The system visually represents geomechanical risk levels through an intuitive traffic light scheme (green, yellow, and red), displayed directly within operational work areas. This approach enables personnel to identify increasing risk levels before the occurrence of major instability events, supporting rapid decision-making and proactive safety actions, thereby supporting preventive risk management practices by enabling timely operational responses to changing geomechanical conditions. The proposed system represents a paradigm shift in geomechanical risk prevention, transforming microseismic data into actionable information and establishing a new benchmark for preventive safety management in underground mining. 2. OBJECTIVES 2.1. GENERAL OBJECTIVE To demonstrate the impact and effectiveness of a real-time visual and audible alert system as a key tool for proactive and safe geomechanical risk management in underground mining operations. 2.2. SPECIFIC OBJECTIVES • To verify continuous and stable real-time integration between the SQL-based microseismic database and the existing SCADA system (Supervisory Control and Data Acquisition). • To evaluate the performance of the implemented traffic light–style visual interface by analyzing its effectiveness in communicating microseismic risk levels based on event location and magnitude. • To supervise the operational status of visual and audible alert devices installed at strategic underground locations, ensuring their contribution to preventive personnel response. • To analyze the results of the pilot implementation, incorporating workforce feedback to validate system effectiveness and to define guidelines for optimization and potential scaling. 3. DATA COMPILATION AND PROJECT DEVELOPMENT The execution of the project was structured into several key stages, ensuring technical validation, operational feasibility, and effective integration with existing mining systems. 60
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