meter_adw300.go 12 KB

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  1. package iotElProtocol
  2. import (
  3. "IotAdmin/core/logger"
  4. "IotAdmin/core/tools/utils"
  5. iotProtocol "IotAdmin/iot/protocol"
  6. iotService "IotAdmin/iot/service/rtuService"
  7. iotStruct "IotAdmin/iot/struct"
  8. "IotAdmin/iot/struct/electric"
  9. "encoding/json"
  10. "reflect"
  11. "runtime"
  12. )
  13. type adw300Meter struct {
  14. }
  15. func NewAdw300MeterHandler() iotProtocol.MeterHandler {
  16. return &adw300Meter{}
  17. }
  18. var (
  19. adw300Collects = []iotStruct.ParsingDataConfig{
  20. {Origin: 0x0E, Amount: 56, Method: adw300A04C56},
  21. {Origin: 0x12E, Amount: 12, Method: adw300A12eC12},
  22. {Origin: 0x7A, Amount: 60, Method: adw300A7aC60},
  23. {Origin: 0xB6, Amount: 60, Method: adw300Ab6C60},
  24. {Origin: 0xF2, Amount: 60, Method: adw300Af2C60},
  25. {Origin: 0x15A, Amount: 13, Method: adw300A15aC13},
  26. }
  27. )
  28. // Collect 采集数据
  29. func (m *adw300Meter) Collect(w iotService.RtuNetPgr, cfg *iotStruct.SlaveConfig) (*iotStruct.CollectData, error) {
  30. colData := &iotStruct.CollectData{
  31. //SlaveConfig: cfg,
  32. }
  33. for _, v := range adw300Collects {
  34. if adu, err := w.GetHoldingRegs(v.Origin, v.Amount); err != nil {
  35. logger.Errorf("ADW300 采集失败[%s] ERROR:%v", runtime.FuncForPC(reflect.ValueOf(v.Method).Pointer()).Name(), err)
  36. return colData, err
  37. } else {
  38. logger.Debugf("======》ADU:%v", adu)
  39. v.Method(adu, colData)
  40. }
  41. }
  42. return colData, nil
  43. }
  44. // SetAddress 设置地址
  45. func (m *adw300Meter) SetAddress(w iotService.RtuNetPgr, addr int) (result bool) {
  46. var buf []byte
  47. buf = append(buf, utils.HfWord2byte(addr)...)
  48. if _, err := w.SetHoldingRegs(0, 1, buf); err != nil {
  49. logger.Errorf("ADW300 设置地址失败 ERROR:%v", err)
  50. result = false
  51. } else {
  52. result = true
  53. }
  54. return
  55. }
  56. // GetRatio 查询电表变比
  57. func (m *adw300Meter) GetRatio(w iotService.RtuNetPgr) (string, bool) {
  58. if adu, err := w.GetHoldingRegs(0x0E, 2); err != nil {
  59. logger.Errorf("ADW300 查询电表变比失败 ERROR:%v", err)
  60. return "", false
  61. } else {
  62. ratio := &electric.MeterADW300Other{}
  63. index := 0
  64. m := int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  65. ratio.PT = int(m)
  66. index += 2
  67. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  68. ratio.CT = int(m)
  69. str, err := json.Marshal(ratio)
  70. if err != nil {
  71. logger.Errorf("ADW300 查询电表变比失败 ERROR:%v", err)
  72. return "", false
  73. }
  74. return string(str), true
  75. }
  76. }
  77. // SetRatio 设置电表变比
  78. func (m *adw300Meter) SetRatio(w iotService.RtuNetPgr, data string) bool {
  79. ratio := &electric.MeterADW300Other{}
  80. if err := json.Unmarshal([]byte(data), ratio); err != nil {
  81. logger.Errorf("ADW300 设置电表变比失败,变比数据解析失败 ERROR:%v", err)
  82. return false
  83. }
  84. var buf []byte
  85. {
  86. k := utils.HfWord2byte(ratio.PT)
  87. buf = append(buf, k...)
