Description
The Packet Set Delay Budget (PSDB) is a Quality of Service (QoS) characteristic introduced in 5G System (5GS) to support deterministic communication, particularly for Industrial IoT and time-sensitive networking. Unlike the traditional Packet Delay Budget (PDB), which specifies a latency bound for individual packets, the PSDB applies to a 'Packet Set'. A Packet Set is defined as one or more packets that are temporally related, such as packets generated from a single sensor scan or a coordinated multi-actuator command. The PSDB defines the maximum allowed time from the generation of the first packet in the set at the source application until the successful delivery of the last packet in the set to the destination application, traversing the 5G system. This end-to-end delay includes all processing, queuing, and transmission delays across the UE, radio access network (RAN), user plane functions (UPF), and any associated time-sensitive networking (TSN) translators. The 5G core network uses the PSDB, along with other QoS parameters like the 5G QoS Identifier (5QI), to establish appropriate QoS Flows with the necessary resource allocation and scheduling policies in the RAN and core. For the RAN, supporting PSDB may require enhanced scheduling algorithms that consider the temporal relationship within a packet set, potentially prioritizing the delivery of the remaining packets in a set as the PSDB deadline approaches. The PSDB is a key enabler for the 5GS to act as a TSN bridge, integrating seamlessly with wired TSN networks that use similar group-based timing concepts. Its specification involves complex interaction between the Service Based Interface (SBI) for QoS policy control (via the PCF) and the N2/N4 interfaces for session management and forwarding rule enforcement.
Purpose & Motivation
The creation of the Packet Set Delay Budget (PSDB) was motivated by the stringent requirements of emerging industrial automation and control applications within the 5G framework. Traditional QoS mechanisms, designed for human-centric services like voice or video streaming, focus on the performance of individual packets (e.g., average delay, jitter). However, in a coordinated cyber-physical system, such as a robotic assembly line or motion control, the correct operation depends on the synchronized arrival of a related set of data packets at multiple endpoints. The failure or excessive delay of even one packet within a set can render the entire set useless and disrupt the control loop. The individual Packet Delay Budget (PDB) was insufficient to guarantee this collective timeliness. PSDB was introduced to address this gap, providing a QoS metric that aligns with the semantic requirements of deterministic applications. It allows the network to understand and enforce timing guarantees for logically grouped data, enabling 5G to support true deterministic latency for the first time. This evolution was driven by 3GPP's work on integration with IEEE Time-Sensitive Networking (TSN) and the needs of vertical industries under the umbrella of Ultra-Reliable Low-Latency Communication (URLLC) enhancements. PSDB solves the problem of providing temporal coordination over a wireless medium, a critical step for 5G's adoption in mission-critical industrial environments where wired TSN networks are prevalent.
Classification
Release Timeline
Detected Changes Across Releases
from 3GPP Change RequestsSpecific changes extracted from the „Change history“ tables of 3GPP specifications (2 CRs across 2 releases). Complements the general historical overview above with the evidence-based evolution of this function.
In Release 18, the PSDB (Packet Set Delay Budget) function was introduced as a new PDU Set QoS parameter that supersedes the legacy PDB (Packet Delay Budget) per direction when applied. Specifically, when PDU Set based QoS Handling is enabled and PSDB parameters are provided for a QoS Flow, the NG-RAN uses the PSDB and its companion PSER (Packet Set Error Rate) instead of the PDB and PER for QoS actions in that direction. This allows the 5G-AN to configure scheduling based on the delay budget for an entire set of related packets, with the AN PSDB being derived by subtracting the Core Network PDB from the end-to-end value.
- PSER and PSDB supersede the PER and PDB per direction TS 23.501CR5224
In Release 19, the primary update for the Packet Set Delay Budget (PSDB) function was a clarification on its application within alternative QoS profiles. The specification now explicitly states that if a standard QoS Profile includes PSDB and PSER, then any associated Alternative QoS Profile must also include these PDU Set QoS parameters in the corresponding direction. This ensures consistency when an application is allowed to adapt to a less preferred QoS profile, maintaining the PDU Set based QoS handling framework.
- Clarification on the PSDB and PSER in the alternative QoS TS 29.514CR0772
Explore further
Broader topics and technologies where PSDB plays a role.
Defining Specifications
3GPP specifications that define or reference PSDB, with the latest known release. Sourced from the 3GPP document catalog — see methodology.
| Specification | Title | Release |
|---|---|---|
| TS 23.501 vk00 | 5G System Architecture Stage 2 | Rel-20 |
| TS 23.700 vk00 | XR Services Application Enablement Layer | Rel-20 |
| TS 26.804 vj10 | 5G Media Streaming Extensions Study | Rel-19 |
| TS 29.514 vj40 | 5G System; Policy Authorization Service; Stage 3 | Rel-19 |
| TS 38.300 vj00 | NG-RAN Overall Description | Rel-19 |
| TR 38.835 vi01 | Technical Report on XR Enhancements for NR | Rel-18 |