添加一个新的厕率

This commit is contained in:
jackyu66git
2026-02-19 00:44:53 +08:00
parent d76e9d47a6
commit e2726db9c1
4 changed files with 92 additions and 67 deletions
+5 -6
View File
@@ -26,7 +26,7 @@ class ChanMACDHistSet():
def set_middle_klu(self, middle_klu):
self.middle_klu = middle_klu
#self.middle_area = abs(middle_klu.macdhist)
self.middle_klu = None
#self.middle_klu = None
def set_unittf_div(self, unittf_div):
self.unittf_div = unittf_div
def add_klu(self, klu):
@@ -92,12 +92,11 @@ class ChanMACDHistSet():
self.peak_klu = self.start_klu
else:
self.peak_klu = end_klu
if self.start_klu.index + 2 == end_klu.index:
peak = self.klu_list[0]
if len(self.klu_list) >= 3 and self.peak_klu == None:
self.peak_klu = self.klu_list[0]
for klu in self.klu_list:
if abs(klu.macdhist) > abs(peak.macdhist):
peak = klu
self.peak_klu = peak
if abs(klu.macdhist) > abs(self.peak_klu.macdhist):
self.peak_klu = klu
peak_str = ""
state_str = ""
for peak_div in self.peak_div_list:
+9
View File
@@ -48,6 +48,15 @@ class ChanSBI():
#print(self.start_bi.start_time, self.end_bi.end_time, self.pre.start_bi.start_time, self.next.start_bi.start_time, self.dir, self.has_fx_gap, self.fx)
return Chan_FX_TYPE.BOTTOM
return Chan_FX_TYPE.UNKNOWN
def check_seg_bi_broken(self):
broken = False
if self.fx == Chan_FX_TYPE.TOP:
if self.next.low < self.pre.high:
broken = True
elif self.fx == Chan_FX_TYPE.BOTTOM:
if self.next.high > self.pre.low:
broken = True
return broken
def check_bi_included(self, bi):
included = False
if self.high > bi.high:
+26 -8
View File
@@ -118,7 +118,7 @@ class TF_DF():
df['volume_ratio'] = self.cal_volume_ratio(df)
return df
def get_klu_state(self, dataframe):
klc_list = self.get_klc_list(dataframe)
klc_list = self.get_klc_list(self.get_klu_list(dataframe))
bi_list = self.cal_bi_list(klc_list)
klu_state_list = []
klc_index = 0
@@ -127,24 +127,41 @@ class TF_DF():
klc_index = len(klc_list) - 1
klc = klc_list[klc_index]
if klc.end_klu and klc.end_klu.idx == index:
if klc.klc_fx_type == Chan_KLC_FX.TOP4:
if klc.klc_fx_type == Chan_KLC_FX.TOP1 or klc.klc_fx_type == Chan_KLC_FX.TOP2:
klu_state_list.append("10")
elif klc.klc_fx_type == Chan_KLC_FX.BOTTOM4:
#print(klc.end_time, klc.klc_fx_type)
elif klc.klc_fx_type == Chan_KLC_FX.BOTTOM1 or klc.klc_fx_type == Chan_KLC_FX.BOTTOM2:
klu_state_list.append("-10")
#print(klc.end_time, klc.klc_fx_type)
else:
klu_state_list.append("00")
if klc.continue_div:
if klc.macdhist > 0:
klu_state_list.append("20")
#print(klc.end_time, "CD", 20)
else:
klu_state_list.append("-20")
#print(klc.end_time, "CD", -20)
elif klc.separate_div:
if klc.macdhist > 0:
klu_state_list.append("30")
#print(klc.end_time, "SD", 30)
else:
klu_state_list.append("-30")
#print(klc.end_time, "SD", -30)
else:
klu_state_list.append("00")
klc_index += 1
else:
klu_state_list.append("00")
return klu_state_list
def check_fx(self, klc):
if klc.pre and klc.next:
if klc.high > klc.pre.high and klc.high > klc.next.high and klc.low > klc.pre.low and klc.low > klc.next.low:
if klc.high > klc.pre.high and klc.high > klc.next.high and klc.low > klc.pre.low and klc.low > klc.next.low and klc.macd> 0:
#if (klc.close > klc.ema52 or klc.next.close > klc.next.ema52) and klc.macd > 0:
klc.set_fx(Chan_FX_TYPE.TOP)
#print(klc.start_time, klc.end_time,klc.next.start_time, klc.next.end_time, klc.macd, klc.state, klc.fx, "TOP")
return Chan_FX_TYPE.TOP
elif klc.low < klc.pre.low and klc.low < klc.next.low and klc.high < klc.pre.high and klc.high < klc.next.high:
elif klc.low < klc.pre.low and klc.low < klc.next.low and klc.high < klc.pre.high and klc.high < klc.next.high and klc.macd < 0:
#if (klc.close < klc.ema52 or klc.next.close < klc.next.ema52) and klc.macd < 0:
klc.set_fx(Chan_FX_TYPE.BOTTOM)