  88. }
  89. {
  90. k := utils.HfWord2byte(ratio.CT)
  91. buf = append(buf, k...)
  92. }
  93. if _, err := w.SetHoldingRegs(0x0E, 2, buf); err != nil {
  94. logger.Errorf("ADW300 设置电表变比失败 ERROR:%v", err)
  95. return false
  96. }
  97. return true
  98. }
  99. func adw300A04C56(adu []byte, s *iotStruct.CollectData) {
  100. var (
  101. index = 0
  102. m int16
  103. u int32
  104. )
  105. // 电压变比
  106. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  107. s.PT = int(m)
  108. // 电流变比
  109. index += 2
  110. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  111. s.CT = int(m)
  112. index += 2
  113. //N相温度
  114. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  115. s.TemperatureZ = float32(m) * float32(0.1)
  116. index += 2
  117. index += 6
  118. //A相电压
  119. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  120. s.Ua = float32(m) * float32(0.1) * float32(s.PT)
  121. index += 2
  122. //B相电压
  123. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  124. s.Ub = float32(m) * float32(0.1) * float32(s.PT)
  125. index += 2
  126. //C相电压
  127. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  128. s.Uc = float32(m) * float32(0.1) * float32(s.PT)
  129. index += 2
  130. //AB线电压
  131. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  132. s.Uab = float32(m) * float32(0.1) * float32(s.PT)
  133. index += 2
  134. //BC线电压
  135. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  136. s.Ubc = float32(m) * float32(0.1) * float32(s.PT)
  137. index += 2
  138. //CA相电压
  139. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  140. s.Uca = float32(m) * float32(0.1) * float32(s.PT)
  141. index += 2
  142. //A相电流
  143. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  144. s.Ia = float32(m) * float32(0.01) * float32(s.CT)
  145. index += 2
  146. //B相电流
  147. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  148. s.Ib = float32(m) * float32(0.01) * float32(s.CT)
  149. index += 2
  150. //C相电流
  151. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  152. s.Ic = float32(m) * float32(0.01) * float32(s.CT)
  153. index += 2
  154. //三相电流矢量和
  155. index += 2
  156. //A相有功功率
  157. u = int32(uint32(adu[index])<<24 | uint32(adu[index+1])<<16 | uint32(adu[index+2])<<8 | uint32(adu[index+3]))
  158. s.Pa = float32(u) * float32(0.001) * float32(s.CT) * float32(s.PT)
  159. index += 4
  160. //B相有功功率
  161. u = int32(uint32(adu[index])<<24 | uint32(adu[index+1])<<16 | uint32(adu[index+2])<<8 | uint32(adu[index+3]))
  162. s.Pb = float32(u) * float32(0.001) * float32(s.CT) * float32(s.PT)
  163. index += 4
  164. //C相有功功率
  165. u = int32(uint32(adu[index])<<24 | uint32(adu[index+1])<<16 | uint32(adu[index+2])<<8 | uint32(adu[index+3]))
  166. s.Pc = float32(u) * float32(0.001) * float32(s.CT) * float32(s.PT)
  167. index += 4
  168. //总有功功率
  169. u = int32(uint32(adu[index])<<24 | uint32(adu[index+1])<<16 | uint32(adu[index+2])<<8 | uint32(adu[index+3]))
  170. s.P = float32(u) * float32(0.001) * float32(s.CT) * float32(s.PT)
  171. index += 4
  172. //A相无功功率
  173. u = int32(uint32(adu[index])<<24 | uint32(adu[index+1])<<16 | uint32(adu[index+2])<<8 | uint32(adu[index+3]))
  174. s.Qa = float32(u) * float32(0.001) * float32(s.CT) * float32(s.PT)
  175. index += 4
  176. //B相无功功率
  177. u = int32(uint32(adu[index])<<24 | uint32(adu[index+1])<<16 | uint32(adu[index+2])<<8 | uint32(adu[index+3]))
  178. s.Qb = float32(u) * float32(0.001) * float32(s.CT) * float32(s.PT)
  179. index += 4
  180. //C相无功功率
