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- # -*- coding: utf-8 -*-
- """
- MARS-12S10P SSSR 轴向磁拉力仿真 (Motor-CAD 前台, PyMotorCAD 驱动)
- ================================================================
- 参照 pss\\maxcalculator\\motorcad_export.py 的做法: 变量名候选列表逐个尝试,
- 探测结果如实记入 results JSON (失败也记, 不掩盖)。
- 流程: 载入原 .mot → 另存时间戳副本 → 开力计算开关 → 空载(I=0)求解 →
- 负载(原电流)求解 → 探测轴向力输出(变量+波形) → 解析交叉校核 → JSON。
- 用法:
- python axial_force_run.py [--quit] [--skip-noload]
- --quit 完成后关闭 Motor-CAD (默认保持前台打开供人工检查)
- --skip-noload 只跑负载工况
- """
- import json
- import math
- import os
- import sys
- import time
- BASE = os.path.dirname(os.path.abspath(__file__))
- MOT_SRC = os.path.join(BASE, "MARS-12S10P_SSSR_D76-C150_V5.0-0819.mot")
- OUT_DIR = os.path.join(BASE, "output_motorcad")
- MU0 = 4e-7 * math.pi
- # 轴向力输出变量候选 (未实测, 探测式; Units_Force=kN 需留意单位)
- FORCE_VARS = [
- "AxialForce", "Axial_Force", "ForceAxial", "Force_Axial",
- "NetAxialForce", "AFMAxialForce", "RotorAxialForce", "Rotor_Axial_Force",
- "StatorAxialForce", "AxialForceMean", "MeanAxialForce",
- "AxialForceAverage", "AxialForce_Load", "AxialForce_OC",
- ]
- # 轴向力波形图候选 (get_magnetic_graph_point)
- FORCE_GRAPHS = [
- "AxialForceVsAngle", "AxialForce", "ForceAxial", "Axial Force",
- "Fz", "ForceZ", "Force (Axial)",
- ]
- # 气隙磁密波形候选 (解析校核用)
- BG_GRAPHS = [
- "AirgapFluxDensity", "Airgap Flux Density", "AirgapFluxDensityOC",
- "BAirgap", "FluxDensityAirgap",
- ]
- def probe_var(mc, names):
- """按候选名读变量, 返回 (名, 值); 全失败 (None, None)。"""
- for n in names:
- try:
- return n, mc.get_variable(n)
- except Exception:
- continue
- return None, None
- def probe_graph(mc, names, npoints):
- """按候选名读波形 (逐点), 返回 {name, x, y} 或 None。"""
- for n in names:
- try:
- x0, y0 = mc.get_magnetic_graph_point(n, 0)
- except Exception:
- continue
- xs, ys = [x0], [y0]
- for i in range(1, npoints):
- try:
- x, y = mc.get_magnetic_graph_point(n, i)
- except Exception:
- break
- xs.append(x)
- ys.append(y)
- return {"name": n, "x": xs, "y": ys}
- return None
- def stats(ys):
- if not ys:
- return None
- return {"mean": sum(ys) / len(ys), "min": min(ys), "max": max(ys),
- "pk2pk": max(ys) - min(ys), "n": len(ys)}
- def run_case(mc, tag, results, npoints):
- print("== 工况 [%s]: do_magnetic_calculation ..." % tag)
- t0 = time.time()
- mc.do_magnetic_calculation()
- dt = time.time() - t0
- print(" 求解耗时 %.1f s" % dt)
- case = {"solve_seconds": dt}
- n, v = probe_var(mc, ["TorqueValueAveragePerCycle", "AverageTorque",
- "MeanTorque", "ShaftTorque"])
- case["avg_torque"] = {"variable": n, "value": v}
- print(" 平均转矩: %s = %s" % (n, v))
- n, v = probe_var(mc, FORCE_VARS)
- case["axial_force_var"] = {"variable": n, "value": v}
- print(" 轴向力变量: %s = %s" % (n, v))
- g = probe_graph(mc, FORCE_GRAPHS, npoints)
- if g:
- case["axial_force_graph"] = {"name": g["name"], "stats": stats(g["y"]),
- "x": g["x"], "y": g["y"]}
- print(" 轴向力波形 [%s]: %s" % (g["name"], stats(g["y"])))
- else:
- case["axial_force_graph"] = None
- print(" [警告] 轴向力波形候选全部失败")
- g = probe_graph(mc, BG_GRAPHS, npoints)
- if g:
- ys = g["y"]
- b2_mean = sum(b * b for b in ys) / len(ys)
- case["airgap_B_graph"] = {"name": g["name"], "stats": stats(ys),
- "B2_mean": b2_mean}
- print(" 气隙磁密波形 [%s]: %s, mean(B^2)=%.4f"
- % (g["name"], stats(ys), b2_mean))
- else:
- case["airgap_B_graph"] = None
- print(" [提示] 气隙磁密波形候选失败, 解析校核转 GUI 人工读数")
- results["case_" + tag] = case
- return case
- def main(argv):
- quit_after = "--quit" in argv
- skip_noload = "--skip-noload" in argv
- os.makedirs(OUT_DIR, exist_ok=True)
- ts = time.strftime("%m%d_%H%M%S")
- from ansys.motorcad.core import MotorCAD
- print("启动 Motor-CAD (前台) ...")
