EP2628351A1 - Base station, radio device, and methods for transmitting data in a radio communications system - Google Patents
Base station, radio device, and methods for transmitting data in a radio communications systemInfo
- Publication number
- EP2628351A1 EP2628351A1 EP11767245.1A EP11767245A EP2628351A1 EP 2628351 A1 EP2628351 A1 EP 2628351A1 EP 11767245 A EP11767245 A EP 11767245A EP 2628351 A1 EP2628351 A1 EP 2628351A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- radio
- channel
- sequence
- group
- devices
- 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.)
- Withdrawn
Links
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- 238000013468 resource allocation Methods 0.000 claims description 59
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Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/12—Wireless traffic scheduling
- H04W72/121—Wireless traffic scheduling for groups of terminals or users
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W72/00—Local resource management
- H04W72/20—Control channels or signalling for resource management
- H04W72/23—Control channels or signalling for resource management in the downlink direction of a wireless link, i.e. towards a terminal
Definitions
- Base station radio device, and methods for transmitting data in a radio communications system
- the present invention relates to transmitting data in a radio communications system. Particularly, the present invention refers to methods for said transmitting; a radio base station configured to perform said transmitting; and a radio device configured to perform said transmitting.
- MTC machine type communication
- MTC devices will increase the load on common control channels as well as on traffic channels in ra ⁇ dio access networks, e.g. GSM / EDGE networks.
- the terminated or origi ⁇ nated traffic of the MTC device may be bursty and may thus yield traffic peaks if cumulated with that from cellular phones resulting in possible overload situations.
- MTC devices may send information in synchronized manner to the network, e.g. in case of smart metering applications where devices send their measurement reports after the meas ⁇ urement is complete (e.g. after midnight) . In this case sev ⁇ eral MTC devices will attempt to access the network.
- the cur- rent control channel structures in radio access networks are optimized for cellular phones and will not work efficiently in this scenario in that increased access of MTC devices on the access channel (e.g. RACH) will delay / block access attempts of cellular phones and in particular if these are high priority calls or emergency calls;
- RACH access channel
- access grant channel e.g. AGCH
- paging channel e.g. PCH
- MTC devices are not distinguished from cellular phones within the radio protocol layer.
- BCCH Broadcast Control Channel
- CCCH Broadcast Control Channel
- TS Normally time slot
- Other timeslots on the BCCH carrier are employed for dedicated signaling or dedicated traffic channels.
- addi ⁇ tional resource is available for broadcast control and common control channels on the BCCH carrier, e.g. timeslots 2, 4 and 6, which allows for higher access rates and hence for miti ⁇ gating overload situations on the access control channels.
- the drawbacks of this solution are: no discrimination between MTC and cellular phones is possible and hence both access the same resource yielding increased delay / blocking for cellular phones ;
- BCCH/CCCH cannot be used for traffic channels, unless major system information messages are updated to re ⁇ configure the broadcast and common control channel configuration .
- Object of the present invention is improving of data trans ⁇ mission in a radio communications system.
- the object of the present invention is achieved by a method for a radio base station, the method comprising receiving and transmitting, on a channel, a sequence of radio blocks, the sequence further being divided into a first subset of the sequence of radio blocks which is allocated for user traffic of a first group of radio devices or of a second group of ra ⁇ dio devices, and into a second subset of the sequence of ra ⁇ dio blocks which is allocated for common control channel in ⁇ formation relating only to the second group of radio devices, wherein the first and second subsets of radio blocks are transmitted on the same channel.
- a radio block of the second subset of the sequence of radio blocks comprises an uplink state flag related to a radio device of a first group of radio devices or to a second group of radio devices, and wherein the radio block further comprises common control channel information relating to a radio device of the second group of radio devices.
- the method further comprises signalling, on the channel, a resource al ⁇ location map, the resource allocation map specifying the sequence of radio blocks allocated for transmissions over the channel.
- the re ⁇ source allocation map further comprises an update period in ⁇ dicator, the update period indicator defining a time interval during which the resource allocation map is valid.
- the common control channel information comprises broadcast information or access grant information or paging information related only to the second group of radio devices.
- the method further comprises signalling, on a broadcast channel, an in- dication on the presence of the channel and resource alloca ⁇ tion information on the channel.
