adc.c 6.8 KB

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  1. #include "bsp/adc.h"
  2. #include "libs/task.h"
  3. static void _gpio_init(void);
  4. static void _adc0_init(void);
  5. static void _adc0_insert_chan_init(void);
  6. static void _adc0_regular_chan_init(void);
  7. static void _adc1_init(void);
  8. static void _adc1_insert_chan_init(void);
  9. static void _adc1_regular_chan_init(void);
  10. /*
  11. ADC0 inserted 采集母线电流
  12. ADC1 inserted 采集三相电流
  13. 每次同时发送母线电流和响应的相电流,通过母线电流给相电流采集的MOS内阻校准
  14. 可以理解为FOC工作在三电阻采样模式下,只是需要不停的校准MOS的内阻
  15. */
  16. void adc_init(void){
  17. /* init adc input gpio */
  18. _gpio_init();
  19. /* config ADC clock */
  20. rcu_adc_clock_config(RCU_CKADC_CKAPB2_DIV4); //APB2 clk 120M, adc clk 30M
  21. _adc0_init();
  22. _adc1_init();
  23. adc_config_trigger(ADC_TRIGGER_PHASE);
  24. nvic_irq_enable(ADC0_1_IRQn, 0, 0);
  25. }
  26. static void _gpio_init(void) {
  27. rcu_periph_clock_enable(RCU_GPIOA);
  28. rcu_periph_clock_enable(RCU_GPIOB);
  29. gpio_init(GPIOA, GPIO_MODE_AIN, GPIO_OSPEED_50MHZ, GPIO_PIN_0|GPIO_PIN_1|GPIO_PIN_2|GPIO_PIN_3|GPIO_PIN_4|GPIO_PIN_5|GPIO_PIN_6|GPIO_PIN_7);
  30. gpio_init(GPIOB, GPIO_MODE_AIN, GPIO_OSPEED_50MHZ, GPIO_PIN_0|GPIO_PIN_1);
  31. }
  32. static void _adc0_init(void) {
  33. u32 adc_dev = ADC0;
  34. /* enable ADC1 clock */
  35. rcu_periph_clock_enable(RCU_ADC0);
  36. /* ADC mode config,adc0 master, adc1 slave */
  37. adc_mode_config(ADC_DAUL_INSERTED_PARALLEL);
  38. /* ADC special function config */
  39. adc_special_function_config(adc_dev, ADC_SCAN_MODE, ENABLE);
  40. adc_special_function_config(adc_dev, ADC_CONTINUOUS_MODE, DISABLE);
  41. /* ADC data alignment config */
  42. adc_data_alignment_config(adc_dev, ADC_DATAALIGN_RIGHT);
  43. /* init insert chans*/
  44. _adc0_insert_chan_init();
  45. /* init regular chans*/
  46. _adc0_regular_chan_init();
  47. /* enable ADC interface */
  48. adc_enable(adc_dev);
  49. delay_ms(1);
  50. /* ADC calibration and reset calibration */
  51. adc_calibration_enable(adc_dev);
  52. }
  53. static void _adc1_init(void) {
  54. u32 adc_dev = ADC1;
  55. /* enable ADC1 clock */
  56. rcu_periph_clock_enable(RCU_ADC1);
  57. /* ADC mode config,adc0 master, adc1 slave */
  58. adc_mode_config(ADC_DAUL_INSERTED_PARALLEL);
  59. /* ADC special function config */
  60. adc_special_function_config(adc_dev, ADC_SCAN_MODE, ENABLE);
  61. adc_special_function_config(adc_dev, ADC_CONTINUOUS_MODE, DISABLE);
  62. /* ADC data alignment config */
  63. adc_data_alignment_config(adc_dev, ADC_DATAALIGN_RIGHT);
  64. /* init insert chans*/
  65. _adc1_insert_chan_init();
  66. /* init regular chans*/
  67. _adc1_regular_chan_init();
  68. /* enable ADC interface */
  69. adc_enable(adc_dev);
  70. delay_ms(1);
  71. /* ADC calibration and reset calibration */
  72. adc_calibration_enable(adc_dev);
  73. }
  74. /* ADC0 insert chan sample phase I(use two chan, selected by foc) */
  75. static void _adc0_insert_chan_init(void) {
  76. u32 adc_dev = ADC0;
  77. //adc_discontinuous_mode_config(adc_dev, ADC_INSERTED_CHANNEL, 0);
  78. /* ADC channel length config */
  79. adc_channel_length_config(adc_dev, ADC_INSERTED_CHANNEL, 1);
  80. /* ADC inserted channel ran config, use ISQ2,ISQ3 */
  81. adc0_update_insert_sample_rank(U_PHASE_I_CHAN);
  82. /* config inserted channel sample time */
  83. adc0_update_insert_sample_time(U_PHASE_I_CHAN, ADC_SAMPLETIME_7POINT5);
  84. adc0_update_insert_sample_time(V_PHASE_I_CHAN, ADC_SAMPLETIME_7POINT5);
  85. adc0_update_insert_sample_time(W_PHASE_I_CHAN, ADC_SAMPLETIME_7POINT5);
  86. /* ADC trigger config */
  87. adc_external_trigger_source_config(adc_dev, ADC_INSERTED_CHANNEL, ADC0_1_EXTTRIG_INSERTED_T0_CH3);
