219 lines
8.1 KiB
Python
Executable File
219 lines
8.1 KiB
Python
Executable File
#!/usr/bin/env python3
|
||
# -*- coding: utf-8 -*-
|
||
"""
|
||
variation_calc.py — vd960Loop variation ↔ ΔL / ΔL-L 换算工具
|
||
|
||
物理关系(推导见 docs/variation-analysis.md §9):
|
||
CAPVD ∝ T = 2π·√(LC) (周期域, 归一化到 MEASUREMENT_BASE≈131072)
|
||
variation = Origin − CAPVD (V1.05 起 3B 有符号补码, 正=金属进入方向)
|
||
variation/Origin = 1 − √(1 + ΔL/L0) (精确)
|
||
ΔL/L0 ≈ −2 × variation/Origin (一阶, |ΔL/L| ≪ 1 时, 残差 <0.2%)
|
||
Δf/f ≈ variation/Origin (频域对应: CAPVD ∝ 1/f)
|
||
L0 = 1/(4π²·f0²·C) (绝对电感, f0=上报频率, C=档位电容)
|
||
|
||
电容档位无关性: Origin 与 CAPVD 均 ∝ √C, variation/Origin 中 C 消掉,
|
||
四档电容(33/43/66/76nF)共用同一套 ΔL/L 换算表。
|
||
|
||
用法示例:
|
||
# 正向: 频率+电容+variation+origin → L0, ΔL, ΔL/L
|
||
python3 variation_calc.py --freq 100 --cap 43 --variation 216 --origin 131072
|
||
# 反推: 给定 ΔL/L 看需要多大 variation
|
||
python3 variation_calc.py --freq 100 --cap 43 --dl-rel 0.33
|
||
# 解析协议 3B LE 有符号补码 (V1.05 variation 字段)
|
||
python3 variation_calc.py --parse-var F6FFFF
|
||
# 灵敏度档位对照表
|
||
python3 variation_calc.py --sens-table
|
||
# 交互模式
|
||
python3 variation_calc.py --interactive
|
||
"""
|
||
|
||
import argparse
|
||
import math
|
||
import sys
|
||
|
||
# ---------------------------------------------------------------- 常量
|
||
CAP_OPTIONS = (33, 43, 66, 76) # 线圈内部电容四档 (nF)
|
||
ORIGIN_DEFAULT = 131072 # MEASUREMENT_BASE = 2^17
|
||
SENS_TABLE = {0: (216, 108), 1: (108, 72), 2: (36, 18), 3: (10, 9)}
|
||
SENS_NAMES = {0: "0(低)", 1: "1(中)", 2: "2(高)", 3: "3(最高)"}
|
||
|
||
|
||
# ---------------------------------------------------------------- 核心计算
|
||
def inductance(freq_hz, cap_nf):
|
||
"""绝对电感 L0 = 1/(4π²·f²·C), 返回 μH"""
|
||
c = cap_nf * 1e-9
|
||
return 1.0 / (4.0 * math.pi * math.pi * freq_hz * freq_hz * c) * 1e6
|
||
|
||
|
||
def variation_ratio(variation, origin):
|
||
"""variation/Origin (有符号)"""
|
||
return variation / origin
|
||
|
||
|
||
def delta_ll(vr):
|
||
"""ΔL/L: (精确, 一阶), 返回相对值(负=电感减小)"""
|
||
exact = vr * vr - 2.0 * vr
|
||
approx = -2.0 * vr
|
||
return exact, approx
|
||
|
||
|
||
def variation_from_dl_rel(dl_rel_pct, origin):
|
||
"""反推: 给定 |ΔL/L|(%) → 需要的 variation (计数域)"""
|
||
r = dl_rel_pct / 100.0 # ΔL/L = −r
|
||
vr = 1.0 - math.sqrt(1.0 - r) # 精确
|
||
return vr * origin, vr
|
||
|
||
|
||
def sens_hit(vr):
|
||
"""当前 variation/Origin 落在哪档进入阈值 (SensTable/65536)"""
|
||
for sens in (0, 1, 2, 3):
|
||
thr = SENS_TABLE[sens][0] / 65536.0
|
||
if abs(vr) >= thr:
|
||
return sens, thr
|
||
return None, None
|
||
|
||
|
||
