AI-Controlled Inflatable Doll Motion Using Segmented Air Blowers
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Solution Overview
Problem
Existing inflatable dolls lack dynamic movement and attractiveness, failing to effectively engage customers.
Innovation Solution
Incorporation of an AI assembly and multiple air blowers that control inflation and deflation of the doll's body, enabling dynamic movements and interactions through a centralized controller.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If a single air blower is used to inflate the doll, then the structure is simple, but the doll can only perform single dynamic movement and is less attractive
Solution Approach 1:
The patent divides the air blower system into multiple independent air blowers (first air blower, second air blower, third air blower) that can be independently controlled. Each air blower is connected to different body parts of the doll, enabling segmented control of inflation and deflation in various regions, thus achieving diverse dynamic movements while maintaining modular simplicity
Solution Approach 2:
The patent implements dynamic control by enabling the doll's body parts to be inflated and deflated in different sequences and patterns. The controller can selectively activate different air blowers to create various movement patterns such as dancing, waving, and twisting, transforming a static structure into a dynamically versatile system
2Adaptability or versatility
If multiple air blowers are added to enable dynamic movements, then the doll becomes more attractive, but the device complexity increases
Solution Approach 1:
The patent designs a universal controller that manages multiple air blowers through a single control interface. The controller can execute various pre-programmed movement patterns (dancing, waving, twisting) and respond to external stimuli (music rhythm, touch), making the complex multi-blower system operable through simple universal commands
Solution Approach 2:
The patent incorporates feedback mechanisms where the doll can sense music rhythm and touch inputs, then adjust its movement patterns accordingly. This feedback loop allows the complex system to adapt to external conditions, enhancing customer engagement while the controller manages the complexity through intelligent response algorithms
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The inflatable doll can perform dynamic actions such as twisting, nodding, and dancing, enhancing customer engagement and attraction.
Implementation Method 1
The first air blower includes a first air inlet portion and a first air outlet portion communicated with the first air inlet portion and the inflatable doll
Data Source
AI summary
The present disclosure provides an accessory, an inflatable doll, and an inflatable doll set. The accessory includes at least one first air blower and an AI assembly. The first air blower includes a first air inlet portion and a first air outlet portion communicated with the first air inlet portion and the inflatable doll. The AI assembly is electrically connected to the first air blower and configured to control the at least one first air blower to inflate or deflate the inflatable doll.


