Three-arm maze device oriented to animal robot control training, and training method

A technology of animal robots and mazes, applied in animal taming devices, applications, animal husbandry, etc., can solve the problems of not using training, increasing the workload of control training, etc., reducing behavior patterns and numbers, simplifying training and image recognition processes , the effect of improving the accuracy

Active Publication Date: 2013-12-25
浙江浙大西投脑机智能科技有限公司
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  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Using the existing training device for animal control training, the animal will have complex behaviors such as turning around and climbing, and the training is not used; after each training, the animal robot must be put back to the starting position, and the training cannot be started directly from the current position. Greatly increases the workload of control training, and is not suitable for automatic training of animal robots

Method used

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  • Three-arm maze device oriented to animal robot control training, and training method
  • Three-arm maze device oriented to animal robot control training, and training method

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Embodiment Construction

[0079] The three-arm maze device and training method for animal robot control training of the present invention will be described in detail below in conjunction with the accompanying drawings.

[0080] Such as figure 1 As shown, a kind of three-arm maze device for animal robot 8 control training includes a maze and a control host 10, wherein the maze includes:

[0081] The central triangular area and the three sub-arm passages distributed at an angle of 120 degrees around the central triangular area, each sub-arm passage is a one-way passage, and the end of each sub-arm passage is provided with a turning area;

[0082] The central triangular area is surrounded by the central bottom plate 2 and the central top cover 5;

[0083] Each sub-arm channel is surrounded by a sub-arm bottom plate 1, two relatively distributed wall panels 3 and a sub-arm top cover 4;

[0084] Subarm base plate 1, wallboard 3 and subarm top cover 4 are rectangles, subarm base plate 1 long 60cm, wide 15c...

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Abstract

The invention discloses a three-arm maze device oriented to animal robot control training and a training method. The three-arm maze device comprises a maze and a control host, wherein the maze comprises a central triangular region and three sub-arm channels distributed by forming angles of 120 degrees with one another around the central triangular region; each sub-arm channel is a one-way channel; the end of each sub-arm channel is provided with a revolving region; the central triangular region is enclosed by a central bottom plate and a central top cover; each sub-arm channel is enclosed by a sub-arm bottom plate, two wall plates which are distributed oppositely and a sub-arm top cover; the inner port and the outer port of each sub-arm channel are provided with infrared scanning devices; the joint between the inner port of each sub-arm channel and the central triangular region is provided with an indicating lamp and a sound stimulation generator; the infrared scanning devices, the indicating lamps and the sound stimulation generators are under the control of the control host. According to the three-arm maze device, the control training process of an animal robot can be simplified, and time and labor are saved.

Description

technical field [0001] The invention relates to an animal training device and a training method of the device, in particular to an animal robot training device capable of simplifying animal behavior patterns, as well as manual training and automatic training methods based on the training device. Background technique [0002] Animal robot refers to the artificial control of animal movement and certain behaviors by using the animal's motor function and power supply system, starting from the animal's sensory input or innervation. [0003] Compared with traditional robots, animal robots have more obvious advantages in energy supply, movement flexibility, concealment, mobility and adaptability. Existing animal robots include rat robots, moth robots, shark robots, beetle robots, dolphin robots, pigeon robots, cockroach robots, gecko robots, and goldfish robots, among which the research on rat robots is relatively mature. [0004] Taking the rat robot as an example, microelectrode...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01K15/02
Inventor 潘纲俞一鹏吴朝晖郑能干郑筱祥
Owner 浙江浙大西投脑机智能科技有限公司
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