| Overall Statistics |
|
Total Trades 5309 Average Win 0.04% Average Loss -0.02% Compounding Annual Return -6.868% Drawdown 17.400% Expectancy -0.116 Net Profit -6.322% Sharpe Ratio -0.261 Probabilistic Sharpe Ratio 9.067% Loss Rate 68% Win Rate 32% Profit-Loss Ratio 1.72 Alpha -0.041 Beta -0.077 Annual Standard Deviation 0.167 Annual Variance 0.028 Information Ratio -0.261 Tracking Error 0.282 Treynor Ratio 0.568 Total Fees $5394.29 |
from datetime import timedelta
from QuantConnect.Data.UniverseSelection import *
from Selection.FundamentalUniverseSelectionModel import FundamentalUniverseSelectionModel
class LiquidValueStocks(QCAlgorithm):
def Initialize(self):
self.SetStartDate(2011, 1, 1)
self.SetEndDate(2011, 12, 1)
self.SetCash(100000)
self.UniverseSettings.Resolution = Resolution.Daily
self.AddUniverseSelection(LiquidValueUniverseSelectionModel())
#1. Create and instance of the LongShortEYAlphaModel
self.AddAlpha(LongShortEYAlphaModel())
self.SetPortfolioConstruction(EqualWeightingPortfolioConstructionModel())
self.SetExecution(ImmediateExecutionModel())
def OnData(self, data):
self.Plot("Positions", "Number of open positions", len(self.Portfolio))
class LiquidValueUniverseSelectionModel(FundamentalUniverseSelectionModel):
def __init__(self):
super().__init__(True, None, None)
self.lastMonth = -1
def SelectCoarse(self, algorithm, coarse):
if self.lastMonth == algorithm.Time.month:
return Universe.Unchanged
self.lastMonth = algorithm.Time.month
sortedByDollarVolume = sorted([x for x in coarse if x.HasFundamentalData],
key=lambda x: x.DollarVolume, reverse=True)
return [x.Symbol for x in sortedByDollarVolume[:100]]
def SelectFine(self, algorithm, fine):
sortedByYields = sorted(fine, key=lambda f: f.ValuationRatios.EarningYield, reverse=True)
universe = sortedByYields[:10] + sortedByYields[-10:]
return [f.Symbol for f in universe]
# Define the LongShortAlphaModel class
class LongShortEYAlphaModel(AlphaModel):
def __init__(self):
self.lastMonth = -1
def Update(self, algorithm, data):
insights = []
#2. If else statement to emit signals once a month
if self.lastMonth == algorithm.Time.month:
return insights
self.lastMonth = algorithm.Time.month
#3. For loop to emit insights with insight directions
# based on whether earnings yield is greater or less than zero once a month
for security in algorithm.ActiveSecurities.Values:
direction = 1 if security.Fundamentals.ValuationRatios.EarningYield > 0 else -1
insights.append(Insight.Price(security.Symbol, timedelta(28), direction))
return insights