def parse_var_3byte(hex_str):
|
||
"""V1.05 协议 variation 字段: 3B LE 有符号补码 → int32
|
||
F6FFFF → −10; 000001 → 65536
|
||
"""
|
||
h = hex_str.strip()
|
||
if len(h) != 6:
|
||
raise ValueError("需要 6 位 hex (3 字节 LE), 如 F6FFFF")
|
||
b0 = int(h[0:2], 16)
|
||
b1 = int(h[2:4], 16)
|
||
b2 = int(h[4:6], 16)
|
||
v = b0 | (b1 << 8) | (b2 << 16)
|
||
if v & 0x800000:
|
||
v |= 0xFF000000
|
||
if v >= 0x80000000:
|
||
v -= 0x100000000
|
||
return v
|
||
|
||
|
||
def fmt_sens_table():
|
||
lines = ["灵敏度档位 → ΔL/L 触发阈值 (vd960Loop SensTable, 一阶 ΔL/L≈−2×vr):"]
|
||
lines.append(f"{'SENS':<8}{'进入表':<8}{'离开表':<8}{'Δf/f进入':<12}{'ΔL/L进入':<12}{'ΔL/L离开'}")
|
||
for sens in (0, 1, 2, 3):
|
||
sin, sout = SENS_TABLE[sens]
|
||
vr_in = sin / 65536.0
|
||
vr_out = sout / 65536.0
|
||
lines.append(f"{SENS_NAMES[sens]:<8}{sin:<8}{sout:<8}"
|
||
f"{vr_in * 100:>7.4f}%{'':<4}{-2 * vr_in * 100:>8.4f}%{'':<4}{-2 * vr_out * 100:>8.4f}%")
|
||
return "\n".join(lines)
|
||
|
||
|
||
def forward(freq, cap, variation, origin):
|
||
"""正向计算并打印"""
|
||
f_hz = freq * 1000.0 if freq < 1e6 else freq
|
||
l0 = inductance(f_hz, cap)
|
||
vr = variation_ratio(variation, origin)
|
||
exact, approx = delta_ll(vr)
|
||
dl = l0 * exact
|
||
|
||
sens, thr = sens_hit(vr)
|
||
|
||
out = []
|
||
out.append("=" * 62)
|
||
out.append("正向换算: 频率+电容+variation+Origin")
|
||
out.append("=" * 62)
|
||
out.append(f" 上报频率 f0 : {f_hz / 1000.0:>10.3f} kHz")
|
||
out.append(f" 电容档 C : {cap:>10d} nF")
|
||
out.append(f" 绝对电感 L0 : {l0:>10.3f} μH (L=1/(4π²f²C))")
|
||
out.append(f" Origin : {origin:>10d} (CAPVD 基线)")
|
||
out.append(f" variation : {variation:>10d} (3B 有符号)")
|
||
out.append(f" variation/Origin : {vr * 100:>9.4f} % (≈ Δf/f)")
|
||
out.append("-" * 62)
|
||
out.append(f" ΔL/L 一阶 : {-2 * vr * 100:>9.4f} % (≈ −2×vr)")
|
||
out.append(f" ΔL/L 精确 : {exact * 100:>9.4f} % (vr²−2vr)")
|
||
out.append(f" ΔL (绝对) : {dl:>9.4f} μH")
|
||
out.append("-" * 62)
|
||
if sens is not None:
|
||
out.append(f" ≥ SENS={SENS_NAMES[sens]} 进入阈值 (vr_thr={thr * 100:.4f}%)")
|
||
else:
|
||
out.append(f" 低于全部进入阈值 (最小档 SENS=3: {10 / 65536 * 100:.4f}%)")
|
||
out.append("=" * 62)
|
||
return "\n".join(out)
|
||
|
||
|
||
def reverse(freq, cap, dl_rel_pct, origin):
|
||
"""反推: 给定 |ΔL/L|% → variation"""
|
||
f_hz = freq * 1000.0 if freq < 1e6 else freq
|
||
l0 = inductance(f_hz, cap)
|
||
variation, vr = variation_from_dl_rel(dl_rel_pct, origin)
|
||
|
||
out = []
|
||
out.append("=" * 62)
|
||
out.append(f"反推: ΔL/L = −{dl_rel_pct}% 需要的 variation")
|
||
out.append("=" * 62)
|
||
