1. Field of the Invention
The present invention relates to a method, a wireless communication system, a tangible machine-readable medium, and a communication apparatus for transmitting uplink hybrid automatic repeat request (HARQ) packets based on a multi-hop relay standard.
2. Descriptions of the Related Art
Although the IEEE 802.16 standard already provides greater bandwidths, lower building cost, better service quality and expansibility, there still exist some defects of coverage and signal quality of the IEEE 802.16 standard. Therefore, the IEEE 802.16j standard working group established a multi-hop relay study group in July, 2005 for building a multi-hop relay standard.
The HARQ packet, adopted in the IEEE 802.16 standard, is an advanced data retransmission strategy, which allows performing possible data retransmissions directly at the physical layer instead of the media access control (MAC) layer and/or higher layers. Since the HARQ packet is able to achieve data retransmission without involving mechanisms at the higher layers, the delay caused by data retransmission is significantly reduced. However, the HARQ packet still has some defects in a multi-hop relay system, which is going to be defined in the IEEE 802.16j standard.
When a subscriber station (SS), such as a mobile station (MS), or a base station (BS) transmits data, such as the HARQ packet, in a multi-hop relay stations (MRSs) network through relay stations (RSs) under the IEEE 802.16j, an efficient solution is desired for fast exchanges of correct HARQ packets between end stations. With HARQ method, erroneously decoded HARQ packet is required to be retransmitted from the station to the dominant one. If there are more than one station involved in reception of HARQ packet, any one of recipients, which have successfully received HARQ packet, is able to start forwarding data to the next hop. Therefore, BS could schedule multicast HARQ packets for multi-hop relay.
Accordingly, a solution to transmitting and relaying uplink HARQ packets based on a multi-hop relay standard, such as IEEE 802.16j standard, is desired.
One objective of this invention is to provide a method for transmitting uplink HARQ packets based on a multi-hop relay standard. The method comprises the following steps: transmitting a plurality of multicast uplink HARQ packets from an SS to a plurality of RSs; replying a first acknowledgement character (ACK) from at least one of the RSs to the BS after the at least one of the RSs receives one of the multicast uplink HARQ packets; transmitting an uplink HARQ packet from the at least one of the RSs to a BS; and replying a second ACK from the BS to the SS after the BS receives the uplink HARQ packet. And the uplink HARQ packet is the same as a part of one of the multicast uplink HARQ packets.
Another objective of this invention is to provide a method for transmitting uplink HARQ packets based on a multi-hop relay standard. The method comprises the following steps: transmitting a plurality of multicast uplink HARQ packets from an SS to a plurality of RSs; replying first ACKs from at least two of the RSs to the BS after the at least two of the RSs receive the multicast uplink HARQ packets respectively; transmitting uplink HARQ packets from the at least two of the RSs to a BS; and replying a second ACK from the BS to the SS after the BS receives the uplink HARQ packets. The uplink HARQ packets are the same as a part of one of the multicast uplink HARQ packets respectively, and are transmitted to the BS simultaneously.
Another objective of this invention is to provide a wireless communication system for transmitting uplink HARQ packets based on a multi-hop relay standard. The wireless communication system comprises a BS, an SS, and a plurality of RSs. The SS transmits a plurality of multicast uplink HARQ packets to the RSs. At least one of the RSs replies a first ACK to the BS and transmits an uplink HARQ packet to the BS after receiving one of the multicast uplink HARQ packets. The BS replies a second ACK to the SS after receiving the uplink HARQ packet. And the uplink HARQ packet is the same as a part of one of the multicast uplink HARQ packets.
Another objective of this invention is to provide a wireless communication system for transmitting uplink HARQ packets based on a multi-hop relay standard. The wireless communication system comprises a BS, an SS, and a plurality of RSs. The SS transmits a plurality of multicast uplink HARQ packets to the RSs. At least two of the RSs reply ACKs to the BS and transmit uplink HARQ packets to the BS after receiving two of the multicast uplink HARQ packets respectively. The BS replies a second ACK to the SS after receiving the uplink HARQ packets. The uplink HARQ packets are the same as a part of one of the multicast uplink HARQ packets respectively, and are transmitted to the BS simultaneously.
Another objective of this invention is to provide a tangible machine-readable medium having executable code to cause a machine to perform a method for transmitting uplink HARQ packets based on a multi-hop relay standard. The method comprises the following steps: transmitting a plurality of multicast uplink HARQ packets from an SS to a plurality of RSs; replying a first acknowledgement character (ACK) from at least one of the RSs to the BS after the at least one of the RSs receives one of the multicast uplink HARQ packets; transmitting an uplink HARQ packet from the at least one of the RSs to a BS; and replying a second ACK from the BS to the SS after the BS receives the uplink HARQ packet. And the uplink HARQ packet is the same as a part of one of the multicast uplink HARQ packets.
