Generation of user equipment identification specific scrambling code for the high speed shared control channel
30 claims: 5 independent, 25 dependent
- 1CLAIMS:1. A user equipment for use in a code division multiple access communication system, the user equipment comprising: circuitry configured to process a user equipment identification (UE ID) by 1 /2 rate convolutionally encoding the UE ID to produce a code used by the user equipment for descrambling a high speed shared control channel (HS-SCCH);wherein the user equipment is configured to receive a wireless signal, the wireless signal providing the user equipment with payload data carried on a high speed physical downlink shared channel (HS-PDSCH), the HS-PDSCH being associated with the HS-SCCH.
- 8A user equipment for use in a code division multiple access communication system, the user equipment being configured to monitor a plurality of 5 high speed shared control channels (HS-SCCHs), at least one of the plurality of HSSCCHs being scrambled at a base station associated with the communication system by a scrambling code and the scrambling code being produced by 1 /2 rate conventionally encoding a user equipment identification (UE ID) associated with the user equipment, and comprising circuitry configured to descramble the HS-SCCH scrambled by the 10 scrambling code, wherein the user equipment is further configured to receive a wireless signal from the base station, the wireless signal providing the user equipment with payload data carried on a high speed physical downlink shared channel (HS-PDSCH), the HS-PDSCH being associated with the HS-SCCH. 15
- 16A base station for use in a code division multiple access communication system, the base station comprising:circuitry configured to process information, including a user equipment identification (UE ID), by 1 /2 rate convolutionally encoding the information to produce coded information, the circuit further being configured to generate a scrambling code based on the coded information, the scrambling code being used by the base station for scrambling at least a portion of a high speed shared control channel (HS-SCCH), wherein the base station is configured to transmit a wireless signal, the wireless signal providing the user equipment with payload data carried on a high speed physical downlink shared channel (HS-PDSCH), the HS-PDSCH being associated with the HSSCCH.
- 23A base station for use in a code division multiple access communication system, the base station being configured to transmit control data carried by a plurality of high speed shared control channels (HS-SCCHs), at least a portion of one of the plurality of HS-SCCHs being scrambled by the base station in accordance with a scrambling code, the scrambling code being obtained from coded information, the coded information being generated by 1 /2 rate convolutionally encoding information including a user equipment identification (UE ID), the UE ID corresponding to a user equipment associated with the communication system, wherein the base station is further configured to transmit a wireless signal to the user equipment, the wireless signal providing the user equipment with payload data carried on a high speed physical downlink shared channel (HS-PDSCH), the HS-PDSCH being associated with the HS-SCCH. I
- 30A code division multiple access system comprising:a base station including circuitry configured to process first information, including a user equipment identification (UE ID), by 1 /2 rate convolutionally encoding the first information to produce first coded information, the base station scrambling a high speed shared control channel (HS-SCCH) in accordance with a first scrambling code, the first scrambling code being generated based on the first coded information, wherein the base station is configured to transmit a wireless signal, the wireless signal providing payload data carried on a high speed physical downlink shared channel (HSPDSCH), the HS-PDSCH being associated with the HS-SCCH;and a user equipment configured to receive the wireless signal transmitted by the base station, the user equipment including circuitry configured to process second information, including the UE ID, by 1 /2 rate convolutionally encoding the second information to generate second coded information, the user equipment descrambling the scrambled HS-SCCH based on a second scrambling code, the second scrambling code being based on the second coded information.
Independent claims5
24 paragraphs in 4 sections, as filed
GENERATION OF USER EQUIPMENT
IDENTIFICATION SPECIFIC SCRAMBLING CODE
FOR THE HIGH SPEED SHARED CONTROL CHANNEL
[0001] BACKGROUND
[0002] The present invention relates to wireless communication systems. More particularly, the present invention relates to user equipment identification specific scrambling sequences for high speed shared control channels (HS-SCCH). [0003] A high speed downlink packet access (HSDPA) is proposed for wideband code division multiple access communication systems. HSDPA allows for high downlink data rates to support multimedia services.
[0004] To support HSDPA, high speed shared control channels (HS-SCCHs) are used. The HS-SCCHs are used to signal vital control information to the user equipments (UEs). Each HS-SCCH has two parts, referred to as Part-1 and Part2. Part-1 carries time critical information needed by the UE. This information includes the channelization code set and the modulation type used by the high speed physical downlink shared control channel (HS-PDSCH) which carries the HSDPA payload. This information is vital to support HSDPA, since HSDPA uses adaptive modulation and coding (AMC).
[0005] To obtain its Part-1 information, each HSDPA UE monitors up to four HS-SCCHs for its information. The information for a particular UE is distinguished from other UEs by its UE identification (UE ID) specific scrambling sequence. The UE processes each monitored HS-SCCH with its UE ID specific scrambling sequence to detect the HS-SCCH intended for the UE. After processing, the UE determines on which HS-SCCH, if any, information was carried using its scrambling sequence. The UE descrambles the data carried on Part-1 of its HS-SCCH using its scrambling sequence.
[0006] Until recently, a 10 bit UE ID was used as the basis for the UE ID specific scrambling sequence. In this case, this UE ID was converted into a 40 bit scrambling sequence. To turn the 10 bit UE ID into the 40 bit UE ID specific
WO 03/096694 scrambling sequence, the 10 bit UE ID is processed by a Reed-Muller block to produce a 32 bit code. The first 8 bits of the produced code are repeated and appended onto the back of the 32 bit code to־ produce a 40 bit code.