- a ra- dio base station comprising receiving and transmitting means configured for receiving and transmitting, on a channel, a sequence of radio blocks, the sequence further being divided into a first subset of the sequence of radio blocks which is allocated for user traffic of a first group of radio devices or of a second group of radio devices, and into a second sub ⁇ set of the sequence of radio blocks which is allocated for common control channel information relating only to the second group of radio devices, wherein the first and second subsets of radio blocks are transmitted on the same channel.
- a radio block of the second subset of the sequence of radio blocks comprises an uplink state flag related to a radio device of a first group of radio devices or to a second group of radio devices, and wherein the radio block further comprises common control channel information relating to a radio device of the second group of radio devices.
- the radio base station comprises resource allocation map signalling means configured for signalling, on the channel, a resource allocation map, the resource allocation map specifying the sequence of radio blocks allocated for transmissions over the channel .
- the radio base station further comprising signalling means configured for signalling, on a broadcast channel, an indication on the presence of the channel and resource allocation information on the channel.
- the object of the present invention is also achieved by a method for a radio device, the method comprising receiving and transmitting, on a channel, a sequence of radio blocks the sequence further being divided into a first subset of the sequence of radio blocks which is allocated for user traffic of a first group of radio devices or of a second group of ra- dio devices, and into a second subset of the sequence of ra ⁇ dio blocks which is allocated for common control channel in ⁇ formation relating only to the second group of radio devices, wherein the first and second subsets of radio blocks are transmitted on the same channel.
- the method further comprises receiving, on the channel, a resource allo ⁇ cation map, the resource allocation map specifying the sequence of radio blocks allocated for transmissions over the channel.
- the method further comprises receiving, on a broadcast channel, an indi ⁇ cation on the presence of the channel and resource allocation information on the channel.
- the method further comprises listening to common control channel information only within a radio block of the subset of the se- quence of radio blocks; and/or transmitting common control channel information only within a radio block of the subset of the sequence of radio blocks.
- a ra- dio device comprising receiving and transmitting means configured for receiving and transmitting, on a channel, a sequence of radio blocks, the sequence further being divided into a first subset of the sequence of radio blocks which is allocated for user traffic of a first group of radio devices or of a second group of radio devices, and into a second sub ⁇ set of the sequence of radio blocks which is allocated for common control channel information relating only to the sec- ond group of radio devices, wherein the first and second sub ⁇ sets of radio blocks are transmitted on the same channel.
- a radio block of the second subset of the sequence of radio blocks comprises an uplink state flag related to a radio device of a first group of radio devices or to a second group of radio devices, and wherein the radio block further comprises common control channel information relating to a radio device of the second group of radio devices.
- the radio device further comprising receiving means configured for receiving, on the channel, a resource allocation map, the re- source allocation map specifying the sequence of radio blocks allocated for transmissions over the channel.
- the radio device further comprising receiving means configured for re- ceiving, on a broadcast channel, an indication on the pres ⁇ ence of the channel and resource allocation information on the channel.
- the radio device further comprising:
- - listening means configured for listening to common control channel information only within a radio block of the second subset of the sequence of radio blocks
- - transmitting means configured for transmitting common con- trol channel information only within a radio block of the subset of the sequence of radio blocks.
- Fig. 1 shows an implementation of the present invention according to some embodiments of the present invention
- Fig. 2 shows an implementation of the present invention according to some embodiments of the present invention
- Fig. 3 shows an implementation of the present invention according to some embodiments of the present invention
- Fig. 4 shows an implementation of the present invention according to some embodiments of the present invention
- Fig. 5 shows an implementation of the present invention ac- cording to some embodiments of the present invention.
- Fig. 6 shows an implementation of the present invention according to some embodiments of the present invention. DESCRIPTION OF THE PREFERRED EMBODIMENTS
- Fig. 1 shows an implementation of the present invention according to some embodiments of the present invention.
- Fig. 1 shows parts of a radio communications network, in which the invention can be applied.
- a radio base station 2 is serving radio devices 61, 62, 63, 64.
- the radio devices are grouped into two separate groups with a first group of radio devices 62, 64 and a second group of radio de- vices 61, 63.