  181. u = int32(uint32(adu[index])<<24 | uint32(adu[index+1])<<16 | uint32(adu[index+2])<<8 | uint32(adu[index+3]))
  182. s.Qc = float32(u) * float32(0.001) * float32(s.CT) * float32(s.PT)
  183. index += 4
  184. //总无功功率
  185. u = int32(uint32(adu[index])<<24 | uint32(adu[index+1])<<16 | uint32(adu[index+2])<<8 | uint32(adu[index+3]))
  186. s.Q = float32(u) * float32(0.001) * float32(s.CT) * float32(s.PT)
  187. index += 4
  188. //A相视在功率
  189. index += 4
  190. //B相视在功率
  191. index += 4
  192. //C相视在功率
  193. index += 4
  194. //总视在功率
  195. index += 4
  196. //A相功率因数
  197. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  198. s.Pfa = float32(m) * float32(0.001)
  199. index += 2
  200. //B相功率因数
  201. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  202. s.Pfb = float32(m) * float32(0.001)
  203. index += 2
  204. //C相功率因数
  205. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  206. s.Pfc = float32(m) * float32(0.001)
  207. index += 2
  208. //总功率因数
  209. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  210. s.Pf = float32(m) * float32(0.001)
  211. index += 2
  212. //DI
  213. index += 2
  214. //频率
  215. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  216. s.Freq = float32(m) * float32(0.01)
  217. index += 2
  218. //组合有功总电能
  219. index += 4
  220. //正向有功电能
  221. u = int32(uint32(adu[index])<<24 | uint32(adu[index+1])<<16 | uint32(adu[index+2])<<8 | uint32(adu[index+3]))
  222. s.Tps = float32(u) * float32(0.01) * float32(s.CT) * float32(s.PT)
  223. index += 4
  224. //反向有功电能
  225. u = int32(uint32(adu[index])<<24 | uint32(adu[index+1])<<16 | uint32(adu[index+2])<<8 | uint32(adu[index+3]))
  226. s.Fps = float32(u) * float32(0.01) * float32(s.CT) * float32(s.PT)
  227. index += 4
  228. //正向无功电能
  229. u = int32(uint32(adu[index])<<24 | uint32(adu[index+1])<<16 | uint32(adu[index+2])<<8 | uint32(adu[index+3]))
  230. s.Tqs = float32(u) * float32(0.01) * float32(s.CT) * float32(s.PT)
  231. index += 4
  232. //反向无功电能
  233. u = int32(uint32(adu[index])<<24 | uint32(adu[index+1])<<16 | uint32(adu[index+2])<<8 | uint32(adu[index+3]))
  234. s.Fqs = float32(u) * float32(0.01) * float32(s.CT) * float32(s.PT)
  235. //index += 4
  236. }
  237. // 基波、谐波
  238. func adw300A12eC12(adu []byte, s *iotStruct.CollectData) {
  239. var (
  240. index = 0
  241. m int16
  242. )
  243. //A相基波电压
  244. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  245. s.BaseUa = float32(m) * float32(0.1) * float32(s.PT)
  246. index += 2
  247. //B相基波电压
  248. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  249. s.BaseUb = float32(m) * float32(0.1) * float32(s.PT)
  250. index += 2
  251. //C相基波电压
  252. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  253. s.BaseUc = float32(m) * float32(0.1) * float32(s.PT)
  254. index += 2
  255. //A相谐波电压
  256. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  257. s.HarUa = float32(m) * float32(0.1) * float32(s.PT)
  258. index += 2
  259. //B相谐波电压
  260. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  261. s.HarUb = float32(m) * float32(0.1) * float32(s.PT)
  262. index += 2
  263. //C相谐波电压
  264. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  265. s.HarUc = float32(m) * float32(0.1) * float32(s.PT)
  266. index += 2
  267. //A相基波电流
  268. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  269. s.BaseIa = float32(m) * float32(0.01) * float32(s.CT)
  270. index += 2
  271. //B相基波电流
  272. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  273. s.BaseIb = float32(m) * float32(0.01) * float32(s.CT)
  274. index += 2
  275. //C相基波电流
