7 Commits
Author SHA1 Message Date
bartschdo76253 33499beb32 zero duty cycle fix 2021-06-25 15:41:34 +02:00
bartschdo76253 38c81ae182 main cleanup 2021-06-25 15:25:09 +02:00
bartschdo76253 a8ceb258b8 leds light up at boot 2021-06-25 15:17:38 +02:00
bartschdo76253 7e5a6fac9f doku 2021-06-25 11:03:17 +02:00
bartschdo76253 b7ba521c59 first approach with sensor controlled led sequence 2021-06-25 10:55:27 +02:00
schmidtsi76327 2b2a135bd5 reorganzie main 2021-06-24 19:46:24 +02:00
bartschdo76253 a400b0464d deleted Wire setClock 2021-06-24 19:34:26 +02:00
5 changed files with 72 additions and 28 deletions
+6
View File
@@ -54,6 +54,12 @@ else
server.streamFile(f, mime::getContentType(SRH::_path), requestMethod);
```
LED_sequence_v1:
TODO:
- disable led stripes after defined time (webserver paramter?)
- define what to do if people enter stairs from different directions
- CAUTION: Sensor-Deadtime at LEAST 8 seconds
- --> switch off with person leaving stairs might not be possible
Webserver on v0.3.0 now working with LittleFS
TODO:
+4
View File
@@ -1,6 +1,10 @@
#ifndef __OTA_H
#define __OTA_H
#include <ESP8266WiFi.h>
#include <WiFiUdp.h>
#include <ArduinoOTA.h>
void ota_setup() {
ArduinoOTA.setPort(8266);
ArduinoOTA.setHostname("ESP_Treppenlicht");
+9 -3
View File
@@ -2,16 +2,22 @@
#include "PCA9685.h"
#define SENSOR1 15
#define SENSOR2 12
#define INT_TIME 20 // interrupt intervall [ms]
class Treppe {
private:
uint8_t stairs;
uint16_t time_per_stair = 300; // dimmtime per stair [ms]
uint16_t idle_brightness = 200;
uint16_t active_brightness = 2048;
uint16_t time_per_stair = 200; // dimmtime per stair [ms]
uint16_t idle_brightness = 0;
uint16_t active_brightness = 1048;
uint8_t direction = 0;
uint8_t switch_direction = 0;
uint8_t state = 0;
uint8_t switch_state = 0;
uint8_t finish = 1;
// initialize with i2c-Address 0, use Wire Library
PCA9685 pwmController;
-15
View File
@@ -9,11 +9,7 @@ extern "C" {
#include "user_interface.h"
}
// OTA & WEB
#include <ESP8266WiFi.h>
#include <WiFiUdp.h>
#include <ArduinoOTA.h>
#include "ota.h"
#include "wifi_credentials.h"
#include "httpserver.h"
@@ -22,14 +18,11 @@ extern "C" {
#define NODEMCU_LED 16
// PWM
#include "pwm.h"
os_timer_t timer1;
uint8_t timer_flag = 0;
Treppe stairs(13);
// WIFI
const char* ssid = STASSID;
const char* password = STAPSK;
@@ -110,17 +103,9 @@ void setup() {
os_timer_setfn(&timer1, timerCallback, &timer_flag);
os_timer_arm(&timer1, 20, true);
stairs.setState(1);
stairs.setDirection(1);
}
void loop() {
if(millis() > 25000 && stairs.getState() == 1 && stairs.getDirection() == 1) stairs.setState(0);
if(millis() > 45000 && stairs.getDirection() == 1){
stairs.setState(1);
stairs.setDirection(0);
}
TIMEIF_US(ArduinoOTA.handle(), 1000, "OTA");
TIMEIF_US(httpServer.handleClient(), 1000, "HTTP");
}
+53 -10
View File
@@ -20,12 +20,10 @@ uint8_t Treppe::softstart_led(uint8_t led, uint16_t startval, uint16_t stopval){
pwmController.setChannelPWM(led, (uint16_t)startval);
lastled = led;
current_pwm = startval;
stepsize = 20*abs(stopval - startval)/(float)time_per_stair; // only valid at 1ms function call interval
stepsize = INT_TIME*abs(stopval - startval)/(float)time_per_stair; // only valid at 1ms function call interval
return 1;
}
if(current_pwm > stopval - stepsize && current_pwm < stopval + stepsize) return 0;
// todo: duty cycle zero!