- the first group of radio devices 62, 64 comprises, e.g., cellular phones with a regular traffic behaviour
- the second group of radio devices 61, 63 comprises, e.g., smart phones or de ⁇ vices used for machine type communication.
- the traffic profile for such MTC devices will be different to that for usual cellular phones.
- the first group of radio devices and second group of radio devices may overlap, i.e. an MTC device might also be a cellular phone, therefore belonging also to the first, "normal" group of devices.
- the different groups are rather characterized by different channel status. One group is in idle or access mode, the other in connected mode. In addition it may be different devices.
- Fig. 2 shows an implementation of the present invention according to some embodiments of the present invention.
- All radio blocks on DL 51...54 contain the USF flag for granting the transmission during the next radio block (only one UL radio block is granted) . This is the pre ⁇ ferred mode if all transmissions in DL are based on one modulation type, i.e. GMSK OR 8-PSK.
- the uplink is granted for a sequence of 4 radio blocks. This is the preferred mode for a mix of GMSK and 8-PSK modulation types on DL . Then the first radio block out of a sequence of 4 radio blocks is modulated in GMSK, so that mobiles accessing the UL know which USF is permitted. Then this mobile with indicated USF is allowed to access on 4 subsequent radio blocks. In the remaining 3 radio blocks on downlink the BTS may use 8-PSK modulation for packet traffic channel, if the mobile supports it, to serve higher data rates on DL . Only the next radio frame must then be encoded in GMSK to allow for reading of GPRS mobiles. The USF sent in a downlink radio block may allow access on UL for one or a series of UL radio blocks.
- Fig. 2 shows a channel 5 comprising a sequence of radio blocks 51, 52, 53, 54 for transmissions over the channel 5.
- a first subset 52, 54 of said sequence of radio blocks 51, 52, 53, 54 is to be used, or allocated, for transmitting user traffic 512 of the first group of radio devices 62, 64, i.e. for user traffic of cellular phones with a regular traffic behaviour.
- a second subset 51, 53 of said sequence of radio blocks 51, 52, 53, 54 is to be used, or allocated, for transmitting common control channel information 513 relating to the second group of radio devices 61, 63, i.e. for CCCH information relating to smart phones or devices used for machine type communication with a different traffic profile compared to that for usual cellular phones .
- Transmissions in the scope of this invention should be under- stood as downlink and/or uplink transmissions, as the radio blocks are allocated for both, downlink and uplink transmis ⁇ sions, i.e. transmissions from the base station to radio de ⁇ vices and vice versa or separately for UL and DL in case of asymmetric allocation.
- the allocation of the radio blocks in the sequence of radio blocks 51, 52, 53, 54 is an ⁇ nounced to radio devices 61, 62, 63, 64 by means of a re ⁇ source allocation map 511, which will be explained in more detail in conjunction with Fig. 3.
- Fig. 3 shows an implementation of the present invention according to some embodiments of the present invention.
- Fig. 3 shows, in more detail, the base station 2 al- ready shown in Fig. 1, and a method 1 performed by the base station 2 for transmitting data in the radio communications system.
- the method 1 comprises receiving and transmitting 11, on a channel 5, a sequence of radio blocks 51, 52, 53, 54, the se ⁇ quence further being divided into a first subset 52, 54 of the sequence of radio blocks 51, 52, 53, 54 which is allo- cated for user traffic 512 of a first group of radio devices 62, 64 or of a second group of radio devices 61, 63, and into a second subset 51, 53 of the sequence of radio blocks 51, 52, 53, 54 which is allocated for common control channel in ⁇ formation 513 relating only to the second group of radio de- vices 61, 63, wherein the first 52, 54 and second 51, 53 sub ⁇ sets of radio blocks are transmitted on the same channel 5.
- the resource allocation map 511 further comprises an update period indica- tor 5111, as shown in Fig. 2.
- the update period indicator
- 5111 defines a time interval during which the resource allo ⁇ cation map 511 is valid.
- the time interval is signaled as a number of radio blocks for which the resource allocation map 511 is valid.
