ORIENTATION CONTROL OF AN IMAGE SENSOR OF A PORTABLE DIGITAL VIDEO CAMERA
A camera accessory includes one or more kinematic sensor(s), such as accelerometer(s) and/or angular rate sensor(s), an actuator, and a coupling mechanism to adjust the orientation of a horizontal image plane of an image sensor of a digital video camera independent of the orientation of the camera housing of the digital video camera.
1 - 25 . (canceled)
26 . A camera accessory, comprising:
an accessory housing having an accessory mounting system for engaging a camera mounting system of a digital video camera, the digital video camera comprising an image sensor and a camera housing having a first orientation with respect to a scene;
an angular rate sensor configured to sense orientation of the camera accessory;
an accelerometer configured to sense acceleration of the camera accessory;
an actuator;
a control gear directly or indirectly coupled to the actuator and a frame gear, wherein the frame gear is coupled to the digital video camera; and
a controller communicatively coupled to the angular rate sensor and the accelerometer, the controller configured to:
receive orientation data from the angular rate sensor and acceleration data from the accelerometer,
generate one or more control signals based at least in part on the orientation data and the acceleration data, and
communicate the one or more control signals to the actuator, wherein the actuator induces a rotational movement of the control gear and the frame gear such that the image sensor of the digital video camera has a second orientation with respect to the scene that is different from the first orientation.
27 . A camera accessory, comprising:
an accessory housing having an accessory mounting system operable for engaging a camera mounting system of a digital video camera, the digital video camera comprising an image sensor and a camera housing having a first orientation with respect to a scene;
one or more kinematic sensors configured to sense at least one of orientation and movement of the digital video camera;
a control gear coupled a frame gear, wherein the frame gear is coupled to the digital video camera; and
an actuator directly or indirectly coupled to the control gear, the actuator configured to induce a rotational movement of the control gear and the frame gear such that the image sensor of the digital video camera has a second orientation with respect to the scene that is different from the first orientation.
28 . The camera accessory of claim 27 , wherein the actuator induces the rotational movement of the image sensor about a longitudinal axis of the camera accessory.
29 . The camera accessory of claim 27 , further comprising:
a controller communicatively coupled to the one or more kinematic sensors and the actuator, the controller configured to:
receive kinematic data from the one or more kinematic sensors,
determine a measured orientation of the digital video camera based at least in part on the received kinematic data;
determine a threshold difference between the measured orientation and a desired orientation of the digital video camera is not satisfied;
based at least in part on the determination that the threshold difference is not satisfied, generate one or more control signals for the actuator; and
send the one or more control signals to the actuator, wherein the one or more control signals cause the actuator to induce the rotational movement of the image sensor.
30 . The camera accessory of claim 29 , wherein the desired orientation is determined based at least in part on a user input to at least one of the digital video camera and the camera accessory.
31 . The camera accessory of claim 27 , wherein the one or more kinematic sensors comprise one or more accelerometers configured to sense acceleration of the camera accessory, and wherein the actuator is configured to induce the rotational movement of the control gear based at least in part on the acceleration of the camera accessory.
32 . The camera accessory of claim 31 , wherein the one or more accelerometers comprise a dual-axis accelerometer and a single axis accelerometer.
33 . The camera accessory of claim 31 , wherein the one or more accelerometers comprise a three-axis accelerometer.
34 . The camera accessory of claim 31 , wherein the one or more accelerometers employ a sample rate between 400 Hz and 1000 Hz.
35 . The camera accessory of claim 31 , wherein the one or more accelerometers employ low power consumption and suitable linearity and have a small physical size and an analog to digital converter.
36 . The camera accessory of claim 27 , wherein the one or more kinematic sensors comprise one or more angular rate sensors configured to sense an orientation of the camera accessory, and wherein the actuator is configured to induce the rotational movement of the control gear based at least in part on the orientation of the camera accessory.
37 . The camera accessory of claim 36 , wherein the one or more angular rate sensors comprise a dual-axis gyroscope.
38 . The camera accessory of claim 36 , wherein the one or more angular rate sensors comprise a dual-axis gyroscope and a single axis gyroscope.
39 . The camera accessory of claim 36 , wherein the one or more angular rate sensors comprise different types of gyroscopes.
40 . The camera accessory of claim 36 , wherein one or more angular rate sensors employ a sample rate between 400 Hz and 1000 Hz.
41 . The camera accessory of claim 36 , wherein the one or more angular rate sensors comprise employ low power consumption and suitable linearity and has a small physical size and an analog to digital converter.
42 . A method, comprising:
receiving kinematic data of a camera accessory from a kinematic sensor coupled to the camera accessory, the camera accessory coupled to a digital video camera having a first orientation with respect to a scene; and
causing an actuator to induce a rotational movement of an image sensor of the digital video camera coupled to the camera accessory in response to the at least one of orientation and movement of the camera accessory such that the image sensor has a second orientation with respect to the scene that is different from the first orientation.