[0007] Although it is proposed to extend the UE ID length to 16 chips, the current proposal for the HS-SCCHs uses a 10 bit UE ID. This UE ID is converted into a 40 bit scrambling sequence. To turn the 10 bit UE ID into the 40 bit scrambling sequence, the 10 bit UE ID is processed by a Reed-Muller block to produce a 32 bit code. The first 8 bits of the produced code are repeated and appended onto the back of the 32 bit code to produce a 40 bit code.
[0008] To reduce the occurrence of false detections, it is desirable to have good separation between the produced scrambling codes for each UE ID. Accordingly, it is desirable to have alternate approaches to producing scrambling codes.
[0009] SUMMARY
[00010] A code is produced for use in scrambling or descrambling data associated with a high speed shared control channel (HS-SSCH) for a particular user equipment. A user identification of the particular user equipment comprises L hits. A Vt rate convolutional encoder processes at least the bits of the user identification by a /2 rate convolutional code to produce the code.
[00011] BRIEF DESCRIPTION OF THE DRAWINGS
[00012] Figure 1A is a preferred diagram of a circuit for producing a code associated with a particular user for a HS-SCCH.
[00013] Figure IB is a diagram of a rate matching block used in conjunction with Figure 1A.
[00014] Figure 2A is a preferred diagram of a circuit for producing a code associated with a user identification of 16 bits.
WO »3/096694
[00015] Figure 2B is a diagram of a rate matching block used in conjunction with Figure 2A.
[00016] Figure 3 is a simplified'user equipment using the UE ID specific scrambling code.
[00017] Figure 4 is a simplified base station using the UE ID specific scrambling code.
[00018] DESCRIPTION OF THE PREFERRED EMBODIMENTS [00019] Although the preferred embodiments are described in conjunction with the preferred application of the invention for use with the HSDPA of the third generation partnership project (3GPP) wideband code division multiple access (W-CDMA) communication system, the invention can be applied to other code division multiple access communication systems. Figures 1A and IB are diagrams of a preferred UE ID specific scrambling sequence circuit. A UE ID, Xue, of length L is input into the circuit. L can be any length, such as 8 bits, 10 bits, 16 bits, etc. The UE ID, Xue = {Xuei, .., Xuel}, is input into a <sup>1</sup>/2 rate convolutional encoder 10 as shown in Figure 1A. Along with the UE ID, extra bits, such as zeros, may be added to the end of the input string to extend the length of the input string and, accordingly, the output string. The use of a <sup>1</sup>A rate convolutional encoder 10 provides for a high level of code separation between the output strings produced by different UE IDs. Additionally, current proposed 3GPP W-CDMA communication systems utilize a <sup>1</sup>A rate convolutional encoder 10 for a forward error correction (FEC) technique. Accordingly, no additional hardware is required to generate the convolutionally encoded UE ID specific scrambling sequence. After encoding, based on the length of the output string, a rate matching stage 12 may be added to puncture bits to obtain a desired string length.
[00020] Figures 2A and 2B are diagrams of preferred UE ID specific scrambling sequence circuit for a preferred UE ID codes of length 16, L=16. The
WO 03/096694
PCT/US03/142(15 bit UE ID, Xue = {Xuei, , Xue16}, is input into a % rate convolutional encoder along with eight zero bits appended onto the end of the input string. As a result, the input string is Xuei, ..,‘Xue16,'0, 0, 0, 0, 0, 0, 0, 0. After being processed by the ¥3 rate convolutional encoder 14, the output code is 48 bits in length, Cue = {Cuei, Cue48).
[00021] To reduce the length of the code to a preferred length of 40 bits, eight bits are preferably punctured. Figure 2B illustrates the rate matching stage 16 to perform the puncturing. After the rate matching stage 16, the effective length of the scrambling code is 40 bits.
[00022] Figure 4 is a simplified diagram of a user equipment descrambling a HS-SCCH using the UE ID specific scrambling code. The UE ID scrambling code is mixed, such as by exclusive־or gate 18, with the received HS-SCCH for use in recovering the encoded HS-SCCH data.
[00023] Figure 3 is a simplified diagram of a base station scrambling encoded data with the UE Π) specific scrambling code for transfer over the HSSCCH. The encoded data is mixed with the UE ID scrambling code, such as by an exclusive-or gate 20, for a particular user. The scrambled data is used to produce the HS-SCCH for transfer to the particular user.
Contents4
3 sheets
Sheet 1 Sheet 2 Sheet 3
145 members in 21 offices
Priority claims16
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Numbers
- Publication, DOCDB
- 165044
- Publication, EPODOC
- IL165044
- Application
- 165044
- Application, DOCDB
- 16504404
- Application, EPODOC
- IL20040165044
Titles
- English
- GENERATION OF USER EQUIPMENT IDENTIFICATION SPECIFIC SCRAMBLING CODE FOR THE HIGH SPEED SHARED CONTROL CHANNEL
Classification
- CPC, 12
- H04B1/707
- H04L1/0066
- H04L1/0041
- H04L1/0057
- H04L1/0059
- H04L1/0068
- H04L1/0072
- H04L1/08
- H04L1/1812
- H04W88/08
- H04L1/0013
- H04W88/02
- IPC, 9
- H03M13 23
- H04B1 69
- H04B7 216
- H04L1 00
- H04L1 08
- H04L1 18
- H04L29 02
- H04L29 08
- H04W12 00