#print(klc.start_time, klc.end_time,klc.next.start_time, klc.next.end_time, klc.macd, klc.state, klc.fx, "BOTTOM")
@@ -862,6 +879,7 @@ class TF_DF():
if fx == Chan_FX_TYPE.BOTTOM:
if last_top:
if self.check_bottom_fx(last_top, klc) == False:
#print(klc.end_time, last_top.end_time, "---")
fx = Chan_FX_TYPE.UNKNOWN
# Do nothing
if fx == Chan_FX_TYPE.UNKNOWN:
@@ -1171,12 +1189,12 @@ class TF_DF():
#print(bi_list[index].start_time, bi_list[index].start_klc.start_time, bi_list[index].dir)
return bi_list
def check_top_fx(self, last_bottom, klc):
if last_bottom.high > klc.pre.low or last_bottom.high > klc.next.low:
if (last_bottom.high > klc.pre.low or last_bottom.high > klc.next.low) and (klc.index - last_bottom.index < 10):
return False
return True
def check_bottom_fx(self, last_top, klc):
if last_top.low < klc.pre.high or last_top.low < klc.next.high:
if (last_top.low < klc.pre.high or last_top.low < klc.next.high) and (klc.index - last_top.index < 10):
return False
return True
+52 -53
View File
@@ -20,7 +20,7 @@ logger = logging.getLogger(__name__)
# freqtrade plot-dataframe --strategy ChanLun_BTC_30 --datadir user_data/data/binance -c ./user_data/ChanLun_SOL_30.json --timerange=20250309-
# freqtrade trade -c ./user_data/Chan/config/ChanLun_BTC_30.json --strategy ChanLun_BTC_30 --strategy-path ./user_data/Chan/strategies
# freqtrade backtesting -c ./user_data/Chan/config/ChanLun_BTC_30.json --strategy ChanLun_BTC_30 --strategy-path ./user_data/Chan/strategies --timerange=20250901-
# freqtrade backtesting -c ./user_data/Chan/config/ChanLun_BTC_30.json --strategy ChanLun_BTC_30 --strategy-path ./user_data/Chan/strategies --timerange=20260101-
# freqtrade download-data -c ./user_data/Chan/config/ChanLun_BTC_30.json -t 1m --pairs BTC/USDT:USDT --timerange=20250405-
# freqtrade hyperopt --hyperopt-loss SharpeHyperOptLossDaily --spaces roi --strategy ChanLun_BTC_30 --strategy-path ./user_data/Chan/strategies -c ./user_data/Chan/config/ChanLun_BTC_30.json -e 200 --timerange=20250201-20250901
# freqtrade edge -c ./user_data/Chan/config/ChanLun_BTC_30.json --strategy ChanLun_BTC_30 --strategy-path ./user_data/Chan/strategies --timerange 20250721-20250901
@@ -64,9 +64,9 @@ class ChanLun_BTC_30(IStrategy):
}
can_short = True
lev = 2.0
lev = 1.0
stoploss = -0.3 # 设置为很大的负值,让custom_stoploss来控制
use_custom_stoploss = True # 启用自定义止损
use_custom_stoploss = False # 启用自定义止损
trailing_stop = False
trailing_stop_positive = 0.03
@@ -75,7 +75,7 @@ class ChanLun_BTC_30(IStrategy):
# 关闭分批止盈/仓位调整
position_adjustment_enable = False
startup_candle_count = 2880
startup_candle_count = 1440
time3 = 3
time5 = 5
time15 = 15
@@ -92,61 +92,60 @@ class ChanLun_BTC_30(IStrategy):
def populate_indicators(self, dataframe: DataFrame, metadata: dict) -> DataFrame:
# resample our dataframes
dataframe_3 = resample_to_interval(dataframe, self.get_ticker_indicator() * 3)
#dataframe_3 = resample_to_interval(dataframe, self.get_ticker_indicator() * 3)
dataframe_5 = resample_to_interval(dataframe, self.get_ticker_indicator() * 5)
dataframe_15 = resample_to_interval(dataframe, self.get_ticker_indicator() * 15)
#dataframe_15 = resample_to_interval(dataframe, self.get_ticker_indicator() * 15)
dataframe_30 = resample_to_interval(dataframe, self.get_ticker_indicator() * 30)
dataframe_60 = resample_to_interval(dataframe, self.get_ticker_indicator() * 60)
dataframe_2h = resample_to_interval(dataframe, self.get_ticker_indicator() * 120)
dataframe_4h = resample_to_interval(dataframe, self.get_ticker_indicator() * 240)
#dataframe_60 = resample_to_interval(dataframe, self.get_ticker_indicator() * 60)
#dataframe_2h = resample_to_interval(dataframe, self.get_ticker_indicator() * 120)
#dataframe_4h = resample_to_interval(dataframe, self.get_ticker_indicator() * 240)
