Mirabis

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Nov 24th, 2025
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170 days
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  1. {
  2. "baseload": [],
  3. "baseload calc periode": 56,
  4. "battery": [
  5. {
  6. "bat_to_dc efficiency": 0.935,
  7. "bat_to_dc max power": 2500,
  8. "capacity": 5.12,
  9. "charge stages": [
  10. {
  11. "efficiency": 1,
  12. "power": 0
  13. },
  14. {
  15. "efficiency": 0.7095,
  16. "power": 300
  17. },
  18. {
  19. "efficiency": 0.8273,
  20. "power": 500
  21. },
  22. {
  23. "efficiency": 0.8576,
  24. "power": 600
  25. },
  26. {
  27. "efficiency": 0.9041,
  28. "power": 900
  29. },
  30. {
  31. "efficiency": 0.9197,
  32. "power": 1100
  33. },
  34. {
  35. "efficiency": 0.9298,
  36. "power": 1300
  37. },
  38. {
  39. "efficiency": 0.9365,
  40. "power": 1500
  41. },
  42. {
  43. "efficiency": 0.9416,
  44. "power": 1700
  45. },
  46. {
  47. "efficiency": 0.944,
  48. "power": 1900
  49. },
  50. {
  51. "efficiency": 0.946,
  52. "power": 2100
  53. },
  54. {
  55. "efficiency": 0.9471,
  56. "power": 2200
  57. },
  58. {
  59. "efficiency": 0.9485,
  60. "power": 2300
  61. },
  62. {
  63. "efficiency": 0.949,
  64. "power": 2400
  65. },
  66. {
  67. "efficiency": 0.9482,
  68. "power": 2500
  69. }
  70. ],
  71. "cycle cost": 0.00625,
  72. "dc_to_bat efficiency": 0.935,
  73. "dc_to_bat max power": 2500,
  74. "discharge stages": [
  75. {
  76. "efficiency": 1,
  77. "power": 0
  78. },
  79. {
  80. "efficiency": 0.7146,
  81. "power": 300
  82. },
  83. {
  84. "efficiency": 0.7855,
  85. "power": 500
  86. },
  87. {
  88. "efficiency": 0.8048,
  89. "power": 600
  90. },
  91. {
  92. "efficiency": 0.8276,
  93. "power": 800
  94. },
  95. {
  96. "efficiency": 0.8414,
  97. "power": 1000
  98. },
  99. {
  100. "efficiency": 0.8482,
  101. "power": 1200
  102. },
  103. {
  104. "efficiency": 0.8522,
  105. "power": 1400
  106. },
  107. {
  108. "efficiency": 0.8552,
  109. "power": 1600
  110. },
  111. {
  112. "efficiency": 0.8556,
  113. "power": 1800
  114. },
  115. {
  116. "efficiency": 0.8547,
  117. "power": 2000
  118. },
  119. {
  120. "efficiency": 0.8543,
  121. "power": 2200
  122. },
  123. {
  124. "efficiency": 0.8531,
  125. "power": 2300
  126. },
  127. {
  128. "efficiency": 0.8519,
  129. "power": 2400
  130. },
  131. {
  132. "efficiency": 0.8514,
  133. "power": 2500
  134. }
  135. ],
  136. "entity actual level localapi": "sensor.marstek_venuse_state_of_charge",
  137. "entity actual level": "sensor.lilygo_rs485_marstek_battery_state_of_charge",
  138. "entity balance switch": "input_boolean.dao_balance_grid",
  139. "entity calculated soc": "input_number.dao_marstek_calculated_soc",
  140. "entity from ac": "input_number.dao_marstek_from_ac",
  141. "entity from battery": "input_number.dao_from_battery",
  142. "entity from pv": "input_number.dao_marstek_from_pv",
  143. "entity max soc end opt": "input_number.dao_max_soc_einde_opt",
  144. "entity min soc end opt": "input_number.dao_min_soc_einde_opt",
  145. "entity set operating mode": "input_select.dao_set_operating_mode",
  146. "entity set power feedin": "input_number.dao_set_power_feedin",
  147. "entity stop inverter": "input_datetime.dao_stop_marstek",
  148. "lower limit": 11,
  149. "minimum power": 600,
  150. "name": "Marstek Venus-E 5.12kWh",
  151. "optimal lower level": 12,
  152. "reduced hours": {},
  153. "solar": [],
  154. "upper limit": 100
  155. }
  156. ],
  157. "boiler": {
  158. "boiler present": "False"
  159. },
  160. "dashboard": {
  161. "port": 5000
  162. },
  163. "database da": {
  164. "db_path": "../data",
  165. "engine": "sqlite"
  166. },
  167. "database ha": {
  168. "database": "home-assistant_v2.db",
  169. "db_path": "/homeassistant",
  170. "engine": "sqlite"
  171. },
  172. "electric vehicle": [],
  173. "electric vehicle real": [
  174. {
  175. "capacity": "sensor.xpeng_g9_battery_capacity",
  176. "charge scheduler": {
  177. "entity ready datetime": "input_datetime.dao_datum_klaar_met_laden",
  178. "entity set level": "input_number.dao_ev_entity_set_level",
  179. "level margin": 2
  180. },
  181. "charge stages": [
  182. {
  183. "ampere": 0,
  184. "efficiency": 1
  185. },
  186. {
  187. "ampere": 16,
  188. "efficiency": 0.95
  189. }
  190. ],
  191. "charge switch": "input_boolean.dao_ev_charge_switch",
  192. "charge switch REAL": "switch.voordeur_charger_enabled",
  193. "charge three phase": "True",
  194. "entity actual level": "sensor.enode_battery_percentage_normalized",
  195. "entity max amperage": "input_number.dao_ev_set_max_charge_amps",
  196. "entity max amperage REAL": "sensor.voordeur_dynamic_charger_limit",
