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Man-machine interaction electric self-balancing vehicle and upper cover thereof

A human-computer interaction and somatosensory car technology, applied in the field of balance cars, can solve the problems of high manufacturing cost, cumbersome assembly, complex structure, etc., achieve good decorative effects, improve passability, and optimize product structure

Pending Publication Date: 2019-08-09
HANGZHOU CHIC INTELLIGENT TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, in the actual implementation of the solutions disclosed in these patent documents, there are still problems such as complex structure, many parts, cumbersome assembly, and high manufacturing cost.

Method used

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  • Man-machine interaction electric self-balancing vehicle and upper cover thereof
  • Man-machine interaction electric self-balancing vehicle and upper cover thereof
  • Man-machine interaction electric self-balancing vehicle and upper cover thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0042] like Figure 1 to Figure 11 A human-computer interaction somatosensory car shown includes a car body and a wheel 1 mounted on the car body. The car body includes a support frame 8, a control panel 11, sensors, a battery 7 and pedal components, and the wheel 1 is installed on the The bottom or both sides of the support frame, the pedal parts are installed above the support frame 8, the sensors are installed below the pedal parts, the battery 7 supplies power to the control board 11, and the control board 11 controls the wheel 1 to rotate according to the signal of the sensor.

[0043] For decoration and covering to protect internal parts, such as figure 1 , figure 2 As shown, the vehicle body also includes a shell wrapped outside, which may include an upper cover 4 and a lower cover 3, and may also include a front cover and a rear cover, as well as other structures.

[0044] The above-mentioned support frame is used for the load bearing of the vehicle body and the ins...

Embodiment 2

[0088] The only difference from Embodiment 1 is that the supporting frame is integrated with the lower cover, and there are no obvious independent parts of the frame, and the others are the same as in Embodiment 1. In this way, the above-mentioned function of the supporting frame is realized by the lower cover, or by the rigid supporting part in the lower cover.

[0089] In one embodiment, the entire lower cover is integrally made of metal or other materials with certain supporting rigidity.

[0090] In another embodiment, several rigid reinforcement components are arranged in the lower cover, through which the rigid reinforcement components are connected with the wheels, pedal components and sensors. In this way, the lower cover includes a main frame part for bearing the weight of the vehicle body and an appearance part exposed on the outer surface of the vehicle body. The main frame part and the appearance part can be integrally formed of the same material, such as metal ma...

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PUM

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Abstract

The invention discloses a man-machine interaction electric self-balancing vehicle and an upper cover thereof. The upper cover is provided with two pedal parts of a left pedal unit and a right pedal unit, and a supporting skeleton is arranged under the two pedal units. A sensor is correspondingly arranged between each pedal unit and the supporting skeleton. Each pedal unit includes a pedal positionfor users to tread on, and when the pedal position bears the gravity, the pedal part transmits weight to the supporting skeleton and triggers the sensor under the pedal part to generate electrical signals. According to the technical scheme, the structure is simple and reliable, parts are less, and the manufacturing cost is low.

Description

technical field [0001] The invention relates to a balance car, in particular to a human-computer interaction somatosensory car and its upper cover. Background technique [0002] Human-computer interaction somatosensory car, also known as electric balance car, thinking car, its operating principle is mainly based on a basic principle called "dynamic stability", using the gyroscope and acceleration sensor inside the car body to detect the balance of the car. Changes in body posture, and use the servo control system to accurately drive the motor to make corresponding adjustments to maintain the balance of the system. [0003] Existing human-machine interactive somatosensory vehicles are generally divided into two categories: those with operating levers and those without operating levers. For the human-computer interactive somatosensory vehicles with operating levers, the forward, backward and steering of the human-computer interactive somatosensory vehicles are all controlled b...

Claims

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Application Information

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IPC IPC(8): B62K11/00
CPCB62K11/007B62M6/50B62M6/45B62M6/90B62K2204/00
Inventor 应佳伟肖科平
Owner HANGZHOU CHIC INTELLIGENT TECH
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