The principal dynamic disturbances acting on a telescope segmented primary mirror are unsteady wind pressure (turbulence) and narrowband vibration from rotating equipment. Understanding these disturbances is essential for the design of the segment support assembly (SSA), segment actuators, and primary mirror control system (M1CS). The wind disturbance is relatively low frequency, and is partially compensated by M1CS; the response depends on the control bandwidth and the quasi-static stiffness of the actuator and SSA. Equipment vibration is at frequencies higher than the M1CS bandwidth; the response depends on segment damping, and the proximity of segment support resonances to dominant vibration tones. We present here both disturbance models...
A parametric model of the dynamic performance of an optical telescope due to wind-buffeting is prese...
Unsteady wind loads due to turbulence inside the telescope enclosure result in image jitter and high...
Unsteady wind loads due to turbulence inside the telescope enclosure result in image jitter and high...
The principal dynamic disturbances acting on a telescope segmented primary mirror are unsteady wind ...
The primary mirror control system (M1CS) keeps the 492 segments of the Thirty Meter Telescope primar...
The Thirty Meter Telescope primary mirror is composed of 492 segments that are controlled to high pr...
The primary mirror control system (M1CS) keeps the 492 segments of the Thirty Meter Telescope primar...
Dynamic disturbance sources affecting the optical performance of the Thirty Meter Telescope (TMT) in...
Dynamic disturbance sources affecting the optical performance of the Thirty Meter Telescope (TMT) in...
The primary mirror control system (M1CS) stabilizes the 492 segments of the Thirty Meter Telescope p...
The primary mirror control system (M1CS) stabilizes the 492 segments of the Thirty Meter Telescope p...
The Thirty Meter Telescope has 492 primary mirror segments, each incorporated into a Primary Segment...
The Thirty Meter Telescope has 492 primary mirror segments, each incorporated into a Primary Segment...
The primary mirror control system for the Thirty Meter Telescope (TMT) maintains the alignment of th...
A parametric model of the dynamic performance of an optical telescope due to wind-buffeting is prese...
A parametric model of the dynamic performance of an optical telescope due to wind-buffeting is prese...
Unsteady wind loads due to turbulence inside the telescope enclosure result in image jitter and high...
Unsteady wind loads due to turbulence inside the telescope enclosure result in image jitter and high...
The principal dynamic disturbances acting on a telescope segmented primary mirror are unsteady wind ...
The primary mirror control system (M1CS) keeps the 492 segments of the Thirty Meter Telescope primar...
The Thirty Meter Telescope primary mirror is composed of 492 segments that are controlled to high pr...
The primary mirror control system (M1CS) keeps the 492 segments of the Thirty Meter Telescope primar...
Dynamic disturbance sources affecting the optical performance of the Thirty Meter Telescope (TMT) in...
Dynamic disturbance sources affecting the optical performance of the Thirty Meter Telescope (TMT) in...
The primary mirror control system (M1CS) stabilizes the 492 segments of the Thirty Meter Telescope p...
The primary mirror control system (M1CS) stabilizes the 492 segments of the Thirty Meter Telescope p...
The Thirty Meter Telescope has 492 primary mirror segments, each incorporated into a Primary Segment...
The Thirty Meter Telescope has 492 primary mirror segments, each incorporated into a Primary Segment...
The primary mirror control system for the Thirty Meter Telescope (TMT) maintains the alignment of th...
A parametric model of the dynamic performance of an optical telescope due to wind-buffeting is prese...
A parametric model of the dynamic performance of an optical telescope due to wind-buffeting is prese...
Unsteady wind loads due to turbulence inside the telescope enclosure result in image jitter and high...
Unsteady wind loads due to turbulence inside the telescope enclosure result in image jitter and high...