out.append(f" L0 = {l0:.3f} μH (f0={f_hz / 1000:.3f}kHz, C={cap}nF)")
|
||
out.append(f" ΔL = {l0 * (-dl_rel_pct / 100.0):.4f} μH")
|
||
out.append(f" variation/Origin = {vr * 100:.4f} %")
|
||
out.append(f" variation = {variation:.0f} (Origin={origin})")
|
||
out.append(f" 一阶估算 = {origin * dl_rel_pct / 200.0:.0f} (vr≈r/2)")
|
||
out.append("=" * 62)
|
||
return "\n".join(out)
|
||
|
||
|
||
def interactive():
|
||
print("vd960Loop variation 换算工具 — 交互模式 (Ctrl+C 退出)")
|
||
cap = int(input("电容档 (33/43/66/76 nF): "))
|
||
if cap not in CAP_OPTIONS:
|
||
print(f"警告: {cap}nF 不在标准档位 {CAP_OPTIONS} 中")
|
||
freq = float(input("上报频率 (kHz, 如 100): "))
|
||
origin = int(input(f"Origin (默认 {ORIGIN_DEFAULT}): ") or ORIGIN_DEFAULT)
|
||
while True:
|
||
try:
|
||
variation = int(input("variation (有符号, q 退出): "))
|
||
except ValueError:
|
||
break
|
||
print()
|
||
print(forward(freq, cap, variation, origin))
|
||
|
||
|
||
def main():
|
||
p = argparse.ArgumentParser(
|
||
description="vd960Loop variation ↔ ΔL/ΔL-L 换算工具",
|
||
formatter_class=argparse.RawDescriptionHelpFormatter,
|
||
epilog=__doc__)
|
||
p.add_argument("--freq", type=float, help="上报频率 (默认 kHz, <1e6 视为 kHz)")
|
||
p.add_argument("--cap", type=int, choices=CAP_OPTIONS,
|
||
help="电容档位 nF: 33/43/66/76")
|
||
p.add_argument("--variation", type=int, help="variation (3B 有符号, 计数域)")
|
||
p.add_argument("--origin", type=int, default=ORIGIN_DEFAULT,
|
||
help=f"Origin 基线 (默认 {ORIGIN_DEFAULT})")
|
||
p.add_argument("--dl-rel", type=float,
|
||
help="反推模式: 给定 |ΔL/L|%% → 所需 variation")
|
||
p.add_argument("--parse-var", metavar="HEX6",
|
||
help="解析 V1.05 协议 3B LE 有符号补码 (如 F6FFFF = −10)")
|
||
p.add_argument("--sens-table", action="store_true", help="打印灵敏度档位对照表")
|
||
p.add_argument("--interactive", action="store_true", help="交互模式")
|
||
args = p.parse_args()
|
||
|
||
if args.sens_table:
|
||
print(fmt_sens_table())
|
||
return
|
||
|
||
if args.parse_var:
|
||
v = parse_var_3byte(args.parse_var)
|
||
print(f"3B LE 补码 {args.parse_var.upper()} → {v}")
|
||
return
|
||
|
||
if args.interactive:
|
||
interactive()
|
||
return
|
||
|
||
if args.dl_rel is not None:
|
||
if not args.freq or not args.cap:
|
||
p.error("反推模式需要 --freq 和 --cap")
|
||
print(reverse(args.freq, args.cap, args.dl_rel, args.origin))
|
||
return
|
||
|
||
if None in (args.freq, args.cap, args.variation):
|
||
p.error("需要 --freq --cap --variation (或 --dl-rel / --sens-table / --interactive)")
|
||
print(forward(args.freq, args.cap, args.variation, args.origin))
|
||
|
||
|
||
if __name__ == "__main__":
|
||
sys.exit(main())
|