- a radio block 51 of the second subset 52, 54 of the sequence of radio blocks 51, 52, 53, 54 comprises an uplink state flag 514 re ⁇ lated to a radio device of a first group of radio devices 62, 64 or to a second group of radio devices 61, 63, and wherein the radio block 51 further comprises common control channel information 513 relating to a radio device of the second group of radio devices 61, 63.
- the radio base station 2 as shown in Fig. 3 comprises receiving and transmitting means 21 configured for receiving and transmitting the sequence of radio blocks 51, 52, 53, 54 on the channel 5.
- the resource allocation map 511 is specifying the sequence of radio blocks 51, 52, 53, 54 allocated for transmissions over the channel 5.
- the method 1 further comprises signalling 12, on a broadcast channel 7, an indication 71 on the presence of the channel 5 and resource allocation information 72 on the channel 5. Further embodiments of the invention will now be discussed in conjunction with Fig. 4.
- Fig. 4 shows an implementation of the present invention according to some embodiments of the present invention.
- Fig. 4 shows a broadcast channel 7 and an indication 71 on the presence of the channel 5. This indication 71 is signaled on the broadcast channel 7.
- the method 1 further comprises signalling 12, on the broadcast channel 7, the indication 71 on the presence of the chan ⁇ nel 5.
- the radio base station 2 as shown in Fig. 3 further comprises signalling means 22 configured for signalling, on the broadcast channel 7, the indication 71 on the presence of the channel 5.
- Fig. 5 shows an implementation of the present invention according to some embodiments of the present invention. In par ⁇ ticular, Fig. 5 shows a radio device 4 according to the invention, and a method 3 for the radio device 4.
- the radio device 4 e.g.
- receiving and transmitting means 41 configured for receiving and transmitting, on a channel 5, a sequence of radio blocks 51, 52, 53, 54, the sequence fur- ther being divided into a first subset 52, 54 of the sequence of radio blocks 51, 52, 53, 54 which is allocated for user traffic 512 of a first group of radio devices 62, 64 or of a second group of radio devices 61, 63, and into a second sub- set 51, 53 of the sequence of radio blocks 51, 52, 53, 54 which is allocated for common control channel information 513 relating only to the second group of radio devices 61, 63, wherein the first 52, 54 and second 51, 53 subsets of radio blocks are transmitted on the same channel 5.
- the radio de ⁇ vice 4 further comprises listening means 42 configured for listening to common control channel information 513 only within a radio block of the subset of the sequence of radio blocks 52, 54; and transmitting means 43 configured for transmitting common control channel information 513 only within a radio block of the subset of the sequence of radio blocks 52 , 54.
- the radio device 4 performs a method 3, the method 3 comprising receiving and transmitting 31, on a channel 5, a sequence of radio blocks 51, 52, 53, 54 the sequence further being divided into a first subset 52, 54 of the sequence of radio blocks 51, 52, 53, 54 which is allo- cated for user traffic 512 of a first group of radio devices 62, 64 or of a second group of radio devices 61, 63, and into a second subset 51, 53 of the sequence of radio blocks 51, 52, 53, 54 which is allocated for common control channel in ⁇ formation 513 relating only to the second group of radio de- vices 61, 63, wherein the first 52, 54 and second 51, 53 sub ⁇ sets of radio blocks are transmitted on the same channel 5.
- the method 3 further comprises listening 32 to common control channel information 513 only within a radio block of the subset of the sequence of radio blocks 52, 54; and/or transmit ⁇ ting 33 common control channel information 513 only within a radio block of the subset of the sequence of radio blocks 52, 54.
- Fig. 6 shows an implementation of the present invention ac- cording to some embodiments of the present invention.
- Fig. 6 shows a more detailed representation of the invention.
- the invention will now be discussed in more detail in conjunction with Fig. 6.
- the envisaged use cases for MTC devices are manifold: smart metering, e-health, fleet management, bridge monitoring, object and person tracking, theft detection etc. [1] .
- the traffic profile for such MTC devices will be different to that for usual mobile terminals in that transfer of small or medium size data will most often occur. Number of MTC devices is expected to grow fast in the coming years and will be a multiple of that of mobile terminals.
- MTC devices are expected to add considerable traffic load to GERAN networks along their growing penetration in several ways.