  197. "entity plugged in": "input_boolean.dao_spoof_plugged_in",
  198. "entity plugged in REAL": "binary_sensor.xpeng_g9_plugged_in",
  199. "entity position": "input_text.dao_spoof_car_location",
  200. "entity position REAL": "device_tracker.xpeng_g9_location_tracker",
  201. "entity set charging ampere": "sensor.xpeng_g9_max_current",
  202. "name": "XPENG G9"
  203. }
  204. ],
  205. "graphical backend": "",
  206. "graphics": {
  207. "average consumption": "True",
  208. "battery balance": "True",
  209. "prices consumption": "True",
  210. "prices production": "True",
  211. "prices spot": "True",
  212. "show": "true",
  213. "style": "Solarize_Light2"
  214. },
  215. "grid": {
  216. "max_power": 17
  217. },
  218. "heating": {
  219. "heater present": "False"
  220. },
  221. "history": {
  222. "save days": 90
  223. },
  224. "homeassistant": {
  225. "host": "172.31.20.108",
  226. "ip port": 8123,
  227. "protocol api": "http",
  228. "token": "!secret homeassistant-token"
  229. },
  230. "interval": "15min",
  231. "logging level": "info",
  232. "machines": [],
  233. "meteoserver-attempts": "2",
  234. "meteoserver-key": "!secret meteoserver-key",
  235. "meteoserver-model": "harmonie",
  236. "notifications": {
  237. "berekening": "True",
  238. "last activity entity": "input_datetime.dao_laatste_activiteit",
  239. "notification entity": "input_text.notification_dao",
  240. "opstarten": "False"
  241. },
  242. "prices": {
  243. "cost supplier consumption": {
  244. "2024-08-01": 0.020496
  245. },
  246. "cost supplier production": {
  247. "2024-08-01": 0.020496
  248. },
  249. "energy taxes consumption": {
  250. "2024-01-01": 0.1088,
  251. "2025-01-01": 0.10154
  252. },
  253. "energy taxes production": {
  254. "2024-01-01": 0.1088,
  255. "2025-01-01": 0.10154,
  256. "2027-01-01": 0
  257. },
  258. "entsoe-api-key": "!secret entsoe-api-key",
  259. "last invoice": "2025-10-25",
  260. "source day ahead": "nordpool",
  261. "tax refund": "True",
  262. "vat consumption": {
  263. "2023-01-01": 21
  264. },
  265. "vat production": {
  266. "2023-01-01": 21,
  267. "2027-01-01": 0
  268. }
  269. },
  270. "report": {
  271. "entities battery consumption": [
  272. "sensor.energy_socket_marstek_energy_import"
  273. ],
  274. "entities battery production": [
  275. "sensor.energy_socket_marstek_energy_export"
  276. ],
  277. "entities boiler consumption": [],
  278. "entities ev consumption": [
  279. "sensor.voordeur_lifetime_energy"
  280. ],
  281. "entities grid consumption": [
  282. "sensor.p1_meter_energy_import"
  283. ],
  284. "entities grid production": [
  285. "sensor.p1_meter_energy_export"
  286. ],
  287. "entities machine consumption": [
  288. "sensor.bosch_dryer_energy_2",
  289. "sensor.wasmachine_energy_socket_energy_import"
  290. ],
  291. "entities solar production ac": [
  292. "sensor.kwh_meter_3_phase_energy_export_2"
  293. ],
  294. "entities solar production dc": [
  295. "sensor.growatt_total_solar_energy"
  296. ],
  297. "entities wp consumption": [],
  298. "entity co2-intensity": [
  299. "sensor.co2_signal_co2_intensity"
  300. ]
  301. },
  302. "scheduler": {
  303. "1150": "get_meteo_data",
  304. "1258": "get_day_ahead_prices",
  305. "1313": "get_day_ahead_prices",
  306. "1328": "get_day_ahead_prices",
  307. "1343": "get_day_ahead_prices",
  308. "1358": "get_day_ahead_prices",
  309. "1405": "get_tibber_data",
  310. "1455": "get_day_ahead_prices",
  311. "1535": "get_day_ahead_prices",
  312. "1750": "get_meteo_data",
  313. "2305": "get_tibber_data",
  314. "2350": "get_meteo_data",
  315. "2355": "calc_baseloads",
  316. "2357": "clean_data",
  317. "0550": "get_meteo_data",
  318. "0755": "get_tibber_data",
  319. "active": "True",
  320. "xx00": "calc_optimum",
  321. "xx15": "calc_optimum",
  322. "xx30": "calc_optimum",
  323. "xx45": "calc_optimum"
  324. },
  325. "solar": [
  326. {
  327. "entity pv switch": "input_boolean.dao_panelen_aan_uit",
  328. "max power": 7,
  329. "name": "9240Wp Phono Solar - Growatt MOD7000-TL XH (BP)",
  330. "strings": [
  331. {
  332. "capacity": 4.200,
  333. "name": "Growatt North-West 4200Wp",
  334. "orientation": 135,
  335. "tilt": 40,
  336. "yield-dao": 0.008925,
  337. "yield": 0.00971
  338. },
  339. {
  340. "capacity": 5.040,
  341. "name": "Growatt South-East 5040Wp",
  342. "orientation": -45,
  343. "tilt": 40,
  344. "yield-dao": 0.01071,
  345. "yield": 0.011886
  346. }
  347. ]
  348. }
  349. ],
  350. "strategy": "minimize cost",
  351. "max gap": 0.005,
  352. "tibber": {
  353. "api_token": "!secret tibber-api-token"
  354. },
  355. "use_calc_baseload": "True"
  356. }
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