Description
PEIPS is a power-saving feature introduced in 3GPP Release 17 for 5G New Radio (NR). It operates by dividing UEs in a paging occasion into multiple subgroups. Before the full paging message is transmitted, the network sends a Paging Early Indication (PEI) signal in a specific PEI occasion. This PEI is a compact, low-complexity signal that indicates whether a paging message for a particular subgroup will follow in the subsequent paging occasion. The UE, configured with a specific subgroup ID, only needs to monitor the PEI for its subgroup. If the PEI indicates 'paging present' for its subgroup, the UE then wakes up its main receiver to decode the full Paging Downlink Control Information (DCI) and the paging message on the Physical Downlink Shared Channel (PDSCH). If the PEI indicates 'no paging' for its subgroup, the UE can immediately return to a deep sleep state, skipping the more power-intensive decoding of the full paging channel. The architecture involves coordination between the Access and Mobility Management Function (AMF) in the core network, which initiates paging, and the gNB in the RAN, which schedules and transmits the PEI and paging messages. The subgroup assignment is typically derived from the UE's 5G-S-TMSI, ensuring a deterministic mapping. This mechanism is crucial for managing paging load and is specified across RAN and core network protocols, including NGAP (38.413), XnAP (38.423), F1AP (38.473), and the NAS protocol (24.501).
Purpose & Motivation
PEIPS was created to address the critical challenge of power consumption for User Equipment (UE), especially for massive Machine-Type Communication (mMTC) devices and always-on mobile phones. In previous 5G releases, a UE in RRC_IDLE or RRC_INACTIVE state had to periodically wake up to monitor full paging occasions, which involves decoding the PDCCH for DCI format 1_0 scrambled with the P-RNTI. This process consumes significant battery power, even when no paging message is intended for that UE. The problem is exacerbated with the growth of IoT, where devices may need to operate for years on a single battery charge. PEIPS solves this by introducing a two-step filtering process. The lightweight PEI signal acts as a 'wake-up signal' only for a subset of UEs. This dramatically reduces the number of times a UE must fully activate its high-power radio components. The motivation stems from the industry's push for extreme energy efficiency in 5G-Advanced and beyond, enabling new use cases for low-power sensors and wearables while improving the battery life of smartphones. It directly tackles a key limitation of the legacy paging procedure where energy was wasted on decoding irrelevant paging information.
Classification
Release Timeline
Detected Changes Across Releases
from 3GPP Change RequestsSpecific changes extracted from the „Change history“ tables of 3GPP specifications (11 CRs across 3 releases). Complements the general historical overview above with the evidence-based evolution of this function.
In Release 17, the PEIPS (Paging Early Indication with Paging Subgrouping) function was newly introduced, enabling the UE to provide PEIPS assistance information, including a Paging subgroup ID and UE paging probability information, to the network during registration. This introduction required new 5GMM capabilities, such as the NR paging subgrouping supported bit, and defined new information elements like the Requested and Negotiated PEIPS assistance information IEs for the registration procedure. The release also specified procedures for the network to store this information and for the UE to use it only after successful negotiation.
In Release 18, the PEIPS function was enhanced with procedures for acknowledging negotiated information via a Registration Complete message and for indicating the Paging subgroup ID to the Access Stratum layer. Furthermore, corrections and clarifications were introduced for the PEIPS assistance information itself and for handling abnormal cases during its negotiation. These updates built upon the existing framework where the UE and network negotiate and store PEIPS assistance information containing the Paging subgroup ID.
- Clarification on abnormal case handling when PEIPS information is negotiatied TS 24.501CR5672
- Correction to PEIPS information in abnormal case TS 24.501CR5716
- PEIPS: Indicating Paging subgroup ID to Access Stratum layer TS 24.501CR5527
- Correction on the PEIPS assistance information TS 24.501CR6037
- Sending registration complete message for PEIPS information acknowledgment. TS 24.501CR5448
In Release 19, the PEIPS function was refined through corrections, clarifications, and alignment work, including a specific correction to the PEIPS assistance information IE length. The release also introduced additional corrections jointly addressing PEIPS alongside WUS and LP-WUSPS assistance information, focusing on the procedures for providing and negotiating this assistance information between the UE and the AMF.
Explore further
Broader topics and technologies where PEIPS plays a role.
Defining Specifications
3GPP specifications that define or reference PEIPS, with the latest known release. Sourced from the 3GPP document catalog — see methodology.
| Specification | Title | Release |
|---|---|---|
| TS 24.501 vj50 | 5G NAS Protocols Specification | Rel-19 |
| TS 38.413 vj10 | NG Application Protocol (NGAP) | Rel-19 |
| TS 38.423 vj10 | Xn Application Protocol (XnAP) specification | Rel-19 |
| TS 38.473 vj10 | 5G F1 Application Protocol (F1AP) | Rel-19 |