Advanced Four-Wheel-Drive Multi-Axle Coupled Powertrain Test System
Responsible for system design, integration, and implementation of key technologies for a four-wheel-drive multi-axle test system.
Responsible for system design, integration, and implementation of key technologies for a four-wheel-drive multi-axle test system.
Responsible for the supervisory control design and key implementation tasks for hybrid powertrain durability testing.
Contributed to FCU hardware-in-the-loop platform development and validation.
Responsible for technical design, supervisory control, and delivery coordination for 22 hybrid powertrain test benches. All 22 have been delivered.
Responsible for the technical design and key implementation tasks for emissions test control software.
Responsible for the technical design and key implementation tasks for vehicle emissions test control software.
Contributed to the hydrogen value-chain data platform, analysis of demonstration operations, and related research outputs, including seven NBSDC datasets.
Contributed to building a test platform for key fuel cell components and managing the project.
Responsible for implementing and managing the data acquisition project for a hydrogen engine test bench.
Contributed to the development and validation of a low-power single-cell fuel cell test bench.
Led or contributed to the implementation of a component-in-the-loop fuel cell stack test bench, its interfaces between physical and simulated components, and project management.
Led or contributed to the development of a fuel cell thermal management test bench and project management.
Responsible for hydrogen value-chain data analysis, monitoring indicators, and project implementation.
Responsible for developing and deploying the hydrogen monitoring platform and managing the project.
Contributed to SIL platform development, model interfaces, and integration testing.
Contributed to the development and validation of a 250 kW fuel cell engine test bench for high- and low-temperature conditions.
Contributed to the development and validation of a 150 kW fuel cell engine test bench.
Contributed to development and deployment of a fuel cell engine laboratory supervisory control system.
Contributed to building a fuel cell hardware-in-the-loop simulation platform and its interfaces between physical and simulated components.
Led or contributed to the development of a real-time simulation platform for new energy vehicle powertrains and project implementation.
Led or contributed to the development and implementation of a carbon footprint management platform covering the hydrogen value chain.
Contributed to development, control, and experimental validation of a 10 kW fuel cell test bench.
Contributed to electric drive system test-bench development and delivery.
Served as project lead for the upgrade of the motor performance and durability test benches.
Led or contributed to powertrain test software development, platform deployment, and project management.
Led or contributed to simulation platform testing, integration, and project management.
Contributed to the development and delivery of four motor performance and durability test benches.
Contributed to supervisory control system development and delivery for a back-to-back motor test bench.
Contributed to supervisory control development and implementation for an electric drive test bench.
Contributed to electric drive durability test-bench development, supervisory control, and delivery.
Contributed to supervisory control development and delivery for an electric drive test bench.
Contributed to VCU HIL test system development, integration, and validation.