13
13
// number of signal pulses to average
14
#define AVERAGE_SAMPLES 1
16
// should average be result, or damping?
17
#define AVERAGE_DAMP 1
21
#define GRAPH_MIN 1000
22
#define GRAPH_MAX 2000
14
#define SIGNAL_SAMPLES 10
26
17
// set to the time that the last signal pulse was at
48
39
Serial.begin( 9600 );
54
unsigned long last_pulse_off = 0;
55
unsigned long intervals[ AVERAGE_SAMPLES ];
44
unsigned long last_pulse = 0;
45
unsigned long intervals[ SIGNAL_SAMPLES ] = {0};
56
46
int interval_idx = 0;
59
for( int a = 0; a < AVERAGE_SAMPLES; a++ )
64
char graph[ GRAPH_SIZE + 3 ];
65
for( int a = 1; a < GRAPH_SIZE + 1; a++ )
68
graph[ GRAPH_SIZE + 1 ] = ']';
69
graph[ GRAPH_SIZE + 2 ] = 0;
74
50
// detect pulse falling-edge
75
unsigned long pulse_on = _new_pulse_on;
76
unsigned long pulse_off = _new_pulse_off;
51
unsigned long new_pulse_on = _new_pulse_on;
52
unsigned long new_pulse_off = _new_pulse_off;
77
53
bool got_pulse = false;
78
if( pulse_off > last_pulse_off )
54
if( new_pulse_off > last_pulse )
81
unsigned long interval = pulse_off - pulse_on;
82
if( interval > 800 && interval < 3000 )
84
// update interval buffer
85
intervals[ interval_idx ] = pulse_off - pulse_on;
86
if( ++interval_idx >= AVERAGE_SAMPLES )
92
last_pulse_off = pulse_off;
56
// update interval buffer
57
intervals[ interval_idx ] = new_pulse_off - new_pulse_on;
58
if( ++interval_idx >= SIGNAL_SAMPLES )
61
last_pulse = new_pulse_off;
95
65
// display average?
97
( AVERAGE_DAMP || interval_idx == 0 ) )
66
if( interval_idx == 0 && got_pulse )
99
68
// calculate average
100
unsigned long ave = 0;
101
for( int a = 0; a < AVERAGE_SAMPLES; a++ )
70
for( int a = 0; a < SIGNAL_SAMPLES; a++ )
102
71
ave += intervals[ a ];
103
ave /= AVERAGE_SAMPLES;
108
int pos = ( GRAPH_SIZE ) *
109
( ave - GRAPH_MIN ) / ( GRAPH_MAX - GRAPH_MIN );
110
graph[ pos + 1 ] = '|';
111
Serial.println( graph );
112
graph[ pos + 1 ] = '-';
72
ave /= SIGNAL_SAMPLES;
116
74
// tell it like it is
117
Serial.println( ave );
75
Serial.println( round( ave ) );