Tutorial #3: Maixduino Speech Recognition
In this tutorial we are going to explore the APU (Audio Accelerator) of the Maixduino.
The Sipeed M1 chip comes with a high-performance microphone array processor that can achieve the following capabilities:
- Sound Source orientation
- Sound field imaging
- Beamforming
- Voice wake up
- Speech Recognition
The Maixduino has an onboard MEMS microphone. In simple terms, the package is composed of two components. One is the sensor element, which is basically a capacitor that changes capacity when hit by sound waves. The other is an interface that processes the signal and involves the use of a pre-amplifier and an ADC (analog to digital converter).
In this tutorial, we are going to focus on the speech recognition modeling of a sample. I think it is a bit complicated to try to explain, but I will try my best. If any doubt arises, feel free to send me a message.
What Will We Need
- The Maixduino board
Our First Maixduino Voice Model
OK, let’s start working. The objective in this first stage is to control an LED with our voice by saying “ON” or “OFF.” In order to do this, we have to train the Maixduino to recognize our voice commands. The steps are as follows:
Go to File->Examples->Maix_Speech_Recognition and open get_voice_model example. Compile and transfer. Open the serial monitor window and adjust the baudrate to 115200. If nothing is shown on the serial monitor window, we need to press the reset button on the board because the code is in the Setup() function and only run once. Now we are ready to save our first model.
Main File
//THIS IS THE MAIN FILE #include "Maix_Speech_Recognition.h" #include "voice_model.h" SpeechRecognizer rec; void setup() { pinMode(2, OUTPUT); rec.begin(); Serial.begin(115200); Serial.println("init model..."); rec.addVoiceModel(0, 0, on_0, fram_num_on_0); rec.addVoiceModel(0, 1, on_1, fram_num_on_1); rec.addVoiceModel(0, 2, on_2, fram_num_on_2); rec.addVoiceModel(1, 0, off_0, fram_num_off_0); rec.addVoiceModel(1, 1, off_1, fram_num_off_1); rec.addVoiceModel(1, 2, off_2, fram_num_off_2); Serial.println("init model ok!"); } void loop() { int res; res = rec.recognize(); Serial.printf("res : %d ", res); if (res > 0) { switch (res) { case 1: digitalWrite(2, HIGH); //power on led Serial.println("rec : led on "); break; case 2: digitalWrite(2, LOW); //power off ledSerial.println("rec : led off "); break; default: break; } } else { Serial.println("recognize failed."); } delay(500); }
Voice Model
//THIS IS THE VOICE_MODEL.H #ifndef __VOICE_MODEL_H #define __VOICE_MODEL_H #include "util/MFCC.h" #ifdef __cplusplus extern "C" { #endifconst uint16_t fram_num_on_0 = 14; const int16_t on_0[vv_frm_max * mfcc_num] = {-65, 34, 24, 34, 28, 33, 31, 34, 34, 34, 32, 32, 217, -37, -234, -4, 96, 15, 9, 24, 22, 10, 20, 35, 186, -10, -231, 2, 144, 32, 18, 41, 29, 8, 0, 31, 204, -29, -274, 8, 123, 35, 14, 36, 28, 12, -28, 36, 210, -47, -280, 3, 114, 33, 8, 24, 29, 1, -13, 29, 158, -8, -336, -11, 138, 5, 14, 24, 15, 0, -1, 16, 147, -22, -328, -13, 125, 5, 5, -3, 25, 9, -5, 10, 93, -8, -312, -2, 101, 0, 12, 12, 39, -2, 3, 17, 116, -49, -328, -37, 148, 2, 4, 22, 11, 14, -18, 36, 85, -48, -344, -7, 103, -26, 1, 41, 24, 1, 4, 43, 40, -71, -318, 15, 58, -52, -25, 18, 45, 26, 58, 62, -2, -87, -297, 6, 68, -67, -18, 42, 29, -1, 68, 80, 5, -115, -278, 41, 48, -53, 10, 67, -16, -14, 45, 43, -8, -109, -232, 39, 31, -68, 34, 49, -29, -8, 60, 40, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 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Maixduino L.E.D. Switch
Now we just have to compile and transfer the sketch. The files can be downloaded below (Donยดt forget to change the model values!):
Arduino Sketch: Voice_Rec_LED_ON_OFF
The circuit with the external l.e.d. can be found in the first tutorial (link here). Now, we can start the serial monitor to do some debugging and find out if what we are saying is understood by the Maixduino. If everything goes to plan, when we say “ON”, the led light goes up and switches off when we say “OFF”.