bus type measuring-controlling system and its measuring-controlling module
WO2006031576A3 (en) System and method for automatically performing a channel selection procedure in a wireless network
CN1136684C (en) Communication device and method in mobile communication system
CN1959645A (en) Device and method for checking up bit wide confersion data
CN1274507A (en) Information transmission system
CN1627282A (en) Method and equipment for carrying out synchronous data communication between one or more mobile terminals and computer
CN1924817A (en) Data structure transmission method

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20100505

Termination date: 20180124

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