Another objective of this invention is to provide a tangible machine-readable medium having executable code to cause a machine to perform a method for transmitting uplink HARQ packets based on a multi-hop relay standard. The method comprises the following steps: transmitting a plurality of multicast uplink HARQ packets from an SS to a plurality of RSs; replying first ACKs from at least two of the RSs to the BS after the at least two of the RSs receive multicast uplink HARQ packets respectively; transmitting uplink HARQ packets from the at least two of the RSs to a BS; and replying a second ACK from the BS to the SS after the BS receives the at least one of the uplink HARQ packets. The uplink HARQ packets are the same as a part of one of the multicast uplink HARQ packets respectively, and are transmitted to the BS simultaneously.
Yet a further objective of this invention is to provide a communication apparatus for relaying an uplink HARQ packet based on a multi-hop relay standard. The communication apparatus comprises a receiving module, a processor, and a transmitting module. The receiving module receives a multicast uplink HARQ packet from an SS. The processor retrieves an uplink HARQ packet in the multicast uplink HARQ packet, wherein the uplink HARQ packet is the same as a part of the multicast uplink HARQ packet. The transmitting module transmits the uplink HARQ packet to a BS.
The aforesaid method can be executed by wireless communication apparatus, such as an SS or an RS in the wireless communication system. By having the SS to transmit a plurality of multicast uplink HARQ packets to a plurality of RSs and having at least one of the RSs to transmit at least one of uplink HARQ packets retrieved from one of the multicast uplink HARQ packets to a BS, this invention can transmit uplink HARQ packets from each SS to the BS of the wireless communication system based on a multi-hop relay standard.
The detailed technology and preferred embodiments implemented for the subject invention are described in the following paragraphs accompanying the appended drawings for people skilled in this field to well appreciate the features of the claimed invention.
As illustrated in
To be more specific, by receiving the NACK NR1-B from the RS1 103 and receiving the ACK AR2-B from the RS2 105, the MR-BS 101 knows that the SS 107 can continue to transmit uplink HARQ packets through the RS2 105 but not the RS1 103. After that, the MR-BS 101 broadcasts new MAPs MB to the RS1 103, RS2 105, and SS 107. Then the RS2 105 retrieves an uplink HARQ packet D1 in the multicast uplink HARQ packet MD1 and transmits the uplink HARQ packet D1 to the MR-BS 101. Finally, the MR-BS 101 determines whether the uplink HARQ packet D1 is correct or not. If the uplink HARQ packet D1 is correct, the MR-BS 101 broadcasts another MAPs MB to the RS1 103, RS2 105, and SS 107, and then transmits an ACK AB-M to the SS 107 through the RS2 105. According to the receipt of the ACK and/or NACK, the MR-BS 101 can schedule the proper RS to forward uplink HARQ packets.
The RS1 103 fails to receive the multicast uplink HARQ packet MD1, while the RS2 105 correctly receives the multicast uplink HARQ packet MD1. Consequently, the RS2 105 can continue to transmit uplink HARQ packets to the MR-BS 101. After that, the RS2 105 retrieves the uplink HARQ packet D1 in the multicast uplink HARQ packet MD1 and directly transmits the uplink HARQ packet D1 to the MR-BS 101. Finally, the MR-BS 101 determines whether the uplink HARQ packet D1 is correct or not. If the uplink HARQ packet D1 is correct, the MR-BS 101 broadcasts new MAPs MB to the RS1 103, RS2 105, and SS 107, and then transmits an ACK AB-M to the SS 107 through the RS2 105.
To be more specific, by receiving the ACK AR1-B from the RS1 103 and receiving the ACK AR2-B from the RS2 105, the MR-BS 101 knows that the SS 107 can continue to transmit uplink HARQ packets through the RS1 103 and/or the RS2 105. After that, the MR-BS 101 broadcasts new MAPs MB to the RS1 103, RS2 105, and SS 107. Then the RS1 103 retrieves an uplink HARQ packet D1 in the multicast uplink HARQ packet MD1 and transmits the uplink HARQ packet D1 to the MR-BS 101. Similarly, the RS2 105 retrieves another uplink HARQ packet D1 in the multicast uplink HARQ packet MD1 and transmits the uplink HARQ packet D1 to the MR-BS 101. By appropriate algorithm and the above MAPs MB, the uplink HARQ packets D1 transmitted by the RS1 103 and RS2 105 will arrive to the MR-BS 101 simultaneously. Finally, the MR-BS 101 determines whether the uplink HARQ packets D1 are correct or not. If the uplink HARQ packets D1 are correct, the MR-BS 101 broadcasts another MAPs MB to the RS1 103, RS2 105, and SS 107, and then transmits ACKs AB-M to the SS 107 through the RS1 103 and RS2 105. According to the receipt of the ACK and/or NACK, the MR-BS 101 can schedule the proper RS to forward uplink HARQ packets.
