1460918707-fbd35e1e-b805-4b8c-9ec6-d3a04d565452

1. An image processing apparatus, comprising:
a moving image acquisition unit which acquires a moving image captured under a first capturing situation;
a trajectory correction unit which corrects a trajectory of a moving object in the moving image acquired by the moving image acquisition unit to fit the trajectory to a second capturing situation, which is different from the first capturing situation; and
a display control unit which causes a display unit to display the trajectory corrected by the trajectory correction unit.
2. The image processing apparatus according to claim 1, wherein the trajectory correction unit corrects the trajectory of the moving object in the moving image captured under the first capturing situation based on a difference between a first characteristic point in the moving image captured under the first capturing situation and a second characteristic point in a moving image captured under the second capturing situation, which is different from the first capturing situation.
3. The image processing apparatus according to claim 1, wherein the first and the second capturing situations include a direction andor a position in which the moving image of a series of motion of a subject is captured with a capturing unit.
4. The image processing apparatus according to claim 1, wherein the trajectory correction unit includes:
a first trajectory acquisition unit which acquires the trajectory of the moving object from the moving image captured under the first capturing situation;
a first capturing angle calculation unit which calculates a capturing angle of the capturing unit under the first capturing situation;
a second capturing angle calculation unit which calculates a capturing angle of the capturing unit under the second capturing situation;
a capturing angle difference calculation unit which calculates a difference between the capturing angle calculated by the first capturing angle calculation unit and the capturing angle calculated by the second capturing angle calculation unit; and
the correction unit which corrects the trajectory acquired by the first trajectory acquisition unit, based on the difference in capturing angle calculated by the capturing angle difference calculation unit, wherein
the display control unit causes the display unit to display the trajectory corrected by the correction unit.
5. The image processing apparatus according to claim 4, wherein the trajectory correction unit includes:
a first setting unit which sets at least two straight lines intersecting at a first characteristic point in the moving image obtained by capturing with the capturing unit under the first capturing situation; and
a second setting unit which sets at least two straight lines intersecting at a second characteristic point in the moving image obtained by capturing with the capturing unit under the second capturing situation, which is different from the first capturing situation, wherein
the first capturing angle calculation unit calculates the capturing angle of the capturing unit under the first capturing situation from an angle formed by the at least two straight lines set by the first setting unit, and
the second capturing angle calculation unit calculates the capturing angle of the capturing unit under the second capturing situation based on an angle formed by the at least two straight lines set by the second setting unit.
6. The image processing apparatus according to claim 2, wherein the trajectory correction unit includes:
an image specifying unit which specifies an image of the moving object; and
an image extraction unit which extracts an image corresponding to the image specified by the image specifying unit from the moving image captured with the capturing unit under the first situation, wherein
the first trajectory acquisition unit acquires the trajectory based on the image extracted by the image extraction unit.
7. The image processing apparatus according to claim 2, wherein the trajectory correction unit includes:
a third setting unit which sets a straight line as a third characteristic point in the moving image captured with the capturing unit under the first capturing situation;
a fourth setting unit which sets a straight line as a fourth characteristic point in the moving image captured with the capturing unit under the second capturing situation; and
a ratio calculation unit which calculates a ratio of a length of the straight line set by the third setting unit to a length of the straight line set by the fourth setting unit, wherein
the correction unit further corrects the position of the trajectory acquired by the first trajectory acquisition unit based on the ratio calculated by the ratio calculation unit.
8. The image processing apparatus according to claim 7, wherein the trajectory correction unit includes:
a position difference calculation unit which calculates a difference in position between the straight line set by the third setting unit and the straight line set by the fourth setting unit, wherein
the correction unit further corrects the position of the trajectory acquired by the trajectory acquisition unit, based on the difference in position calculated by the position difference calculation unit.
9. The image processing apparatus according to claim 5, wherein
the first setting unit sets at least two straight lines for each moving object in moving images captured with a plurality of capturing angles by the capturing unit under the first capturing situation,
the trajectory acquisition unit acquires the trajectory for each captured;
the first capturing angle calculation unit calculates the plurality of capturing angles, wherein
the capturing angle calculation unit includes:
a selection unit which selects the capturing angle closest to the capturing angle calculated by the second capturing angle calculation unit from the plurality of capturing angles calculated by the first capturing angle calculation unit; and
a difference calculation unit which calculates a difference between the capturing angle selected by the selection unit and the capturing angle calculated by the second capturing angle calculation unit, wherein
the correction unit corrects the position of a trajectory corresponding to the capturing angle selected by the capturing angle difference calculation unit among the plurality of trajectories acquired by the first trajectory acquisition unit, based on the difference in capturing angle calculated by the difference calculation unit.
10. The image processing apparatus according to claim 4, wherein the first trajectory acquisition unit sets a straight line as the moving object, and obtains a trajectory of the straight line as the trajectory.
11. The image processing apparatus according to claim 1, wherein
the trajectory correction unit includes a second trajectory acquisition unit acquiring a trajectory of another moving object different from the moving object from the moving image captured with the capturing unit under the second capturing situation, and
the display control unit causes the display unit to display the trajectory of the another moving object acquired by the second trajectory acquisition unit together with the trajectory corrected by the trajectory correction unit.
12. The image processing apparatus according to claim 11, wherein
the trajectory correction unit includes a trajectory difference judgment unit which judges the difference between the corrected trajectory and a second trajectory acquired by the second trajectory acquisition unit, and
the display control unit causes the display unit to display according to the result of judgment by the trajectory difference judgment unit.
13. The image processing apparatus according to claim 1, wherein the display control unit causes the display unit to display the corrected trajectory unit corresponding to a still image at a predetermined time in the moving image captured with the capturing unit under the first capturing situation.
14. An image processing method using an image processing apparatus, comprising:
a moving image acquisition step of acquiring a moving image captured under a first capturing situation;
a trajectory correction step of correcting a trajectory of a moving object in the moving image acquired by the moving image acquisition step to fit the trajectory to a second capturing situation, which is different from the first capturing situation; and
a display control step of displaying the trajectory corrected by the trajectory correction step.
15. A recording medium storing computer readable programs which make a computer to function as:
a moving image acquisition unit which acquires a moving image captured under a first capturing situation;
a trajectory correction unit which corrects a trajectory of a moving object in the moving image acquired by the moving image acquisition unit to fit the trajectory to a second capturing situation, which is different from the first capturing situation; and
a display control unit which causes a display unit to display the trajectory corrected by the trajectory correction unit.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A wired pipe system comprising:
a wired pipe segment having a first end and a second end;
a first coupler in the first end and a second coupler in the second end; and
a transmission medium disposed in the wired pipe segment between the first and second ends and providing at least part of an electrical path between the first and second couplers, the transmission medium comprising:
an assembly that includes an inner conductor surrounded over at least a portion of its length by an insulating material;
a fixation element surrounding and attached to the assembly at or near an end of the assembly; and
a wire channel surrounding at least a portion of a length of the assembly and the fixation element, the wire channel being fixedly connected to the fixation element;

