FOC控制原理1 FOC软件 STM32CubeMX 使用

1、安装-及相关软件版本

STM32+CubeMX教程 -- CubeMX 安装图解_stm32cubemx下载-优快云博客

 

展示版本注意事项:keil MDK和STM32CubeMX版本至少要大于等于图中版本。

 

2、 Motor Profiler 5.2.0使用方法

主要测试,电感、电流、最大速度等。

获得参数以后再使用控制台准确的控制。

3、MotorControl Workbench 5.2.0使用方法

打开固件参考,新人看的少

找到例程,直接把这个文件托进入软件中,自动打开。

点击这个生成代码

需要安装STM32CubeMX,选择KEIL和HAL库。

烧录代码,电机转动。

设置目标速度和反应时间

4、STM32CubeMX 

安装

此软件需要安装java环境,由于电脑安装过java环境,直接进入STM32CubeMX的安装。

安装成功。

安装芯片库文件

倒入F1和F4的支持包

 使用

1)引脚配置

新建工程文件夹

 新建工程

配置引脚模式

配置引脚模式和LED2引脚的宏定义。

配置时钟树 

 

配置系统仿真器接口 

 

 2)时钟树配置

输入8M时钟,配置成最大168M

外部晶振8M更准,所以不常用内部的16M晶振

一路选择外部时钟线,系统时钟配置成168MHz

然后根据系统时钟,配置外设

使能CSS,外部时钟有问题,使用内部时钟

3)工程配置

 4)生成代码工程

This manual describes the X-CUBE-MCSDK and X-CUBE-MCSDK-FUL STM32 motor control software development kits (SDKs) designed for, and to be used with, STM32 microcontrollers. The SDKs contain a software library that implements the field oriented control (FOC) drive of 3-phase permanent magnet synchronous motors (PMSMs), both surface mounted (SMPMSM) and interior (I-PMSM). The STM32 family of 32-bit Flash microcontrollers is specifically developed for embedded applications. It is based on the following ARM® Cortex®-M cores: the Cortex®-M0 for the STM32F0, the Cortex®-M3 for the STM32F1 and STM32F2, and the Cortex®-M4 for the STM32F3, STM32F4 and STM32L4, and the Cortex®-M7 for the STM32F7. These microcontrollers combine high performance with first-class peripherals that make them suitable for performing three-phase motor FOC. The PMSM FOC library can be used to quickly evaluate ST microcontrollers, to complete ST application platforms, and to save time when developing motor control algorithms to be run on ST microcontrollers. It is written in the C language, and implements the core motor control algorithms, as well as sensor reading/decoding algorithms and sensor-less algorithms for rotor position reconstruction. This library can be easily configured to make use of the STM32F30x's embedded advanced analog peripherals (fast comparators and programmable gain amplifiers (PGAs)) for current sensing and protection, thus simplifying application boards. When deployed with the STM32F103 (Flash memory from 256 Kbytes to 1Mbyte), STM32F303 or STM32F4 devices, the library allows two motors to be driven simultaneously. The library can be customized to suit user application parameters (motor, sensors, power stage, control stage, pin-out assignment) and provides a ready-to-use application programming interface (API). A PC graphical user interface (GUI), the ST motor control workbench, allows complete and easy customization of the PMSM FOC library. Thanks to this, the user can run a PMSM motor in a very short time. A set of ready-to-use examples is provided to explain the use of the motor control API and its most commonly used features. These projects usually provide a UART interface that allows convenient real-time fine-tuning of the motor control subsystem with a remote control tool, the STM32 motor control monitor. The STM32 motor control SDK is delivered as an expansion pack for the STM32 CubeMX tool, and the PMSM FOC library is based on the STM32 Cube Firmware libraries. The list of supported STM32 microcontrollers is provided in the release note delivered with the SDK.
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