- Experiment: select_num = 1, 2, 3 comparison - Period: 2020-01-10 ~ 2026-06-02 (1546 trading days) - Key findings: - Top-1: highest return (600%), highest drawdown (-25.5%) - Top-3: best risk-adjusted return (Calmar 1.73, Sharpe 1.35) - Top-2: balanced middle ground (Calmar 1.69) - Add rotation/experiment_select_num.py experiment script - Save report to docs/experiments/005_select_num_comparison.md
194 lines
6.2 KiB
Python
194 lines
6.2 KiB
Python
#!/usr/bin/env python3
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"""
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select_num A/B 实验:对比 Top-1 / Top-2 / Top-3 的表现
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用法:
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python rotation/experiment_select_num.py
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"""
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import os
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import sys
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import yaml
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import json
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import tempfile
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import numpy as np
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import pandas as pd
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from pathlib import Path
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from datetime import datetime
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PROJECT_ROOT = Path(__file__).parent.parent
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sys.path.insert(0, str(PROJECT_ROOT))
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from rotation.simple_rotation import SimpleRotationStrategy
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def run_with_select_num(config_path: str, select_num: int, output_dir: Path) -> dict:
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"""运行一次策略,覆盖 select_num"""
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print(f"\n{'='*60}")
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print(f" 实验: select_num = {select_num}")
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print(f"{'='*60}\n")
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# 读取原始配置,修改 select_num,写入临时文件
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with open(config_path, 'r', encoding='utf-8') as f:
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cfg = yaml.safe_load(f)
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cfg['rotation']['select_num'] = select_num
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tmp_path = output_dir / f'config_select_{select_num}.yaml'
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with open(tmp_path, 'w', encoding='utf-8') as f:
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yaml.dump(cfg, f, default_flow_style=False, allow_unicode=True)
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strategy = SimpleRotationStrategy(config_path=str(tmp_path))
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result = strategy.run()
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if result:
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# 导出到子目录
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sub_dir = output_dir / f'select_{select_num}'
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sub_dir.mkdir(parents=True, exist_ok=True)
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strategy.export_results(output_dir=str(sub_dir))
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return result.get('metrics', {})
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return {}
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def print_comparison(all_metrics: dict):
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"""打印对比表格"""
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print(f"\n\n{'='*80}")
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print(f" select_num 实验对比结果")
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print(f"{'='*80}\n")
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header = f"{'指标':<16}"
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for n in sorted(all_metrics.keys()):
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header += f"{'Top-'+str(n):>12}"
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print(header)
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print("-" * (16 + 12 * len(all_metrics)))
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rows = [
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('累计收益', 'total_return', '{:.2%}'),
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('年化收益', 'annual_return', '{:.2%}'),
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('最大回撤', 'max_drawdown', '{:.2%}'),
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('夏普比率', 'sharpe_ratio', '{:.2f}'),
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('Calmar比率', 'calmar_ratio', '{:.2f}'),
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('日胜率', 'win_rate', '{:.2%}'),
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('交易日数', 'n_days', '{}'),
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('调仓次数', 'rebalance_count', '{}'),
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]
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for label, key, fmt in rows:
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row = f"{label:<16}"
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for n in sorted(all_metrics.keys()):
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val = all_metrics[n].get(key, 0)
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row += f"{fmt.format(val):>12}"
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print(row)
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print(f"\n{'='*80}")
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def plot_comparison(all_metrics: dict, output_dir: Path):
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"""生成对比图表"""
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import matplotlib
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matplotlib.use("Agg")
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import matplotlib.pyplot as plt
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fig, axes = plt.subplots(1, 3, figsize=(16, 5))
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fig.suptitle("select_num A/B Experiment", fontsize=14, fontweight="bold")
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nums = sorted(all_metrics.keys())
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colors = ['#E74C3C', '#3498DB', '#2ECC71']
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# 1. 收益对比
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ax = axes[0]
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annuals = [all_metrics[n].get('annual_return', 0) for n in nums]
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totals = [all_metrics[n].get('total_return', 0) for n in nums]