  88. /* ADC external trigger enable */
  89. adc_external_trigger_config(adc_dev, ADC_INSERTED_CHANNEL, ENABLE);
  90. }
  91. /* ADC1 insert chan sample vbus I */
  92. static void _adc1_insert_chan_init(void) {
  93. u32 adc_dev = ADC1;
  94. //adc_discontinuous_mode_config(adc_dev, ADC_INSERTED_CHANNEL, 0);
  95. /* ADC channel length config */
  96. adc_channel_length_config(adc_dev, ADC_INSERTED_CHANNEL, 1);
  97. /* ADC inserted channel config */
  98. adc_inserted_channel_config(adc_dev, 0, VBUS_I_CHAN, ADC_SAMPLETIME_7POINT5);
  99. //adc_inserted_channel_config(adc_dev, 1, VBUS_I_CHAN, ADC_SAMPLETIME_7POINT5);
  100. /* ADC trigger config, slave must config to software trigger */
  101. adc_external_trigger_source_config(adc_dev, ADC_INSERTED_CHANNEL, ADC0_1_2_EXTTRIG_REGULAR_NONE);
  102. /* ADC external trigger enable */
  103. adc_external_trigger_config(adc_dev, ADC_INSERTED_CHANNEL, ENABLE);
  104. }
  105. static void _adc0_regular_chan_init(void) {
  106. adc_discontinuous_mode_config(ADC0, ADC_REGULAR_CHANNEL, 1); //每次转化一个
  107. /* ADC channel length config */
  108. adc_channel_length_config(ADC0, ADC_REGULAR_CHANNEL, 1);
  109. adc_external_trigger_config(ADC0, ADC_REGULAR_CHANNEL, ENABLE);
  110. adc_external_trigger_source_config(ADC0, ADC_REGULAR_CHANNEL, ADC0_1_2_EXTTRIG_REGULAR_NONE);
  111. adc_regular_channel_config(ADC0, 0, MOTOR_TEMP_CHAN, ADC_SAMPLETIME_55POINT5);
  112. //adc_regular_channel_config(ADC0, 1, HANDLERBAR_CHAN, ADC_SAMPLETIME_55POINT5);
  113. //adc_regular_channel_config(ADC0, 2, VBUS_V_CHAN, ADC_SAMPLETIME_55POINT5);
  114. }
  115. static void _adc1_regular_chan_init(void) {
  116. adc_discontinuous_mode_config(ADC1, ADC_REGULAR_CHANNEL, 1); //每次转化一个
  117. /* ADC channel length config */
  118. adc_channel_length_config(ADC1, ADC_REGULAR_CHANNEL, 1);
  119. adc_external_trigger_config(ADC1, ADC_REGULAR_CHANNEL, ENABLE);
  120. adc_external_trigger_source_config(ADC1, ADC_REGULAR_CHANNEL, ADC0_1_2_EXTTRIG_REGULAR_NONE);
  121. adc_regular_channel_config(ADC1, 0, W_PHASE_V_CHAN, ADC_SAMPLETIME_55POINT5);
  122. //adc_regular_channel_config(ADC1, 1, V_PHASE_V_CHAN, ADC_SAMPLETIME_55POINT5);
  123. //adc_regular_channel_config(ADC1, 2, U_PHASE_V_CHAN, ADC_SAMPLETIME_55POINT5);
  124. }
  125. void adc_start_insert_convert(void) {
  126. /* clear the ADC flag */
  127. adc_interrupt_flag_clear(ADC0, ADC_INT_FLAG_EOC);
  128. adc_interrupt_flag_clear(ADC0, ADC_INT_FLAG_EOIC);
  129. adc_interrupt_flag_clear(ADC1, ADC_INT_FLAG_EOC);
  130. adc_interrupt_flag_clear(ADC1, ADC_INT_FLAG_EOIC);
  131. /* enable ADC interrupt */
  132. adc_interrupt_enable(ADC0, ADC_INT_EOIC);
  133. adc_interrupt_enable(ADC1, ADC_INT_EOIC);
  134. }
  135. s32 adc_sample_regular_channel(int channel, int times) {
  136. u32 adc_device = ADC0;
  137. if (channel >= W_PHASE_V_CHAN && channel <= U_PHASE_V_CHAN) {
  138. adc_device = ADC1;
  139. }
  140. int value = 0;
  141. int count = 0;
  142. int min = 0xFFFFF;
  143. int max = -0xFFFFF;
  144. u64 start_time;
  145. adc_regular_channel_config(adc_device, 0, channel, ADC_SAMPLETIME_55POINT5);
  146. while(count < times){
  147. restart:
  148. start_time = get_mseconds();
  149. adc_software_trigger_enable(adc_device, ADC_REGULAR_CHANNEL);
  150. while(SET != adc_flag_get(adc_device, ADC_FLAG_EOC)){
  151. if (get_mseconds() - start_time >= 2){
  152. goto restart;
  153. }
  154. };
  155. int one = adc_regular_data_read(adc_device);
  156. adc_flag_clear(adc_device, ADC_FLAG_EOC);
  157. value += (one & 0xFFF);
  158. count ++;
  159. if (one > max){
  160. max = one;
  161. }
  162. if (one < min) {
  163. min = one;
  164. }
  165. }
  166. if (times <= 2) {
  167. return value/times;
  168. }
  169. return (value - min - max)/(times-2);
  170. }