Similarly, the RS2 105 retrieves another uplink HARQ packet D1 in the multicast uplink HARQ packet MD1 and transmits the uplink HARQ packet D1 to the MR-BS 101. By appropriate algorithm, the uplink HARQ packets D1 transmitted by the RS1 103 and RS2 105 will arrive to the MR-BS 101 simultaneously. Then, for MR-BS 101 to confirm that D1 is correct or not, an optional mechanism may be implemented that the RS1 103 transmits an ACK AR1-B to the MR-BS 101 and the RS2 105 transmits an ACK AR2-B to the MR-BS 101. Finally, the MR-BS 101 determines whether the uplink HARQ packets D1 are correct or not. If the uplink HARQ packets D1 are correct, the MR-BS 101 broadcasts new MAPs MB to the RS1 103, RS2 105, and SS 107, and then transmits ACKs AB-M to the SS 107 through the RS1 103 and RS2 105.
The ACKs and NACKs which are illustrated in
A second embodiment of this invention is a method for transmitting uplink HARQ packets based on a multi-hop relay standard, which is a method applied to the multi-hop relay wireless communication system 1 described in the first embodiment. More specifically, the HARQ packets transmission method of the second embodiment which is illustrated in
The second embodiment of this invention illustrates hop-by-hop transmitting HARQ packets of the multi-hop relay wireless communication system 1 in an uplink case. In step 701, a plurality of RSs, such as the RS1 103 and RS2 105, are grouped into a multicast HARQ group. Next in step 703, MAPs are broadcasted from a BS, such as the MR-BS 101, to the RSs and an SS, such as the SS 107. In step 705, a plurality of first uplink HARQ packets are transmitted from the SS to the RSs. In step 707, a first ACK is replied from at least one of the RSs, such as one of the RS1 103 and RS2 105, to the BS after the at least one of the RSs receives one of the first uplink HARQ packets. In step 709, a second uplink HARQ packet is retrieved in the first uplink HARQ packet by the at least one of the RSs. In step 711, new MAPs are broadcasted from the BS to the RSs and the SS. In step 713, the second uplink HARQ packet is transmitted from the at least one of the RSs to the BS. Finally, in step 715, a second ACK is replied from the BS to the SS directly and/or through one of the RSs after the BS receives the second uplink HARQ packet.
In addition to the steps revealed in
A third embodiment of this invention is a method for transmitting uplink HARQ packets based on a multi-hop relay standard, which is a method applied to the multi-hop relay wireless communication system 1 described in the first embodiment. More specifically, the HARQ packets transmission method of the third embodiment which is illustrated in
The third embodiment of this invention illustrates enhanced hop-by-hop transmitting HARQ packets of the multi-hop relay wireless communication system 1 in an uplink case. In step 801, a plurality of RSs, such as the RS1 103 and RS2 105, are grouped into a multicast HARQ group. Next in step 803, MAPs are broadcasted from a BS, such as the MR-BS 101, to the RSs and an SS, such as the SS 107. In step 805, a plurality of first uplink HARQ packets are transmitted from the SS to the RSs. In step 807, first ACKs are replied from at least two of the RSs, such as the RS1 103 and RS2 105, to the BS after the at least two of the RSs receive two of the first uplink HARQ packets respectively. In step 809, second uplink HARQ packets are retrieved in the first uplink HARQ packets by the at least two of the RSs respectively. In step 811, new MAPs are broadcasted from the BS to the RSs and the SS. In step 813, the second uplink HARQ packets are simultaneously transmitted from the at least two of the RSs to the BS. Finally, in step 815, second ACKs are replied from the BS to the SS directly and/or through one of the RSs after the BS receives the second uplink HARQ packets.
In addition to the steps revealed in
Accordingly, by having an SS to transmit multicast uplink HARQ packets to a plurality of RSs and having one of the RSs to transmit at least one of uplink HARQ packets retrieved from one of the multicast uplink HARQ packets to a BS, this invention can transmit uplink HARQ packets from each SS to the BS of the wireless communication system based on a multi-hop relay standard.
The above disclosure is related to the detailed technical contents and inventive features thereof. People skilled in this field may proceed with a variety of modifications and replacements based on the disclosures and suggestions of the invention as described without departing from the characteristics thereof. Nevertheless, although such modifications and replacements are not fully disclosed in the above descriptions, they have substantially been covered in the following claims as appended.
This application claims the benefit of Provisional Application Ser. No. 60/909,848 filed on Apr. 3, 2007.
Number | Date | Country | |
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60909848 | Apr 2007 | US |