The present invention illustrates a communications method and a communications system for determining a transmission scheme, and more particularly, a communications system for determining a transmission scheme according to at least one temporal parameter.
With the rapid advancements of technologies, several 5th generation (5G) communications are developed and become trends of future telecom or mobile technologies. For example, Ultra-reliable low-latency communications (URLLC) belong to one of several different types of usage cases supported by a 5G new radio (NR) standard. Some physical layer enhancement methods are also introduced to the URLLC according to the 5G NR standard. Generally, the URLLC having the 5G NR standard can be applied to several entertainment communications and industry communications, such as augmented reality (AR) communications, virtual reality (VR) communications, factory automation communications, transport industry communications, and electrical power distribution communications. Targets of the physical layer enhancement methods for the URLLC having the 5G NR standard are to provide a high reliability (e.g., an error rate around 10−6) and a short latency (e.g., 0.5-1 milliseconds).
In NR with multiple transmission and reception points (TRPs), user equipment (UE) can communicate to more than one TRP physically separated in different locations at the same time. However, when the UE transmit a signal to two TRPs simultaneously, channel conditions could vary fast, leading to performance degradation with the same transmission scheme. Specifically, for millimeter wave (mm-Wave) system, the transmitted and received signals are processed with beamforming technologies for enhancing communication performance. However, for the mm-Wave system, the signals may suffer abrupt time characteristic change or even link quality degradation due to blockage issues. These blockage issues also depend on the locations of TRPs and UE. Therefore, to develop an adaptive transmission scheme over time for the multiple TRPs system is an important design issue.
In an embodiment of the present invention, a communications method for determining a transmission scheme according to at least one temporal parameter is disclosed. The communications method comprises providing a communication device, a first transceiver, and a second transceiver, acquiring the at least one temporal parameter, establishing a first link between the communication device and the first transceiver during a first time slot according to the at least one temporal parameter, and establishing a second link between the communication device and the second transceiver during a second time slot according to the at least one temporal parameter. The first time slot and the second time slot are non-overlapped.
In another embodiment of the present invention, a communications system for determining a transmission scheme according to at least one temporal parameter is disclosed. The communications system comprises a communication device, a first transceiver, and a second transceiver. The first transceiver is configured to communicate with the communication device. The second transceiver is configured to communicate with the communication device. After the at least one temporal parameter is acquired, a first link between the communication device and the first transceiver is established during a first time slot according to the at least one temporal parameter. A second link between the communication device and the second transceiver is established during a second time slot according to the at least one temporal parameter. The first time slot and the second time slot are non-overlapped.
For example, in
In a first mode, the transmission schemes can be determined according to transmission configuration indicator information (TCI). For example, the at least one temporal parameter can include TCI measured by the communication device UE. The TCI can be regarded as a measurement indicator including various environmental parameters such as channel responses, channel state information, and signal-to-noise ratio. When the first link L1 is established according to the TCI during the first time slot, a channel capacity of the first link L1 is higher than a channel capacity of the second link L2. Conversely, when the second link L2 is established according to the TCI during the second time slot, a channel capacity of the second link L2 is higher than a channel capacity of the first link L1. Therefore, the communication reliability of the communications system 100 can be improved since the communications system 100 can adaptively select a satisfactory link for performing high reliable data transmission.
In a second mode, the at least one temporal parameter can include downlink control information (DCI) from a physical downlink control channel (PDCCH) received by the user equipment UE. The communication device UE can dynamically switch a link between the first link L1 and the second link L2 through the DCI. Therefore, the transmission scheme can be dynamically switched and can be informed to the first transceiver TRP1 or the second transceiver TRP2 through DCI. For a single DCI case (i.e., if one DCI resource is sent from the first transceiver TRP1 and the second transceiver TRP2), the at least one temporal parameter includes orders of redundant version (RV) sequence of downlink control information (DCI) from a physical downlink control channel (PDCCH). For example, the orders of RV sequence can be orders of incremental redundancy data segments of turbo code applied to the error correcting code words. Further, the communication device UE can indicate number of repetitions and resource allocations according to the RV sequence for switching an appropriate link between the first link L1 and the second link L2. Moreover, an RV identity in the DCI represents two different or same RVs as one pair. A first element of the pair can be applied for a first TCI state. A second element of the pair can be applied for a second TCI state. Therefore, since the first link L1 and the second link L2 are conditionally established, signal reliability of the communications system 100 can be improved.
Details of step S401 to step S404 are illustrated previously. Thus, they are omitted here. In the communications system 100, instead of simultaneously communicating two transceivers (TRP1 and TRP2) with the communication device UE, an appropriate link between the communication device with one of the two transceivers (TRP1 and TRP2) is selected for transmitting data. Therefore, when the channel conditions vary fast, transmission performance degradation with the same communication scheme can be avoided.
To sum up, the present invention discloses a communications method and a communications system for determining a transmission scheme according to at least one temporal parameter. The communications system can acquire at least one temporal parameter from TCI states, DCI states, RV orders, and/or pre-defined sequence. Instead of simultaneously communicating two transceivers with the communication device, the communications system can dynamically select only one appropriate link between one transceiver with the communication device for avoiding channel condition degradation. Therefore, when the channel conditions vary fast, transmission performance can be maintained.
Filing Document | Filing Date | Country | Kind |
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PCT/SG2021/050057 | 2/3/2021 | WO |
Number | Date | Country | |
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62969702 | Feb 2020 | US |