component is the Alert Engine, which automatically evaluates incoming measurements against the Trigger Action Response Plan (TARP) thresholds configured for each specific asset (e.g., a piezometer in a TSF embankment). Upon detecting a breach, it instantly triggers multi-channel notifications (email, SMS, messaging apps) to the responsible personnel. Simultaneously, the processing engine pushes real-time updates to the active dashboards, providing decision-makers with sub-second situational awareness without the need for manual page refreshes. The Interface Layer comprises the web-based platform serving as the central Command Center for authenticated stakeholders. Recognizing the sensitive nature of geotechnical intelligence, the backend service enforces enterprise-grade data governance through Role-Based Access Control (RBAC) and Two-Factor Authentication (2FA), ensuring that critical data and TARP configurations are only accessible to authorized personnel. The frontend democratizes data access by delivering interactive, map based dashboards (integrating 3D orthophotos and InSAR layers) alongside analytical tools for trend characterization. By consolidating instrument lifecycle tracking, one-click compliance reporting, and document management into a single pane of glass, this layer significantly reduces the cognitive load on geotechnical engineers, allowing them to focus on risk analysis rather than data gathering. To ensure both cost-efficiency and rigorous compliance with auditing standards, the Storage Layer employs a tripartite paradigm tailored to different operational needs: ● Relational Database: Safely houses structured corporate metadata, user governance, and project hierarchies. ● Time-Series Big Data Store: Optimized to instantly query millions of highvelocity sensor readings, enabling long-term back-analysis and trend forecasting. ● Object Storage: Acts as the immutable digital archive for binary assets such as calibration certificates, photographic inspections, and auto-generated PDF reports. This hybrid storage approach guarantees that the "Single Source of Truth" remains intact and fully traceable throughout the life-of-mine, effectively converting transient project data into a permanent, auditable corporate asset. 4. CLOUD-AGNOSTIC TECHNOLOGY INFRASTRUCTURE: BUSINESS CONTINUITY AND DATA SOVEREIGNTY To ensure that a geotechnical asset management platform is truly resilient and compliant with stringent global standards (such as the GISTM), the underlying infrastructure must avoid rigid dependencies on proprietary services. This paper proposes an infrastructure framework deliberately designed to prioritize operational continuity, data sovereignty, and financial efficiency, as illustrated in the "Cloud Provider" environment of Figure 2. As depicted in the architecture diagram, the platform utilizes generic, standard-based components (e.g., MQTT Brokers, RESTful APIs, standard Message Queues) rather than proprietary cloudnative locked services. For decision-makers, this translates into a robust safeguard against arbitrary price hikes by technology giants. This flexibility empowers mining procurement teams to migrate the entire platform to the cloud provider (AWS, Azure, Google Cloud) that offers the most
RkJQdWJsaXNoZXIy MTM0Mzk2