vdubus

vdub Atlas

vdub Atlas, Multiple strategy combined indicator
ichmoku,
inside bollinger bands,
Multiple ma's,
Strength indicator MA's
Hull ma,
vdub binaryPro,
Session background colours.
Switch out any indicator you don't want.

開源腳本

本著真正的TradingView精神,該腳本的作者將其開源發布,以便交易者可以理解和驗證它。為作者喝彩吧!您可以免費使用它,但在出版物中重複使用此代碼受網站規則的約束。 您可以收藏它以在圖表上使用。

免責聲明

這些資訊和出版物並不意味著也不構成TradingView提供或認可的金融、投資、交易或其他類型的意見或建議。請在使用條款閱讀更多資訊。

想在圖表上使用此腳本?
//Script editor vdubus
// (set variables as required Upper & Lower) Switch out any of the indicators you don't want.
study(title="vdubs Atlas ", shorttitle="vdubs Atlas", overlay=true)

conversionPeriods = input(34, minval=1),
basePeriods = input(26, minval=1)
laggingSpan2Periods = input(52, minval=1),
displacement = input(26, minval=1)

donchian(len) => avg(lowest(len), highest(len))

conversionLine = donchian(conversionPeriods)
baseLine = donchian(basePeriods)
leadLine1 = avg(conversionLine, baseLine)
leadLine2 = donchian(laggingSpan2Periods)

plot(conversionLine, color=blue,linewidth=2, style=circles, title="Mid line resistance levels")
plot(baseLine, color=red, title="Base Line")
plot(close, offset = -displacement, color=green, title="Lagging Span")

p1 = plot(leadLine1, offset = displacement, color=green,
    title="Lead 1")
p2 = plot(leadLine2, offset = displacement, color=red,
    title="Lead 2")
fill(p1, p2)
//===============================Pivot channel==========================
length1 = input(20, minval=1, title="Upper Channel")
length2 = input(20, minval=1, title="Lower Channel")

upper = highest(length1)
lower = lowest(length2)
basis = avg(upper, lower)

l = plot(lower, style=circles, linewidth=2, color=fuchsia, title="lower")
u = plot(upper, style=circles, linewidth=2, color=fuchsia, title="upper")
//======================================================================

//-----------------Built in BB20-------------------------------------------
bb1_src = close
bb1_l = input(20, minval=1), bb1_mult = input(1.5, minval=0.001, maxval=400)
bb1_dev = bb1_mult * stdev(bb1_src, bb1_l)
bb1_upper = basis + bb1_dev
bb1_lower = basis - bb1_dev
bb1_p1 = plot(bb1_upper, color=blue)
bb1_p2 = plot(bb1_lower, color=blue)
fill(bb1_p1, bb1_p2, transp=95)
//-----------------Built in BB50 -----------------------------------------
//bb2_src = close
//bb2_l = input(50, minval=1), bb2_mult = input(1.5, minval=0.001, maxval=400)
//bb2_dev = bb2_mult * stdev(bb2_src, bb2_l)
//bb2_upper = basis + bb2_dev
//bb2_lower = basis - bb2_dev
//bb2_p1 = plot(bb2_upper, color=blue)
//bb2_p2 = plot(bb2_lower, color=blue)
//fill(bb2_p1, bb2_p2, transp=90)

//======================================================================
//-----------------Built in MA 55-----------------------------------------
m1_src = close
m1_p = input(55, title="MA1 Period:")

plot(sma(m1_src, m1_p), color=red, linewidth=2, title="MA1")

//-----------------Built in MA 144-----------------------------------------
m2_src = close
m2_p = input(144, title="MA2 Period:")

plot(sma(m2_src, m2_p), color=blue, linewidth=1, title="MA2")

//-----------------Built in MA 233-----------------------------------------
m3_src = close
m3_p = input(233, title="MA3 Period:")

plot(sma(m3_src, m3_p), color=maroon, linewidth=1, title="MA3")

//--------------------Strength indicators MA------------------
m4_src = close
m4_p = input(5, title="Strength indicator MA4:")

plot(sma(m4_src, m4_p), color=red, linewidth=3, title="Strength indicator MA4")

m5_src = close
m5_p = input(8, title="Strength indicator MA5:")

plot(sma(m5_src, m5_p), color=blue, linewidth=3, title="Strength indicator MA5")


//========================bgcolor=================================

timeinrange(res, sess) => time(res, sess) != 0
premarket = #0050FF
regular = #0000FF
postmarket = #5000FF
notrading = na
sessioncolor = timeinrange("30", "0400-0930") ? premarket : timeinrange("30", "0930-1600") ? regular : timeinrange("30", "1600-2000") ? postmarket : notrading
bgcolor(sessioncolor, transp=95)

//=============Hull MA==============================

source = close, length = input(9, minval=1)
hullma = wma(2*wma(source, length/2)-wma(source, length), round(sqrt(length)))
plot(hullma)

//============================================================================