Towards xApp Conflict Evaluation with Explainable Machine Learning and Causal Inference in O-RAN

Fuente: arXiv
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Main Authors: Sharma, Pragya, Sun, Shihua, Deshpande, Shachi, Stavrou, Angelos, Wang, Haining
Format: Preprint
Published: 2025
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author Sharma, Pragya
Sun, Shihua
Deshpande, Shachi
Stavrou, Angelos
Wang, Haining
author_facet Sharma, Pragya
Sun, Shihua
Deshpande, Shachi
Stavrou, Angelos
Wang, Haining
contents The Open Radio Access Network (O-RAN) architecture enables a flexible, vendor-neutral deployment of 5G networks by disaggregating base station components and supporting third-party xApps for near real-time RAN control. However, the concurrent operation of multiple xApps can lead to conflicting control actions, which may cause network performance degradation. In this work, we propose a framework for xApp conflict management that combines explainable machine learning and causal inference to evaluate the causal relationships between RAN Control Parameters (RCPs) and Key Performance Indicators (KPIs). We use model explainability tools such as SHAP to identify RCPs that jointly affect the same KPI, signaling potential conflicts, and represent these interactions as a causal Directed Acyclic Graph (DAG). We then estimate the causal impact of each of these RCPs on their associated KPIs using metrics such as Average Treatment Effect (ATE) and Conditional Average Treatment Effect (CATE). This approach offers network operators guided insights into identifying conflicts and quantifying their impacts, enabling more informed and effective conflict resolution strategies across diverse xApp deployments.
format Preprint
id arxiv_https___arxiv_org_abs_2510_13031
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Towards xApp Conflict Evaluation with Explainable Machine Learning and Causal Inference in O-RAN
Sharma, Pragya
Sun, Shihua
Deshpande, Shachi
Stavrou, Angelos
Wang, Haining
Networking and Internet Architecture
Systems and Control
The Open Radio Access Network (O-RAN) architecture enables a flexible, vendor-neutral deployment of 5G networks by disaggregating base station components and supporting third-party xApps for near real-time RAN control. However, the concurrent operation of multiple xApps can lead to conflicting control actions, which may cause network performance degradation. In this work, we propose a framework for xApp conflict management that combines explainable machine learning and causal inference to evaluate the causal relationships between RAN Control Parameters (RCPs) and Key Performance Indicators (KPIs). We use model explainability tools such as SHAP to identify RCPs that jointly affect the same KPI, signaling potential conflicts, and represent these interactions as a causal Directed Acyclic Graph (DAG). We then estimate the causal impact of each of these RCPs on their associated KPIs using metrics such as Average Treatment Effect (ATE) and Conditional Average Treatment Effect (CATE). This approach offers network operators guided insights into identifying conflicts and quantifying their impacts, enabling more informed and effective conflict resolution strategies across diverse xApp deployments.
title Towards xApp Conflict Evaluation with Explainable Machine Learning and Causal Inference in O-RAN
topic Networking and Internet Architecture
Systems and Control
url https://arxiv.org/abs/2510.13031