Intelligent mounting and supply matching method for sports materials
By monitoring users' physiological indicators and movement progress in real time, the robot automatically provides supplies, solving the problem that existing companion robots cannot provide intelligent supplies, and achieving the effects of reducing the burden on users and providing precise supplies.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- HANGZHOU ZHIBANLEXING TECHNOLOGY CO LTD
- Filing Date
- 2026-06-08
- Publication Date
- 2026-07-21
AI Technical Summary
Existing companion robots fail to fully utilize their mobility and carrying capacity during outdoor activities, lacking intelligent supply decisions, precise docking, and material status management, resulting in increased user burden and excessively long distances between supply points.
The robot monitors the user's physiological indicators and movement process in real time, determines the timing of resupply based on preset strategies or machine learning prediction models, and automatically provides supplies, including voice prompts and robotic arm delivery. It also supports remote inquiry of remaining supplies and automatic route planning at resupply points.
It reduces the burden on users, provides precise supplies, improves exercise comfort, automates material management, and is suitable for a variety of outdoor activities.
Smart Images

Figure CN122425709A_ABST
Abstract
Description
Technical Field This invention relates to the field of robot material management and replenishment technology, specifically to a method for intelligent loading and replenishment of sports supplies, applicable to companion robots in outdoor activities, enabling automatic carrying, on-demand replenishment, and material management of sports necessities (water, energy gels, first aid kits, etc.). Background Technology In long-distance outdoor sports (such as marathons, trail running, and long-distance cycling), users need to carry supplies such as water, energy replenishment, and first-aid medicines. Carrying these themselves increases the burden, while aid stations along the way may be too far away. Existing companion robots mainly focus on following and providing care, failing to fully utilize their mobility and carrying capacity. Although some robots can carry items, they lack intelligent replenishment decisions, precise docking, and resource status management. Therefore, there is an urgent need for a method that can automatically provide supplies based on the user's physiological state, exercise progress, and resource consumption. Summary of the Invention The technical problem to be solved by this invention is to provide a method for intelligent loading and replenishment of sports supplies, so as to enable robots to carry them autonomously and replenish them accurately on demand. Core technical solutions: A method for intelligent loading and replenishment of sports equipment, comprising: 1. The robot is pre-loaded with a specified quantity and type of supplies (water, energy gels, salt tablets, first aid kits, etc.) and records the supply information for each compartment; 2. Real-time monitoring of the user's physiological indicators (blood sugar, heart rate), exercise distance, elapsed time, and current ambient temperature; 3. Determine whether it is time to resupply based on a preset resupply strategy (e.g., resupplying water every 5 kilometers and replenishing energy gels every 45 minutes) or a machine learning prediction model; 4. When the replenishment conditions are met, the robot will actively approach the user (while maintaining a safe distance), issue a voice prompt "It is recommended to replenish water / energy", and open the corresponding supply compartment door or extend a robotic arm to deliver the supplies; 5. After the user takes the supplies, the robot updates the warehouse status and records the data for this replenishment. 6. If the user refuses to resupply or has insufficient supplies, the robot will continue to follow and remind the user of the location of the next resupply point. Furthermore, the robot can learn personalized supply plans based on the user's historical supply habits.
[0001] Furthermore, the robot supports remote inquiry of remaining supplies, and users can view the types and quantities of remaining supplies through a mobile app.
[0002] Furthermore, at supply points (such as convenience stores and water stations), robots can automatically plan their routes to replenish supplies and wait for users. Beneficial effects
[0003] 1. Reduce the user's load and improve exercise comfort; 2. Precise replenishment based on physiological data and exercise progress to avoid dehydration or insufficient energy; 3. Automated material management frees up users' hands; 4. Suitable for various outdoor activities such as running, trail running, and cycling. Attached Figure Description Figure 1 This is a system architecture diagram of an embodiment of the present invention; Figure 2 This is a flowchart of a method according to an embodiment of the present invention. (Please click...) Figure 1 , Figure 2 (Uploaded in sequence) Detailed Implementation Example 1: Automatic hydration during a marathon A user is running a half marathon. The robot carries 600ml of water and 3 energy gels. When the user reaches 5 kilometers, the robot prompts with a pre-set voice, "5 kilometers have passed, please replenish fluids," and automatically pops out a water bottle holder. After the user drinks and puts the bottle back, the robot records that one refill has been made. When the user reaches 10 kilometers, their blood sugar level drops slightly, and the robot proactively prompts, "Blood sugar is low, it is recommended to replenish with energy gels," and hands out an energy gel. Example 2: Delivery of emergency supplies during cross-country running A user sustains an accidental scrape and sends a voice command to the robot requesting a first-aid kit. The robot immediately locates the user, approaches, and opens the first-aid kit compartment. The user retrieves a bandage and disinfectant wipes. The robot records that the first-aid kit has been used and reminds the user to replenish it before their next trip. Example 3: Personalized Supply Learning After several workouts, the machine learning model detected that the user's heart rate was drifting around the 7-kilometer mark and that they needed to hydrate. During subsequent workouts, the robot proactively reminded the user to hydrate at the 6.8-kilometer mark, to which the user was satisfied. The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention.
Claims
1. A method for intelligent loading and replenishment of sports supplies, characterized in that, Applied to autonomous mobile devices or intelligent agents, including: Preload supplies and record the type and quantity of supplies, including at least one of water, sports drinks, energy gels, salt tablets, first aid kits, and spare batteries; Monitor user physiological data, exercise mileage, and environmental parameters; The timing of resupply is determined based on a resupply strategy, which is based on at least one of a preset mileage / time, physiological indicator thresholds, user instructions, or machine learning prediction models. If it arrives, it will proactively approach the user, issue a supply notification, and deliver supplies; Update the status of the supplies after the user takes them; If supplies are insufficient or the user refuses, notify the user of the next supply point.
2. The method according to claim 1, characterized in that, The physiological indicators include at least one of blood glucose, heart rate, and amount of sweat.
3. The method according to claim 1, characterized in that, The delivery of supplies is achieved through pop-out doors, delivery by robotic arms, or self-pickup by the user.
4. The method according to claim 1, characterized in that, The robot supports remote querying and replenishment of supplies and can plan routes to supply points.
5. The method according to claim 1, characterized in that, The method is applied to companion robots in outdoor activities, including at least one of daily walking, road running, cross-country running, marathon, mountain climbing, and cycling.
6. A smart loading and supply coordination system for sports equipment, characterized in that, include: The material mounting module is used to store materials and monitor their status. The supply decision module is used to determine when to supply supplies. The interaction and delivery module is used to approach users and deliver supplies. The data recording module is used to update resource consumption and user preferences.
7. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the program, it implements the method of any one of claims 1 to 5.
8. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the program is executed by the processor, it implements the method of any one of claims 1 to 5.