LazyBear

Vervoort Heiken-Ashi LongTerm Candlestick Oscillator [LazyBear]

HACOLT (Heikin Ashi Candles Oscillator Long Term) is a technical indicator designed by Sylvain Vervoort. It is based on Mr.Vervoort's other indicator, HACO (Heikin-Ashi Candles Oscillator - posted here: www.tradingview.com/v/UyhY8FuQ/).

Optimized for long-term trading, HACOLT shows three levels: -1, 0 and 1. These levels suggest "an open short position", "no open position", and "an open long position", respectively. Passing from a certain level to another is viewed as a trading signal:
- Rising from -1 or 0 to 1 suggests a Long Entry and Short exit;
- Falling from 1 to 0 or -1 suggests a Long Exit;
- Falling from 1 or 0 to -1 indicates a Short Entry.

Fits in nicely with any trading setup as a confirmation indicator

More info:
- tlc.thinkorswim.com/...rary/G-L/HACOLT.html
- www.motivewave.com/s...es_oscillator_lt.htm

List of my other indicators:
- GDoc: docs.google.com...ByMEvm5MLo/edit?usp=sharin...
- Chart:

List of my free indicators: bit.ly/1LQaPK8
List of my indicators at Appstore: blog.tradingview.com/?p=970
نص برمجي مفتوح المصدر

قام مؤلف هذا النص البرمجي بنشره وجعله مفتوح المصدر، بحيث يمكن للمتداولين فهمه والتحقق منه، وهو الأمر الذي يدخل ضمن قيم TradingView. تحياتنا للمؤلف! يمكنك استخدامه مجانًا، ولكن إعادة استخدام هذا الكود في منشور تحكمه قواعد الموقع. يمكنك جعله مفضلاً لاستخدامه على الرسم البياني.

إخلاء المسؤولية

لا يُقصد بالمعلومات والمنشورات أن تكون، أو تشكل، أي نصيحة مالية أو استثمارية أو تجارية أو أنواع أخرى من النصائح أو التوصيات المقدمة أو المعتمدة من TradingView. اقرأ المزيد في شروط الاستخدام.

هل تريد استخدام هذا النص البرمجي على الرسم البياني؟
//
// @author LazyBear 
// List of all my indicators: 
// https://docs.google.com/document/d/15AGCufJZ8CIUvwFJ9W-IKns88gkWOKBCvByMEvm5MLo/edit?usp=sharing
//
study("Vervoort LongTerm Heiken-Ashi Candlestick Oscillator [LazyBear]", shorttitle="HACOLT_LB")
length = input(defval=55, title="TEMA Period")
emaLength = input(defval=60, title="EMA Period")
candleSizeFactor = input(defval=1.1, title="Candle size factor")
overlayMode=input(false)
calc_tema(src, length) =>
	ema1 = ema(src, length)
	ema2 = ema(ema1, length)
	ema3 = ema(ema2, length)
	3 * (ema1 - ema2) + ema3

haOpen = nz((haOpen[1] + ohlc4) / 2, ohlc4)
haClose = (haOpen + max(high, haOpen) + min(low, haOpen) + ohlc4) / 4
thaClose = calc_tema(haClose, length)
thl2 = calc_tema(hl2, length)
haCloseSmooth = 2 * thaClose - calc_tema(thaClose, length)
hl2Smooth = 2 * thl2 - calc_tema(thl2, length)
shortCandle = abs(close - open) < ((high - low) * candleSizeFactor)
keepn1 = ((haClose >= haOpen) and (haClose[1] >= haOpen[1])) or (close >= haClose) or (high > high[1]) or (low > low[1]) or (hl2Smooth >= haCloseSmooth)
keepall1 = keepn1 or (keepn1[1] and (close >= open) or (close >= close[1]))
keep13 = shortCandle and (high >= low[1])
utr = keepall1 or (keepall1[1] and keep13)
keepn2 = (haClose < haOpen) and (haClose[1] < haOpen[1]) or (hl2Smooth < haCloseSmooth)
keep23 = shortCandle and (low <= high[1])
keepall2 = keepn2 or (keepn2[1] and (close < open) or (close < close[1]))
dtr = keepall2 or (keepall2[1] and keep23)
upw = dtr == 0 and dtr[1] and utr
dnw = utr == 0 and utr[1] and dtr
upwWithOffset = upw != dnw ? upw : nz(upwWithOffset[1])

buySig = upw or (not dnw and (na(upwWithOffset) ? 0 : upwWithOffset))
ltSellSig = close < ema(close, emaLength)
neutralSig = buySig or (ltSellSig ? 0 : nz(neutralSig[1]))
hacolt = buySig ? 1 : neutralSig ? 0 : -1
plot(not overlayMode ? hacolt : na, style=columns, color=hacolt>0?green:hacolt<0?red:blue, title="HACOLT")
barcolor(overlayMode?hacolt>0?green:hacolt<0?red:blue:na)