#dataframe_1d = self.dp.get_pair_dataframe(pair=metadata['pair'], timeframe='1d')
#dataframe_1w = resample_to_interval(dataframe_1d, self.get_ticker_indicator() * 10080)
#dataframe_1m = resample_to_interval(dataframe_1d, self.get_ticker_indicator() * 43200)
dataframe_1d = resample_to_interval(dataframe, self.get_ticker_indicator() * 1440)
#dataframe_1d = resample_to_interval(dataframe, self.get_ticker_indicator() * 1440)
#dataframe_1w = resample_to_interval(dataframe, self.get_ticker_indicator() * 10080)
#dataframe_1m = resample_to_interval(dataframe, self.get_ticker_indicator() * 43200)
dataframe = self.add_indicators(dataframe)
dataframe_3 = self.add_indicators(dataframe_3)
#dataframe_3 = self.add_indicators(dataframe_3)
dataframe_5 = self.add_indicators(dataframe_5)
dataframe_15 = self.add_indicators(dataframe_15)
#dataframe_15 = self.add_indicators(dataframe_15)
dataframe_30 = self.add_indicators(dataframe_30)
dataframe_60 = self.add_indicators(dataframe_60)
dataframe_2h = self.add_indicators(dataframe_2h)
dataframe_4h = self.add_indicators(dataframe_4h)
dataframe_1d = self.add_indicators(dataframe_1d)
#dataframe_60 = self.add_indicators(dataframe_60)
#dataframe_2h = self.add_indicators(dataframe_2h)
#dataframe_4h = self.add_indicators(dataframe_4h)
#dataframe_1d = self.add_indicators(dataframe_1d)
#self.chan.plot_dual(dataframe_5, dataframe_30)
#chanpy_state = self.chanpy.get_bsp_state(dataframe_5)
#dataframe_5['chanpy_state'] = chanpy_state
state_list = self.chan.get_klu_state_list(dataframe_3)
dataframe_3['state'] = state_list
state_list = self.chan.get_klu_state_list(dataframe_5)
#state_list = self.chan.get_klu_state(dataframe_3)
#dataframe_3['state'] = state_list
state_list = self.chan.get_klu_state(dataframe_5)
dataframe_5['state'] = state_list
state_list = self.chan.get_klu_state_list(dataframe_15)
dataframe_15['state'] = state_list
state_list = self.chan.get_klu_state_list(dataframe_30)
#state_list = self.chan.get_klu_state(dataframe_15)
#dataframe_15['state'] = state_list
state_list = self.chan.get_klu_state(dataframe_30)
dataframe_30['state'] = state_list
state_list = self.chan.get_klu_state_list(dataframe_60)
dataframe_60['state'] = state_list
state_list = self.chan.get_klu_state_list(dataframe_2h)
dataframe_2h['state'] = state_list
state_list = self.chan.get_klu_state_list(dataframe_4h)
dataframe_4h['state'] = state_list
state_list = self.chan.get_klu_state_list(dataframe_1d)
dataframe_1d['state'] = state_list
#state_list = self.chan.get_klu_state(dataframe_60)
#dataframe_60['state'] = state_list
#state_list = self.chan.get_klu_state(dataframe_2h)
#dataframe_2h['state'] = state_list
#state_list = self.chan.get_klu_state(dataframe_4h)
#dataframe_4h['state'] = state_list
#state_list = self.chan.get_klu_state(dataframe_1d)
#dataframe_1d['state'] = state_list
if self.last_time + timedelta(minutes=1) < datetime.now():
print("-------------------------------------------------------------------------------")
self.last_time = datetime.now()
dataframe = resampled_merge(dataframe, dataframe_3)
#dataframe = resampled_merge(dataframe, dataframe_3)
dataframe = resampled_merge(dataframe, dataframe_5)
dataframe = resampled_merge(dataframe, dataframe_15)
#dataframe = resampled_merge(dataframe, dataframe_15)
dataframe = resampled_merge(dataframe, dataframe_30)
dataframe = resampled_merge(dataframe, dataframe_60)
dataframe = resampled_merge(dataframe, dataframe_2h)
dataframe = resampled_merge(dataframe, dataframe_4h)
dataframe = resampled_merge(dataframe, dataframe_1d)
#dataframe = resampled_merge(dataframe, dataframe_60)
#dataframe = resampled_merge(dataframe, dataframe_2h)
#dataframe = resampled_merge(dataframe, dataframe_4h)
#dataframe = resampled_merge(dataframe, dataframe_1d)
