Coiled Pet Leash and Harness With Integrated Training Control
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Solution Overview
Problem
Existing pet training methods are not effective for all pets, and there is a need for an improved mechanism to assist pet owners in obedience training during walks.
Innovation Solution
A pet leash and harness system with integrated obedience training modules, including audio, shock, and vibration modules, controlled by a handle-mounted control center, allowing customizable training modes and perimeter settings.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If traditional leash methods are used, then the pet can be restrained during walks, but the pet may not respond to obedience training commands
Solution Approach 1:
The system provides dynamically adjustable training parameters including variable shock intensity levels, adjustable vibration frequencies, and customizable audio tones. The control center allows real-time modification of training stimuli based on the pet's response, making the training method adaptable to different pets and training stages.
Solution Approach 2:
The invention changes multiple training parameters simultaneously - audio frequency, vibration amplitude, shock intensity, and delivery timing - to create customized training experiences. The system can adjust these parameters based on pet breed, age, sensitivity, and training progress, thereby improving obedience training effectiveness across different pet types.
2Reliability
If multiple training methods are integrated, then training effectiveness is improved, but the device complexity increases
Solution Approach 1:
The control center serves multiple functions: it controls shock delivery, manages vibration modules, regulates audio outputs, and coordinates perimeter monitoring. This multi-functional design consolidates what would otherwise be separate devices into one integrated system, improving training effectiveness while managing complexity through unified control.
Solution Approach 2:
The training system is divided into separate functional modules - shock delivery module, vibration module, audio module, and perimeter monitoring module - that can be independently controlled and adjusted. This segmentation allows each component to be optimized while maintaining overall system manageability through the central control interface.
3Ease of operation
If real-time control is provided, then training responsiveness is improved, but the handle complexity increases
Solution Approach 1:
The system incorporates feedback mechanisms where the control center monitors pet response in real-time and automatically adjusts training parameters. The handle displays visual and haptic feedback to guide the owner's actions, while the system provides immediate feedback about training progress and pet response, enabling responsive training without requiring complex manual controls.
Solution Approach 2:
The control center includes automated functions that self-regulate training parameters based on pre-programmed protocols and pet response patterns. The system can autonomously adjust shock intensity, vibration duration, and audio timing without requiring constant manual intervention, simplifying the handle operation while maintaining training responsiveness.
Data Source
AI summary
An obedience training pet leash and harness system includes a housing. A primary leash is coiled within the housing. The primary leash extends from an opening in the housing with a primary lead that is disposed on a distal end of the primary leash, outside of the housing. A handle is formed on the housing, as well as a clutch trigger. The clutch trigger is configured to restrain the primary leash when the clutch trigger is engaged by the user. The handle has a control center. The control center is designed to control a number of obedience modules. The obedience modules are installed on a harness. The harness is designed to be worn by a pet and is designed to be secured to the primary lead.