wherein the insulating material includes external threads that mate with internal threads of the fixation element.
2. The wired pipe system of claim 1, wherein the fixation element includes external threads that mate with internal threads of the wire channel.
3. A wired pipe system comprising:
a wired pipe segment having a first end and a second end;
a first coupler in the first end and a second coupler in the second end; and
a transmission medium disposed in the wired pipe segment between the first and second ends and providing at least part of an electrical path between the first and second couplers, the transmission medium comprising:
an assembly that includes an inner conductor surrounded over at least a portion of its length by an insulating material;
a fixation element surrounding and attached to the assembly at or near an end of the assembly; and
a wire channel surrounding at least a portion of a length of the assembly and the fixation element, the wire channel being fixedly connected to the fixation element;

wherein the fixation element includes external threads that mate with internal threads of the wire channel.
4. The wired pipe system of claim 3, wherein the wire channel extends beyond an end of at least one of the inner conductor and the insulating material.
5. The wired pipe system of claim 3, further comprising:
a connector disposed at least partially between the assembly and a communication coupler, the connector electrically connecting the communication coupler to the inner conductor.
6. The wired pipe system of claim 5, wherein the connector is at least partially disposed within the wire channel.
7. The wired pipe system of claim 6, wherein a portion of the inner conductor extends beyond an end of the insulating material and is in electrical contact with the connector.