- the terminated or originated traffic of the MTC devices may be bursty and may thus yield traffic peaks if cumulated with that from mobile terminals resulting in possible network overload situations. Due to nature of the MTC traffic it is likely that the proportional amount of control traffic increases substantially faster than the amount of data traffic, as the initial MTC applications probably do not require large data transmissions (see [3] and [4]) . Therefore MTC devices may leave traffic channels unused while CCCH channels such as RACH and AGCH become very congested. This could potentially even block emergency call attempts, for example in a case where a timer triggers simultaneous reporting from a large amount of utility meters (e.g. after midnight) and hence sev ⁇ eral MTC devices will attempt to access the network at the same time.
- CCCH channels such as RACH and AGCH become very congested.
- the current control channel structure in GERAN networks is optimised for mobile terminals and will not work efficiently in this scenario in that
- Timeslot 7 is chosen due to the fact that timeslots 2, 4 and 6 may be in use because of multiple BCCH/CCCH, and timeslots 1 and 2 may be occupied by RACH if the cell radius exceeds 35 km.
- the purpose of the hybrid MTC channel is to serve both MTC devices in idle mode and during channel access phase as well as mobile terminals or MTC devices with a dedicated packet data connection at the same time. This is done dynamically, to ensure that varying load from MTC devices over the day can be taken into account. In order to achieve this segregation, the resource on hybrid MTC channel is split into resource for common control chan ⁇ nels used by MTC devices and resource used by PDTCH for packet data users.
- the split is defined by a resource alloca ⁇ tion bitmap broadcast by the BTS indicating when the hybrid MTC channel is reserved for PDTCH traffic and when it is re ⁇ served for common control channels for MTC devices only.
- the resource allocation bitmap is periodically updated and valid for a predefined time interval, which is signalled together with the resource allocation bitmap.
- the presence of the hybrid MTC channel and its alloca ⁇ tion is indicated in specific system information mes ⁇ sages on the BCCH carrier.
- the MTC devices After evaluating the presence of the hybrid MTC channel, the MTC devices will camp on the hy ⁇ brid MTC channel in order to perform any channel access. Af ⁇ ter camping on the hybrid MTC channel the MTC devices attempt to read the resource allocation bitmap. In case the bitmap has been received and evaluated, the MTC device has knowledge when it is allowed to send channel requests and when it should listen to downlink common control channels.
- the signaled UL resource for the common control channels for MTC devices is reserved for RACH to be used by MTC devices only .
- the signalled DL resource for the common control channels for MTC devices is reserved for information broadcasts to all MTC devices in the cell as well as for AGCH and PCH for all MTC devices in the cell.
- the inclusion of common control channels for MTC devices in the hybrid MTC channel enables also the sending of system information messages that are similar to the ones currently in use on BCCH, but optimized for MTC pur ⁇ poses. Nevertheless hybrid MTC channel is designed to support channel access for MTC devices and hence such messages are not frequently sent. Rather MTC devices are required to read BCCH messages with a minimum frequency. Hence in case of in ⁇ troduction of hybrid MTC channel new BCCH monitoring rules for MTC devices may be required.
- the remaining resource in UL and DL on the hybrid MTC channel is reserved for packet data connections using BTTI configura ⁇ tions.
- Legacy GPRS/EGPRS/EGPRS-2 mobiles are both served, based on transmission of their TFI and USF identities.
- All MTC common control channels in the hybrid MTC channel use a specific unique TFI in DL identity, which is pre-known by MTC devices to exclude misinterpretation by non-MTC devices.
- the messages are based on the legacy format of RLC/MAC control messages to ensure backwards compatibility for mobile termi ⁇ nals with packet data connection reading USF for uplink transmission.
- the allocation of MTC common control channels in the hybrid MTC channel is configured dynamically.
- the BSS adjusts this allocation depending on the actual traffic load from MTC de ⁇ vices and / or GPRS/EGPRS/EGPRS2 packet data users. For example, several radio blocks for MTC common control channels are configured if it is known that a large amount of utility me- ters are going to make a regular report during a certain interval. After the peak in MTC traffic has passed, the re ⁇ source allocation bitmap is updated and only few radio blocks are assigned to MTC common control channels to make room for packet data users.