return dataframe
def print_seg(self, dataframe):
klc_list = self.chan.get_klc_list(dataframe)
@@ -267,9 +266,9 @@ class ChanLun_BTC_30(IStrategy):
return -0.05
dataframe, _ = self.dp.get_analyzed_dataframe(trade.pair, self.timeframe)
last_candle = dataframe.iloc[-1].squeeze()
ema52_str = 'resample_{}_ema52'.format(self.get_ticker_indicator()*self.time60)
ema52_str = 'resample_{}_ema52'.format(self.get_ticker_indicator()*self.time30)
ema52_val = float(last_candle.get(ema52_str, 0) or 0)
close_str = 'resample_{}_close'.format(self.get_ticker_indicator()*self.time60)
close_str = 'resample_{}_close'.format(self.get_ticker_indicator()*self.time30)
close_val = float(last_candle.get(close_str, 0) or 0)
if close_val < ema52_val:
return -0.01
@@ -282,6 +281,8 @@ class ChanLun_BTC_30(IStrategy):
def custom_exit(self, pair: str, trade: Trade, current_time: datetime, current_rate: float,
current_profit: float, **kwargs):
# 不做分批止盈/最终止盈处理,退出由策略信号/ROI/止损决定
if current_profit > 0.008:
return "Take profit"
return None
def confirm_trade_entry(self, pair: str, order_type: str, amount: float, rate: float,
@@ -295,7 +296,7 @@ class ChanLun_BTC_30(IStrategy):
if dataframe is None or len(dataframe) == 0:
return False
last = dataframe.iloc[-1]
atr_str = 'resample_{}_atr'.format(self.get_ticker_indicator()*self.time60)
atr_str = 'resample_{}_atr'.format(self.get_ticker_indicator()*self.time30)
atr_val = float(last.get(atr_str, 0) or 0)
if atr_val < 0.001:
#logger.info(f"ATR过滤:atr={atr_val:.2f} < 100, 拒绝进场 {pair}")
@@ -318,7 +319,7 @@ class ChanLun_BTC_30(IStrategy):
# Obtain pair dataframe (just to show how to access it)
dataframe, _ = self.dp.get_analyzed_dataframe(trade.pair, self.timeframe)
last_candle = dataframe.iloc[-1].squeeze()
atr_str = 'resample_{}_atr'.format(self.get_ticker_indicator()*self.time60)
atr_str = 'resample_{}_atr'.format(self.get_ticker_indicator()*self.time30)
# 保存开仓时的ATR值用于止损计算
if (trade.nr_of_successful_entries == 1) and (order.ft_order_side == trade.entry_side):
entry_atr = last_candle[atr_str] * 4
@@ -326,36 +327,34 @@ class ChanLun_BTC_30(IStrategy):
#logger.info(f"保存开仓时ATR值: {entry_atr}")
return None
def populate_entry_trend(self, dataframe: DataFrame, metadata: dict) -> DataFrame:
shift60 = self.time60
state60 = 'resample_{}_state'.format(self.get_ticker_indicator()*shift60)
shift30 = self.time30
state30 = 'resample_{}_state'.format(self.get_ticker_indicator()*shift30)
dataframe.loc[
(
(dataframe[state60].shift(shift60) == "-20")
(dataframe[state30].shift(shift30) == "-10") |
(dataframe[state30].shift(shift30) == "-20") |
(dataframe[state30].shift(shift30) == "-30")
),
['enter_long', 'enter_tag']] = (1, 'long_30')
['enter_long', 'enter_tag']] = (1, 'long_10')
dataframe.loc[
(
(dataframe[state30].shift(shift30) == "40")
(dataframe[state30].shift(shift30) == "10") |
(dataframe[state30].shift(shift30) == "20") |
(dataframe[state30].shift(shift30) == "30")
),
['enter_short', 'enter_tag']] = (1, 'short_30')
['enter_short', 'enter_tag']] = (1, 'short_10')
return dataframe
def populate_exit_trend(self, dataframe: DataFrame, metadata: dict) -> DataFrame:
shift60 = self.time60
state60 = 'resample_{}_state'.format(self.get_ticker_indicator()*shift60)
shift30 = self.time30
state30 = 'resample_{}_state'.format(self.get_ticker_indicator()*shift30)
dataframe.loc[
(
(dataframe[state60].shift(shift60) == "20") |
(dataframe[state60].shift(shift60) == "30")
(dataframe[state30].shift(shift30) == "10")
),
['exit_long', 'exit_tag']] = (1, 'long_close_30')
dataframe.loc[
(
(dataframe[state30].shift(shift30) == "-20") |
(dataframe[state30].shift(shift30) == "-30")
(dataframe[state30].shift(shift30) == "-10")
),
['exit_short', 'exit_tag']] = (1, 'short_close_30')
return dataframe