if(startval > stopval){
current_pwm -= stepsize;
}
@@ -34,6 +32,10 @@ uint8_t Treppe::softstart_led(uint8_t led, uint16_t startval, uint16_t stopval){
}
Serial.println((uint16_t)current_pwm);
pwmController.setChannelPWM(led, (uint16_t)current_pwm);
if(current_pwm > stopval - stepsize && current_pwm < stopval + stepsize){
if(stopval == 0) pwmController.setChannelPWM(led, 0);
return 0;
}
return 1;
}
@@ -41,7 +43,6 @@ void Treppe::ledsequence(){
static int8_t led = 0;
static uint16_t brightness = 0;
static uint16_t lastbrightness = 0;
static uint8_t finish = 1;
static uint16_t status = 0;
uint16_t status_build = 0;
status_build |= direction << 8;
@@ -94,17 +95,55 @@ void Treppe::ledsequence(){
void Treppe::setup(){
pwmController.resetDevices();
// Deactive PCA9685 due to LED Flickering
// Deactive PCA9685 Phase Balancer due to LED Flickering
// https://github.com/NachtRaveVL/PCA9685-Arduino/issues/15
// see also lib/PCA9685-Arduin/PCA9685.h:204
pwmController.init(PCA9685_PhaseBalancer_None);
pwmController.setPWMFrequency(200);
pwmController.setAllChannelsPWM(idle_brightness);
pinMode(SENSOR1, INPUT);
pinMode(SENSOR2, INPUT);
Serial.println("Hello from Treppe");
Serial.print("Treppe: initial parameters: stairs=");
Serial.println(stairs);
}
void Treppe::task(){
ledsequence();
if(finish){
direction = switch_direction;
state = switch_state;
}
static uint8_t last_sensor_state[2] = {0,0};
uint8_t current_sensor_state[2] = {0,0};
current_sensor_state[0] = digitalRead(SENSOR1);
current_sensor_state[1] = digitalRead(SENSOR2);
if(current_sensor_state[0] && !last_sensor_state[0] && state == 0){
setDirection(1);
setState(1);
}
if(current_sensor_state[1] && !last_sensor_state[1] && state == 0){
setDirection(0);
setState(1);
}
// first switch - off approach, use timer later
if(!current_sensor_state[0] && last_sensor_state[0] && state == 1){
setDirection(1);
setState(0);
}
if(!current_sensor_state[1] && last_sensor_state[1] && state == 1){
setDirection(0);
setState(0);
}
last_sensor_state[0] = current_sensor_state[0];
last_sensor_state[1] = current_sensor_state[1];
ledsequence();
}
uint16_t Treppe::setIdle(uint16_t _idle_brightness){
@@ -124,17 +163,21 @@ uint16_t Treppe::setTime(uint16_t _time_per_stair){
}
uint8_t Treppe::setDirection(uint8_t _direction){
direction = _direction;
switch_direction = _direction;
Serial.println("Treppe: Direction changed!");
if(finish) Serial.println("apply direction request immediately");
else Serial.println("currently active, dir change afterwards");
// to do: implement state command variable to determine dimm-state
return direction;
return switch_direction;
}
uint8_t Treppe::setState(uint8_t _state){
if(state == _state) return 1;
else{
state = _state;
Serial.println("Treppe: State changed!");
switch_state = _state;
Serial.println("Treppe: State Request changed!");
if(finish) Serial.println("apply state request immediately");
else Serial.println("currently active, state changes after activity");
}
return 0;
}