- the resource allocation bitmap is sent at predefined times, e.g. within the block B0 indicating the re ⁇ source allocation of common control channels for MTC devices and the resource allocation of PDTCHs, which the MTC devices are not allowed to use in uplink for common control purposes.
- Two operational modes of the hybrid MTC channel are foreseen: In the symmetric operational mode, the resources for DL and UL common control channels for MTC devices are covering the same TDMA frames. Thus the resource allocation bitmap does only include one link direction for the next update period. In the asymmetric operational mode, the resources for DL and UL common control channels for MTC devices are different and hence the resource allocation bitmap includes both link di- rections for the next update period.
- the indication of the operational mode of the hybrid MTC channel could be either done on BCCH in static or semi- dynamic manner or alternatively within the hybrid MTC channel signalled together with the resource allocation bitmap allow- ing a full dynamic manner.
- the MTC common control channel needs to carry the USF of the user that is assigned the next radio block in UL .
- the resource allocation bitmap describes the channel alloca ⁇ tion for a predefined time, i.e. the update period.
- the content of the bitmap may change due to adaptation to ac ⁇ tual traffic profile from MTC devices and mobile terminals by varying number and location of MTC common control channels.
- a low activity of MTC devices does not re ⁇ quire a frequent update of the resource allocation bitmap.
- the update period corresponding to the number of radio blocks contained in the resource allocation bitmap may be in ⁇ creased in this case.
- the update period in case of explicit signaling of all radio blocks in the resource allocation bitmap may range be ⁇ tween 240 ms (interval between two B0 blocks) and 2880 ms, if the prerequisite is that the resource allocation bitmap is sent within block B0.
- suitable values for the update period for explicit block indication would be 240ms, 480 ms, 720ms, 1440ms, 2880ms.
- radio block indica ⁇ tion is required. This is done by sending the bitmap explic ⁇ itly for the first period of 2880 ms and then repeating the same bitmap once, twice or triple, depending on signaled value of 5760 ms, 11520 ms and 23020 ms . In total 8 code points are needed which can be coded into 3 bits.
- Fig. 6 lower part shows encoding of the resource allocation bitmap for an update period of 240 ms and symmetric opera ⁇ tional mode of the hybrid MTC channel covering 12 radio blocks as used in Fig. 6, upper part.
- the indication of the presence of the hybrid MTC channel is done in specific system information messages on BCCH, which are frequently scheduled. Only a single presence bit and the description of the timeslot number are needed, since the hy ⁇ brid MTC channel has a dynamic nature in itself and can serve different traffic profiles. Hence this is advantageous in that no update of system information messages on BCCH is needed to switch on the MTC specific common control channels or increase their resource allocation and hence no time will be spent by mobile terminals for updating system information messages, which will not be impacting them.
- the pres ⁇ ence element in the BCCH should be extended to indicate the number of timeslots on BCCH carrier carrying the hybrid MTC channel format.
- the hybrid MTC channel carries also one or more paging sub channels dedicated to different MTC device types. Hence the regular CCCH is offloaded from signaling load due to MTC de ⁇ vice paging.
- the MTC device When being in idle mode, the MTC device is required to check system information messages on BCCH for indication of pres- ence and allocation of hybrid MTC channel. If the hybrid MTC channel is activated, it is required to synchronize to the resource allocation bitmap and to read common control channel messages on the hybrid MTC channel including information broadcast, paging requests, location updating requests and routing area update requests as well as access acknowledge ⁇ ments. For UL data transfer it needs to respect the resource allocation bitmap to detect when it is allowed to send chan ⁇ nel requests to the network.
- RACH, AGCH and PCH on hybrid MTC channel function as specified in 3GPP specifications 44.018 and 44.060. This includes also the listening to paging sub channels on hybrid MTC channel dedicated to MTC devices. Legacy GPRS/EGPRS/EGPRS-2 mobile terminals are not affected by the introduction of the hybrid MTC channel and will be supported on hybrid MTC channel in case of packet data traf ⁇ fic.
- the BSS needs to indicate the presence and allocation of the hybrid MTC channel in the system information messages that are broadcast on BCCH.
- the hybrid MTC channel incorporates all flexibility to dy ⁇ namically adjust to the actual traffic profile.
