flutter_blue
適用於 Android 和 iOS 的 Flutter 插件,用於連接和通訊藍牙低功耗裝置
一種腕戴式裝置和監測系統為患有身體聚焦重複行為的人實現使用者檔案記憶體管理系統
適用於 Android 和 iOS 的 Flutter 插件,用於連接和通訊藍牙低功耗裝置
v33.2.6一個 Flutter 圖表庫,包含資料視覺化元件,例如笛卡兒圖和圓形圖,用於建立即時、互動式、高效率、動畫圖表。
v2.0.8一個強大的網格佈局系統,針對複雜的使用者介面設計進行優化。
以下為英文專案原文快照,最新內容請造訪 GitHub。
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These are repetitive self-grooming behaviors where an individual damages their appearance or causes physical harm, often as a coping mechanism for stress or anxiety. Common examples includes:
It comprises three (3) main components necessary for its operation: the wearable device, mobile application, and web server.
The wearable device is the main component that classifies the anticipatory behavior of the user. The microcontroller used is the Arduino Nano 33 BLE Sense, the wearable needs to connect to the web server to access the file of the user.
However, this microcontroller only supports Bluetooth Low Energy (BLE) and does not support connecting via the internet. Therefore, the I used a bridge to support connection to the server through a mobile application connecting via BLE.
To maintain communication without relying on a physical server, I have integrated the server into the cloud. This allows users to effectively utilize the system over the internet.
https://github.com/user-attachments/assets/901ff85a-3107-4638-b206-344b27f8ff6d
The design for building the mobile application is shown. I carefully considered the simplicity of the mobile application for user experience. The system views or the pages serve as the frontend that divides its individual functions for the application.
Accounts management, file management, and other API workflow are done in the backend. These workflows effectively reduce the complexity of the user interface making it easier to use. The mobile application also has its limitations for creating machine learning components.
Therefore, I used a server to connect the application and access the database using the Hypertext Transfer Protocol (HTTP) services.
https://github.com/user-attachments/assets/8c44bf6d-42c8-4d04-84c7-fbcc54fde104
| BLE DISTANCE (FEET) | BATTERY CAPACITANCE (mAh) | BATTERY LOAD CURRENT (mA) | FILE TRANSFER SPEED (BYTE/S) |
|---|---|---|---|
| 67 | 1000 | 30 | 380 |
The primary tasks of the microcontroller include enabling the functionality of other components, establishing connections via BLE, and performing calculations based on sensor readings.
The sensors used include the accelerometer and gyroscope of the LSM9DS1 inertial measurement unit (IMU) sensor, the VL53L0X time-of-flight (ToF) distance sensor, and the MLX90614 infrared (IR) temperature sensor, which are crucial for detecting user’s anticipating behavior.
The data are then used to classify anticipating behavior and use this as a signal to operate the vibration and passive buzzer.
https://github.com/user-attachments/assets/854de24f-7be4-4dee-a14c-a28b166f9861
https://github.com/user-attachments/assets/de60b270-b047-4fb0-8bff-7942f879fb32
The purpose of this app is to get input values from the wearable and train it using the Feedforward Neural Network on the web then sends the machine learning model file contents through BLE. User can also see their improvements weekly or monthly.
https://github.com/user-attachments/assets/570126fd-c0bc-474d-8f4c-320b08da19b1