Method and device for configuring uplink semi-persistent scheduling
A semi-persistent scheduling and terminal configuration technology, applied in the direction of signaling allocation, transmission path sub-channel allocation, digital transmission system, etc., can solve the problem of increased service delay, mismatched arrival time of service data packets, and relatively long waiting time, etc. question
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
example 1
[0115] Example 1: The SPS configuration auxiliary information includes service type indication information. After obtaining the SPS configuration assistance information, the base station performs one or a combination of the following operations:
[0116] Determine the period and packet size of the SPS resource according to the service type.
[0117] Determine the physical layer parameters such as frequency domain resource block size and MCS level according to the data packet size.
[0118] The arrival pattern of the SPS service data expected by the terminal is calculated according to the receiving time of the message and the signaling transmission process carrying the message, so as to determine the time domain starting position of the SPS resource.
[0119] Allocate the SPS C-RNTI for the SPS service.
example 2
[0120] Example 2: The SPS configuration auxiliary information includes the expected uplink SPS resource time domain start position, period and data packet size indication.
[0121] After obtaining the SPS configuration assistance information, the base station performs one or a combination of the following operations:
[0122] Determine the period of the SPS according to the desired period.
[0123] Determine the physical layer parameters such as frequency domain resource block size and MCS level according to the data packet size.
[0124] The time-domain start position of the SPS resource is determined according to the time-domain start position of the uplink SPS resource expected by the terminal.
[0125] Allocate the SPS C-RNTI for the SPS service.
example 3
[0126] Example 3: The SPS configuration assistance information includes the desired uplink SPS resource time domain starting position and service type indication information.
[0127] After obtaining the SPS configuration assistance information, the base station performs one or a combination of the following operations:
[0128] Determine the period and packet size of the SPS resource according to the service type.
[0129] Determine the physical layer parameters such as frequency domain resource block size and MCS level according to the data packet size.
[0130] The time-domain start position of the SPS resource is determined according to the time-domain start position of the uplink SPS resource expected by the terminal.
[0131] Allocate the SPS C-RNTI for the SPS service.
[0132] If the SPS configuration auxiliary information is SPS activation indication information, the terminal determines the SPS configuration auxiliary information after meeting the following trigger co...
PUM
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com