- the operator merely needs to configure the resource allocation bitmap with a certain update period in accordance with the capacity needs for dedicated packet data traffic. Care has to be taken re ⁇ lated to the optimisation of suitable update periods to avoid too high latency in the channel access for MTC devices and on the other hand too high signalling overhead.
- This concept provides increased efficiency when multiplexing mobile terminals and new MTC devices, in that no entire time slot capacity is lost for packet data traffic in case of low traffic load from MTC devices considering the expected dra ⁇ matic increased penetration of the MTC devices within the coming years requiring such efficiency increase. Furthermore the concept provides this flexibility without the need to update system information messages for indication of presence / absence of the MTC hybrid channel on BCCH which would affect operation of the entire population of mobile de ⁇ vices in the cell as being required in case of temporary ac- tivation of multiple BCCH/CCCH control channels on BCCH carrier .
- Legacy GPRS/EGPRS/EGPRS-2 mobiles are not affected and will be supported on hybrid MTC channel in case of packet data traffic.
- a new BCCH/CCCH i.e. MTC control Channel
- MTC control Channel i.e. MTC control Channel
- the MTC control Channel occupies one timeslot of the BCCH carrier, it is proposed to be timeslot 7 (technically this control Channel could occupy any timeslot from timeslot 1 to timeslot 7 of BCCH carrier but timeslot 7 is the most opti ⁇ mized solution as timeslots 2, 4 and 6 may be in use because of multiple BCCH/CCCH and timeslots 1 and 2 may be occupied by RACH if cell radius exceeds 35km) .
- Message or messages, from principle similar to existing system information messages, is/are broadcasted on BCCH in this timeslot. Informa ⁇ tion broadcasted on this logical Channel is to be used by MTC devices only. Therefore message (s) broadcasted on this Chan ⁇ nel can be optimised for MTC purposes.
- All uplink capacity of MTC control Channel is reserved for RACH to be used by MTC devices only.
- DL direction of MTC control Channel is reserved for information broadcasted to all MTC devices in cell, AGCH for MTC devices and PCH/PPCH for MTC devices.
- Location and routing area update signalling procedures are not affected because of MTC control Channel because that sig ⁇ nalling is done using SDCCH and PDTCH Channels respectively.
- Resource request and assignment messages for location updat ⁇ ing request and routing area update request message will be sent using MTC control Channel.
- E GPRS devices when initiating UL data transfer MTC device is required to check from system in- formation messages broadcasted on BCCH the presence of MTC control Channel.
- MTC device has to read messages broadcasted on it to find out when it is al ⁇ lowed to send Channel request to network.
- MS could be also informed in messages broadcasted on MTC control Channel if MTC device should send Channel request on legacy RACH or on new RACH to be used by MTC devices only.
- Functionality of RACH and AGCH to be used by MTC devices only is as specified for RACH and AGCH in 3GPP specification 44.108 and 44.060.
- Introduction of MTC control Channel provides overload protec ⁇ tion mechanism to legacy CCCH against new load generated by MTC devices.
- MTC control Channel means that MTC devices accessing GSM net- work do not necessarily load legacy CCCH at all. Network may command MTC devices witch are trying to send most delay critical data to use legacy RACH.
- E-UTRAN Evolved UMTS Radio Access Network
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Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP11767245.1A EP2628351A1 (en) | 2010-10-14 | 2011-10-06 | Base station, radio device, and methods for transmitting data in a radio communications system |
Applications Claiming Priority (3)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP2010065486 | 2010-10-14 | ||
| PCT/EP2011/067521 WO2012049076A1 (en) | 2010-10-14 | 2011-10-06 | Base station, radio device, and methods for transmitting data in a radio communications system |
| EP11767245.1A EP2628351A1 (en) | 2010-10-14 | 2011-10-06 | Base station, radio device, and methods for transmitting data in a radio communications system |
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| EP2628351A1 true EP2628351A1 (en) | 2013-08-21 |
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| EP11767245.1A Withdrawn EP2628351A1 (en) | 2010-10-14 | 2011-10-06 | Base station, radio device, and methods for transmitting data in a radio communications system |
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| EP (1) | EP2628351A1 (en) |
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| See also references of WO2012049076A1 * |
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