The safe and stable operation of pumped storage hydropower (PSH) plants is heavily reliant on the correctness of their Supervisory Control and Data Acquisition (SCADA) systems. Conventional testing methods often fall short in validating the complex, system-wide control logic under comprehensive operational scenarios. To address this, this paper proposes an innovative web-based dynamic simulation test platform featuring a microservices architecture and a zero-client, Simulink-like graphical modeling environment. The platform employs non-linear physics-based models (e.g., rigid water column and dynamic pump-turbine models) to create a high-fidelity virtual replica of a PSH plant. The core contribution lies in enabling engineers to seamlessly translate control logic into executable models without low-level programming. A case study evaluating a governor control algorithm validates the platform’s efficacy. Results demonstrate a highly accurate tracking performance with a maximum error of 0.008 p.u. under normal conditions, and successfully identified a critical overspeed vulnerability (1.42 p.u.) during an injected actuator fault scenario. The platform is further validated through benchmarking against MATLAB/Simulink (trajectory agreement above 99.8%), a quantitative performance characterization (3.1 ms step time, real-time execution scalable to 20 concurrent sessions), a closed-loop hardware-in-the-loop experiment, and a user evaluation yielding a System Usability Scale score of 84.2. This work concludes that the platform provides a robust, risk-free environment for comprehensive pre-commissioning testing, significantly mitigating field deployment risks.
To address the challenges of complex programming, high physicaltesting costs, and lengthy development cycles in conventional diesel engine controller development, this paper describes the design and prototype implementation of an embedded simulation control system for diesel engines, intended for early-stage controller...
Huan Liu, P. Su, Guang-Hui Chang et al.· Electronics· 0 citations
This study presents the design and experimental evaluation of a laboratory-scale High-Pressure Acid Leaching (HPAL) autoclave integrating a Siemens S7-1200 programmable logic controller (PLC), Modbus RTU industrial communication, an Internet of Things (IoT) gateway, and a cloud-based Web-SCADA platform for real-time mo...
Afandy Moh, Yulianti Malik, Abdul Haris Mubarak et al.· Journal of Renewable Energy...· 0 citations
The proliferation of simulation environments has accelerated technological progress across various scientific domains by offering a cost-effective and time-efficient framework for data acquisition and analysis. In the automotive sector, high-fidelity modelling of vehicle components and driving scenarios bypasses the lo...
L. Sequino, P. Sementa, Nunzio Altieri et al.· SAE technical paper series· 0 citations
The research results indicate that integrating digital twin architecture with model-driven design can effectively mitigate insufficient accuracy in single-domain modeling, and can provide clear ideas and references for optimizing multi-domain coupled modeling of aircraft and the digital development of flight control eq...
Yuxuan Zhu· Applied and Computational En...· 0 citations
Modern electrified ground vehicles introduce complex, multi-domain safety requirements, such as post-crash thermal runaway prevention, that expose the traceability limitations of Document-Based Systems Engineering (DBSE). This paper proposes a four-layer, bidirectional digital thread architecture that integrates Model-...
Patrick J. Rye· SAE technical paper series· 0 citations
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