Management system, method, and storage medium
A management system for managing a walk training apparatus according to one aspect of the present disclosure includes: a state detecting portion configured to detect a loaded state in which the user applies a load to the walk training apparatus during use of the walk training apparatus; an evaluation value calculating portion configured to calculate an evaluation value based on which the load applied to the walk training apparatus by the user is evaluated; and a timing determination portion configured to, in a case where the evaluation value is equal to or more than a threshold associated with the walk training apparatus, determine that a timing of maintenance of the walk training apparatus has come.
1 . A management system for managing a walk training apparatus for a user to perform walking training, the management system comprising:
a state detecting portion configured to detect a loaded state in which the user applies a load to the walk training apparatus during use of the walk training apparatus;
an evaluation value calculating portion configured to calculate an evaluation value based on which the load applied to the walk training apparatus by the user is evaluated; and
a timing determination portion configured to, in a case where the evaluation value is equal to or more than a threshold associated with the walk training apparatus, determine that a timing of maintenance of the walk training apparatus has come, wherein
the state detecting portion detects a fall of the user during use of the walk training apparatus,
the evaluation value is an integrated load based on a number of times of the fall of the user and a predetermined load,
the predetermined load is equal to or more than the load to be applied by the user to a connecting tool via which the user is connected to the walk training apparatus, and
the threshold is an integrated load capacity corresponding to the number of times of the fall of the user based on a durability of the connecting tool.
2 . The management system according to claim 1 , wherein the load applied to the walk training apparatus is the load applied by the user to the connecting tool via which the user is connected to the walk training apparatus.
3 . The management system according to claim 1 , wherein the state detecting portion detects the loaded state based on a posture change of the user by use of a captured image of the user using the walk training apparatus.
4 . The management system according to claim 1 , wherein the state detecting portion detects the loaded state based on a change in the load of the user, the load being output from a load measurement device configured to measure the load of the user.
5 . The management system according to claim 1 , wherein:
the walk training apparatus includes a supporting device configured to support the user from an upper side via the connecting tool attached to the user; and
the state detecting portion detects the loaded state based on the load applied by the user to the supporting device via the connecting tool.
6 . A method comprising:
detecting, via a computer, a loaded state in which a user applies a load to a walk training apparatus during use of the walk training apparatus;
calculating, via the computer, an evaluation value based on which the load applied by the user to the walk training apparatus is evaluated;
determining, via the computer, that a timing of maintenance of the walk training apparatus has come, in a case where the evaluation value is equal to or more than a threshold associated with the walk training apparatus; and
detecting, via the computer, a fall of the user during use of the walk training apparatus, wherein
the evaluation value is an integrated load based on a number of times of the fall of the user and a predetermined load,
the predetermined load is equal to or more than the load to be applied by the user to a connecting tool via which the user is connected to the walk training apparatus, and
the threshold is an integrated load capacity corresponding to the number of times of the fall of the user based on a durability of the connecting tool.
7 . The method according to claim 6 , wherein the load applied to the walk training apparatus is the load applied by the user to the connecting tool via which the user is connected to the walk training apparatus.
8 . The method according to claim 6 , further comprising detecting, via the computer, the loaded state based on a posture change of the user by use of a captured image of the user using the walk training apparatus.
9 . The method according to claim 6 , further comprising detecting, via the computer, the loaded state based on a change in the load of the user, the load being output from a load measurement device configured to measure the load of the user.
10 . The method according to claim 6 , wherein:
the walk training apparatus includes a supporting device configured to support the user from an upper side via the connecting tool attached to the user; and
the computer detects the loaded state based on the load applied by the user to the supporting device via the connecting tool.
11 . A non-transitory computer-readable medium storing instructions that, when executed by one or more processors of a device, cause the device to:
detect a loaded state in which a user applies a load to a walk training apparatus during use of the walk training apparatus;
calculate an evaluation value based on which the load applied to the walk training apparatus by the user is evaluated;
in a case where the evaluation value is equal to or more than a threshold associated with the walk training apparatus, determine that a timing of maintenance of the walk training apparatus has come; and
detect a fall of the user during use of the walk training apparatus, wherein
the evaluation value is an integrated load based on a number of times of the fall of the user and a predetermined load,
the predetermined load is equal to or more than the load to be applied by the user to a connecting tool via which the user is connected to the walk training apparatus, and
the threshold is an integrated load capacity corresponding to the number of times of the fall of the user based on a durability of the connecting tool.