INDUSTRY:
ROBOTICS
ENGAGEMENT:
FREELANCE
PANTHERA 3D
YEAR:
2022
SOFTWARE:
MAYA, KEYSHOT
ROLE:
3D MODELLING, RIGGING, VISUALIZATION

DRONE
PROJECT
DRONE
PROJECT
DRONE
PROJECT
This surveillance drone concept was developed as an integrated aerial monitoring system. The design features four three-blade propellers, a 360° rotating camera with adjustable height, integrated directly into the main body rather than requiring external installation. The concept was designed around a compact, watertight form and was modelled, rigged, and rendered for presentation.
This surveillance drone concept was developed as an integrated aerial monitoring system. The design features four three-blade propellers, a 360° rotating camera with adjustable height, integrated directly into the main body rather than requiring external installation. The concept was designed around a compact, watertight form and was modelled, rigged, and rendered for presentation.
This surveillance drone concept was developed as an integrated aerial monitoring system. The design features four three-blade propellers, a 360° rotating camera with adjustable height, integrated directly into the main body rather than requiring external installation. The concept was designed around a compact, watertight form and was modelled, rigged, and rendered for presentation.
This surveillance drone concept was developed as an integrated aerial monitoring system. The design features four three-blade propellers, a 360° rotating camera with adjustable height, integrated directly into the main body rather than requiring external installation. The concept was designed around a compact, watertight form and was modelled, rigged, and rendered for presentation.




The drone was modelled in Autodesk Maya as a single, compact system, with the propulsion, camera, and main body developed as interconnected components. Particular attention was given to maintaining a clean exterior while integrating the camera system directly into the body
The drone was modelled in Autodesk Maya as a single, compact system, with the propulsion, camera, and main body developed as interconnected components. Particular attention was given to maintaining a clean exterior while integrating the camera system directly into the body
The drone was modelled in Autodesk Maya as a single, compact system, with the propulsion, camera, and main body developed as interconnected components. Particular attention was given to maintaining a clean exterior while integrating the camera system directly into the body
The drone was modelled in Autodesk Maya as a single, compact system, with the propulsion, camera, and main body developed as interconnected components. Particular attention was given to maintaining a clean exterior while integrating the camera system directly into the body




The concept incorporates four three-blade propellers designed to provide an optimal balance between aggressive thrust and air grip during sharp turns. The propeller configuration and surrounding body geometry were developed to support the drone's compact form while maintaining a distinctive mechanical appearance.
The concept incorporates four three-blade propellers designed to provide an optimal balance between aggressive thrust and air grip during sharp turns. The propeller configuration and surrounding body geometry were developed to support the drone's compact form while maintaining a distinctive mechanical appearance.
The concept incorporates four three-blade propellers designed to provide an optimal balance between aggressive thrust and air grip during sharp turns. The propeller configuration and surrounding body geometry were developed to support the drone's compact form while maintaining a distinctive mechanical appearance.
The concept incorporates four three-blade propellers designed to provide an optimal balance between aggressive thrust and air grip during sharp turns. The propeller configuration and surrounding body geometry were developed to support the drone's compact form while maintaining a distinctive mechanical appearance.
A 360° rotating surveillance camera was integrated beneath the main body, with adjustable height to provide flexibility in positioning the camera system. Keeping the mechanism within the drone's main body eliminates the need for an externally mounted camera assembly.
A 360° rotating surveillance camera was integrated beneath the main body, with adjustable height to provide flexibility in positioning the camera system. Keeping the mechanism within the drone's main body eliminates the need for an externally mounted camera assembly.
A 360° rotating surveillance camera was integrated beneath the main body, with adjustable height to provide flexibility in positioning the camera system. Keeping the mechanism within the drone's main body eliminates the need for an externally mounted camera assembly.
A 360° rotating surveillance camera was integrated beneath the main body, with adjustable height to provide flexibility in positioning the camera system. Keeping the mechanism within the drone's main body eliminates the need for an externally mounted camera assembly.


The final model was exported from Autodesk Maya into KeyShot for rendering and presentation. Materials were assigned and adjusted to give the model a photorealistic appearance, to enhance the drone's form, surface qualities, and design details.
The final model was exported from Autodesk Maya into KeyShot for rendering and presentation. Materials were assigned and adjusted to give the model a photorealistic appearance, to enhance the drone's form, surface qualities, and design details.
The final model was exported from Autodesk Maya into KeyShot for rendering and presentation. Materials were assigned and adjusted to give the model a photorealistic appearance, to enhance the drone's form, surface qualities, and design details.