- mc = MotorCAD()
- results = {"when": ts, "source_mot": os.path.basename(MOT_SRC)}
- try:
- mc.load_from_file(MOT_SRC)
- out_mot = os.path.join(OUT_DIR, "MARS_SSSR_axialforce_%s.mot" % ts)
- mc.save_to_file(out_mot)
- print("工作副本: %s" % out_mot)
- results["work_mot"] = out_mot
- # ---- 模型关键参数回读 (如实入档) ----
- params = {}
- for label, names in [
- ("Slot_Number", ["Slot_Number"]),
- ("Pole_Number", ["Pole_Number"]),
- ("Airgap_mm", ["Airgap"]),
- ("Magnet_Thickness_mm", ["Magnet_Thickness"]),
- ("ShaftSpeed_rpm", ["ShaftSpeed", "Shaft_Speed"]),
- ("PeakCurrent_A", ["PeakCurrent", "Peak_Current"]),
- ("PhaseAdvance_deg", ["PhaseAdvance", "Phase_Advance"]),
- ("Stator_Lam_Dia_mm", ["Stator_Lam_Dia"]),
- ("Stator_Bore_mm", ["Stator_Bore"]),
- ("AFM_D_Rotor_mm", ["AFM_D_Rotor"]),
- ("TorquePointsPerCycle", ["TorquePointsPerCycle"]),
- ("Units_Force", ["Units_Force"]),
- ]:
- n, v = probe_var(mc, names)
- params[label] = v
- print(" %s: %s = %s" % (label, n, v))
- results["params"] = params
- i_load = float(params["PeakCurrent_A"] or 0.0)
- npoints = int(params["TorquePointsPerCycle"] or 30) + 1
- # ---- 打开电磁力计算开关 ----
- for var in ["ElectromagneticForcesCalc_Load",
- "ElectromagneticForcesCalc_OC"]:
- try:
- mc.set_variable(var, True)
- print(" [OK] %s = True" % var)
- except Exception as e:
- print(" [警告] %s 设置失败: %s" % (var, e))
- # ---- 工况 A: 空载 (I=0, 磁钢对定子铁芯的静态轴向吸力) ----
- if not skip_noload:
- name_i, _ = probe_var(mc, ["PeakCurrent", "Peak_Current"])
- mc.set_variable(name_i, 0.0)
- print(" %s -> 0 (空载)" % name_i)
- run_case(mc, "noload", results, npoints)
- mc.set_variable(name_i, i_load)
- print(" %s 恢复 %.3f A" % (name_i, i_load))
- # ---- 工况 B: 负载 (模型自带电流) ----
- run_case(mc, "load", results, npoints)
- # ---- 解析交叉校核: F ≈ A_gap/(2μ0) · mean(B²) ----
- try:
- d_out = float(params["AFM_D_Rotor_mm"]) * 1e-3
- d_in = float(params["Stator_Bore_mm"]) * 1e-3
- area = math.pi / 4.0 * (d_out ** 2 - d_in ** 2)
- results["analytic"] = {"area_m2": area,
- "note": "F=A/(2mu0)*mean(B^2), B 取仿真气隙磁密"}
- for tag in ("noload", "load"):
- case = results.get("case_" + tag) or {}
- bg = case.get("airgap_B_graph")
- if bg and bg.get("B2_mean"):
- f_est = area / (2.0 * MU0) * bg["B2_mean"]
- results["analytic"]["F_est_%s_N" % tag] = f_est
- print(" 解析估算 F_%s ≈ %.1f N (A=%.5f m², mean(B²)=%.4f)"
- % (tag, f_est, area, bg["B2_mean"]))
- except Exception as e:
- results["analytic"] = {"failed": str(e)}
- mc.save_to_file(out_mot)
- res_path = os.path.join(OUT_DIR, "results_axialforce_%s.json" % ts)
- with open(res_path, "w", encoding="utf-8") as f:
- json.dump(results, f, ensure_ascii=False, indent=2)
- print("RESULTS: %s" % res_path)
- return 0
- finally:
- if quit_after:
- try:
- mc.quit()
- except Exception:
- pass
- else:
- print("[提示] Motor-CAD 保持前台打开供检查; 自动化场景加 --quit。")
- if __name__ == "__main__":
- sys.exit(main(sys.argv[1:]))
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