The paper examines the role of Polish artillery in a multi-domain battlefield. It uses literature and doctrinal analysis to assess how integration across land, air, sea, space, cyber, and cognitive domains affects artillery effectiveness. Findings show that artillery is increasingly dependent on interoperability, information flow, and systemic resilience. The study highlights new threats and opportunities, including A2/AD development. It concludes that multi-domain integration, rather than firepower alone, determines future combat effectiveness.
This paper examines the use of Virtual Reality (VR) for teaching the historical role of artillery. The methodology combines VR-based scenarios with behavioral and speech analytics supported by Artificial Intelligence. The findings indicate that VR enhances understanding of decision-making under constraints and shifts learners from technical to context-driven reasoning. The results suggest that VR can improve the linkage between theory and operational practice in artillery training. The study contributes by integrating experiential learning with measurable performance indicators and offers a novel approach to military education.
This pilot study evaluates projection-based and virtual reality visualization in flight simulation using objective performance metrics and NASA-TLX workload assessment. A within-subject design with eight pilot students was used to verify a segment-based evaluation framework. Results indicate that virtual reality supports more stable control with lower variability, while projection-based display enables higher accuracy relative to predefined targets. Workload remained low to moderate in both conditions. The findings suggest that visualization modality influences control strategy and support the suitability of the proposed methodology for further research and application in simulation-based pilot training.
This paper examines the compression of the artillery kill chain in a UAS-saturated battlefield, using the Nagorno-Karabakh conflict (2020) as an empirical case. Based on OSINT analysis, the kill chain is decomposed into measurable phases and their temporal intervals estimated. Results indicate a total duration of 60–120 seconds, making time a dominant tactical constraint. The findings highlight implications for artillery tactics, simulation models, and officer education within Joint Fire Support and Multi-Domain Operations. The study provides a transparent framework linking empirical observations with operational practice.
Artificial intelligence is used in a variety of fields: planning operations, helping commanders make decisions, etc. However, the use of artificial intelligence in warfare faces to internationally recognized human rights, the Law of War and the Rules of Engagement. The purpose of this work is to attempt to highlight certain ethical, moral, and legal issues that may be relevant to the development and use of artificial intelligence for military purposes. Since there are not enough investigations related to such fields, this paper will be based on the analysis of the use of robots.