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x = np.arange(len(nums))
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w = 0.35
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ax.bar(x - w/2, [a*100 for a in annuals], w, label='Annual %', color='#E74C3C', alpha=0.8)
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ax.bar(x + w/2, [t*100 for t in totals], w, label='Total %', color='#3498DB', alpha=0.8)
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ax.set_xticks(x)
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ax.set_xticklabels([f'Top-{n}' for n in nums])
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ax.set_ylabel('Return (%)')
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ax.set_title('Returns')
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ax.legend()
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ax.grid(True, alpha=0.3)
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# 2. 风险对比
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ax = axes[1]
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dds = [abs(all_metrics[n].get('max_drawdown', 0)) * 100 for n in nums]
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ax.bar(x, dds, color='#E74C3C', alpha=0.7)
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ax.set_xticks(x)
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ax.set_xticklabels([f'Top-{n}' for n in nums])
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ax.set_ylabel('Max Drawdown (%)')
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ax.set_title('Risk')
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ax.grid(True, alpha=0.3)
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# 3. 夏普 & Calmar
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ax = axes[2]
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sharpes = [all_metrics[n].get('sharpe_ratio', 0) for n in nums]
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calmars = [all_metrics[n].get('calmar_ratio', 0) for n in nums]
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ax.bar(x - w/2, sharpes, w, label='Sharpe', color='#2ECC71', alpha=0.8)
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ax.bar(x + w/2, calmars, w, label='Calmar', color='#F39C12', alpha=0.8)
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ax.set_xticks(x)
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ax.set_xticklabels([f'Top-{n}' for n in nums])
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ax.set_ylabel('Ratio')
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ax.set_title('Risk-Adjusted')
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ax.legend()
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ax.grid(True, alpha=0.3)
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plt.tight_layout()
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chart_path = output_dir / 'select_num_comparison.png'
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plt.savefig(str(chart_path), dpi=150, bbox_inches="tight")
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plt.close()
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print(f"\n + Chart: {chart_path}")
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def plot_nav_comparison(output_dir: Path):
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"""加载三组 NAV 画在同一张图上"""
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import matplotlib
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matplotlib.use("Agg")
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import matplotlib.pyplot as plt
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fig, ax = plt.subplots(figsize=(14, 6))
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colors = {'1': '#E74C3C', '2': '#3498DB', '3': '#2ECC71'}
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for n in [1, 2, 3]:
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nav_path = output_dir / f'select_{n}' / 'simple_rotation_nav.csv'
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if nav_path.exists():
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df = pd.read_csv(nav_path, parse_dates=['date'])
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ax.plot(df['date'], df['nav'], label=f'Top-{n}', linewidth=1.5, color=colors[str(n)])
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ax.set_title("NAV Curve Comparison (select_num)", fontsize=14, fontweight="bold")
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ax.set_ylabel("NAV")
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ax.set_yscale("log")
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ax.legend(fontsize=11)
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ax.grid(True, alpha=0.3)
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plt.tight_layout()
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nav_chart = output_dir / 'select_num_nav_comparison.png'
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plt.savefig(str(nav_chart), dpi=150, bbox_inches="tight")
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plt.close()
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print(f" + NAV Chart: {nav_chart}")
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if __name__ == "__main__":
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if 'FLASK_API_URL' not in os.environ:
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os.environ['FLASK_API_URL'] = 'https://k3s.tokenpluse.xyz'
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config_path = str(Path(__file__).parent / 'config_simple.yaml')
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output_dir = PROJECT_ROOT / 'results' / 'experiment_select_num'
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output_dir.mkdir(parents=True, exist_ok=True)
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all_metrics = {}
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for n in [1, 2, 3]:
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metrics = run_with_select_num(config_path, n, output_dir)
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if metrics:
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all_metrics[n] = metrics
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if all_metrics:
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print_comparison(all_metrics)
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plot_comparison(all_metrics, output_dir)
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plot_nav_comparison(output_dir)
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# 保存原始指标
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metrics_path = output_dir / 'experiment_metrics.json'
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with open(metrics_path, 'w', encoding='utf-8') as f:
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json.dump({str(k): v for k, v in all_metrics.items()}, f, ensure_ascii=False, indent=2)
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print(f" + Metrics: {metrics_path}")
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