  276. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  277. s.BaseIc = float32(m) * float32(0.01) * float32(s.CT)
  278. index += 2
  279. //A相谐波电流
  280. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  281. s.HarIa = float32(m) * float32(0.1) * float32(s.CT)
  282. index += 2
  283. //B相谐波电流
  284. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  285. s.HarIb = float32(m) * float32(0.1) * float32(s.CT)
  286. index += 2
  287. //C相谐波电流
  288. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  289. s.HarIc = float32(m) * float32(0.1) * float32(s.CT)
  290. }
  291. // 0x7A,60
  292. // A相电压分次谐波(2-31次)
  293. // B相电压分次谐波(2-31次)
  294. func adw300A7aC60(adu []byte, s *iotStruct.CollectData) {
  295. var (
  296. index = 2
  297. m int16
  298. )
  299. //A相电压分次谐波(2-31次)
  300. for i := 0; i < 15; i++ {
  301. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  302. s.Hua[i] = float32(m) * float32(0.01)
  303. index += 4
  304. }
  305. //B相电压分次谐波(2-31次)
  306. index = 2*30 + 2
  307. for i := 0; i < 15; i++ {
  308. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  309. s.Hub[i] = float32(m) * float32(0.01)
  310. index += 4
  311. }
  312. }
  313. // 0xB6,60
  314. // C相电压分次谐波(2-31次)
  315. // A相电流分次谐波(2-31次)
  316. func adw300Ab6C60(adu []byte, s *iotStruct.CollectData) {
  317. var (
  318. index = 2
  319. m int16
  320. )
  321. //C相电压分次谐波(2-31次)
  322. for i := 0; i < 15; i++ {
  323. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  324. s.Huc[i] = float32(m) * float32(0.01)
  325. index += 4
  326. }
  327. //A相电流分次谐波(2-31次)
  328. index = 2*30 + 2
  329. for i := 0; i < 15; i++ {
  330. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  331. s.Hia[i] = float32(m) * float32(0.01)
  332. index += 4
  333. }
  334. }
  335. // 0xF2,60
  336. // B相电流分次谐波(2-31次)
  337. // C相电流分次谐波(2-31次)
  338. func adw300Af2C60(adu []byte, s *iotStruct.CollectData) {
  339. var (
  340. index = 2
  341. m int16
  342. )
  343. //index = 2
  344. for i := 0; i < 15; i++ {
  345. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  346. s.Hub[i] = float32(m) * float32(0.01)
  347. index += 4
  348. }
  349. //C相电流分次谐波(2-31次)
  350. index = 2*30 + 2
  351. for i := 0; i < 15; i++ {
  352. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  353. s.Hic[i] = float32(m) * float32(0.01)
  354. index += 4
  355. }
  356. }
  357. func adw300A15aC13(adu []byte, data *iotStruct.CollectData) {
  358. var (
  359. index = 0
  360. m int16
  361. u int32
  362. )
  363. //当前正向有功需量
  364. u = int32(uint32(adu[index])<<24 | uint32(adu[index+1])<<16 | uint32(adu[index+2])<<8 | uint32(adu[index+3]))
  365. data.Dp = float32(u) * float32(0.001) * float32(data.CT) * float32(data.PT)
  366. //当前反向有功需量
  367. index += 4
  368. //当前正向无功需量
  369. index += 4
  370. //当前反向无功需量
  371. index += 4
  372. //电压不平衡度
  373. index += 4
  374. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  375. data.UUnbalance = float32(m) * float32(0.01)
  376. //电流不平衡度
  377. index += 2
  378. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  379. data.IUnbalance = float32(m) * float32(0.01)
  380. //A相温度
  381. index += 2
  382. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  383. data.TemperatureA = float32(m) * float32(0.1)
  384. //B相温度
  385. index += 2
  386. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  387. data.TemperatureB = float32(m) * float32(0.1)
  388. //C相温度
  389. index += 2
  390. m = int16(uint16(adu[index])<<8 | uint16(adu[index+1]))
  391. data.TemperatureC = float32(m) * float32(0.1)
  392. }