Mission Design
Efficient and comprehensive exploration of all potential trajectory options.
Low Thrust Trajectory / Uncertainty Propagation
Robust low-thrust trajectory design with analytical uncertainty propagation methods
![](https://wp.wpi.edu/lspe/files/2023/12/lt_1.png)
![](https://wp.wpi.edu/lspe/files/2023/12/lt_2.png)
Aerocapture
Orbit insertion maneuver using hypersonic vehicles to enable fast, low-cost, versatile interplanetary missions.
![](https://wp.wpi.edu/lspe/files/2023/12/ac_nobg-1024x663.png)
![](https://wp.wpi.edu/lspe/files/2023/12/Arrival-locus-1024x643.jpg)
Aerogravity-Assist
Orbital maneuver combining gravity-assist and hypersonic maneuvering (aero-assist) to enable novel mission architectures.
![](https://wp.wpi.edu/lspe/files/2023/12/aga_1-1024x731.png)
![](https://wp.wpi.edu/lspe/files/2023/12/aga_2.png)
![](https://wp.wpi.edu/lspe/files/2023/12/aga_3-1024x931.png)
Spacecraft State and Parameter Estimation
Development of dynamic real-time estimation techniques for variable mass properties of spacecraft, enabling accurate ADCS ground testing for complex systems. Integration of multi-layer estimation frameworks to simultaneously estimate attitude states and mass-moment parameters in real-time. Enhancing the fidelity of attitude control system testing for spacecraft with variable configurations, such as those with deployable structures or robotic arms.
![](https://wp.wpi.edu/lspe/files/2024/08/axis-1024x907.png)
![](https://wp.wpi.edu/lspe/files/2024/08/Ek-1024x768.jpg)
![](https://wp.wpi.edu/lspe/files/2024/08/error_quat-4-683x1024.jpg)