LazyBear

DEnvelope [Better Bollinger Bands]

*** ***

Bollinger Bands (BB) usually expand quickly after a volatility increase but contract more slowly as volatility declines. This extended time it takes for BB to contract after a volatility drop can make trading some instruments using BB alone difficult or less profitable.

In the October 1998 issue of "Futures" there is an article written by Dennis McNicholl called "Better Bollinger Bands", in which the author recommends improving BB by modifying:
- the center line formula &
- different equations for calculating the bands.

These bands, called "DEnvelope", follow price more closely and respond faster to changes in volatility with these modifications.

Fore more indicators, check out my "Master Index of indicators" (Also check my published charts page for new ones I haven't added to that list):

More scripts related to DEnvelope:
------------------------------------------------
- DEnvelope Bandwidth: pastebin.com/jz6QL45G
- DEnvelope %B : pastebin.com/r4XfrDvd

Sample chart with above indicators: www.tradingview.com/v/dK1uhbN8/

List of my free indicators: bit.ly/1LQaPK8
List of my indicators at Appstore: blog.tradingview.com/?p=970
Skrip open-source

Dalam semangat TradingView, penulis dari skrip ini telah mempublikasikannya ke sumber-terbuka, maka trader dapat mengerti dan memverifikasinya. Semangat untuk penulis! Anda dapat menggunakannya secara gratis, namun penggunaan kembali kode ini dalam publikasi diatur oleh Tata Tertib. Anda dapat memfavoritkannya untuk digunakan pada chart

Pernyataan Penyangkalan

Informasi dan publikasi tidak dimaksudkan untuk menjadi, dan bukan merupakan saran keuangan, investasi, perdagangan, atau rekomendasi lainnya yang diberikan atau didukung oleh TradingView. Baca selengkapnya di Persyaratan Penggunaan.

Inggin menggunakan skrip ini pada chart?
//
// @author LazyBear 
// List of all my indicators: https://www.tradingview.com/v/4IneGo8h/
//
study("DEnvelope [LazyBear]", shorttitle="DENV_LB", overlay=true)
lb=input(20, title="DEnvelope lookback length")
de=input(2, title="DEnvelope band deviation")
alp=2/(lb+1)
src=hlc3
mt=alp*src+(1-alp)*nz(mt[1])
ut=alp*mt+(1-alp)*nz(ut[1])
dt=((2-alp)*mt-ut)/(1-alp)
mt2=alp*abs(src-dt)+(1-alp)*nz(mt2[1])
ut2=alp*mt2+(1-alp)*nz(ut2[1])
dt2=((2-alp)*mt2-ut2)/(1-alp)
but=dt+de*dt2
blt=dt-de*dt2
plot(but, color=red, linewidth=2)
plot(dt, color=gray)
plot(blt, color=green, linewidth=2)