Niklaus

Alpha

Alpha is a measure of the active return on an investment, the performance of that investment compared to the S&P500 index, where 0.01 = 1%

  • alpha < 0: the investment has earned too little for its risk (or, was too risky for the return)
  • alpha = 0: the investment has earned a return adequate for the risk taken
  • alpha > 0: the investment has a return in excess of the reward for the assumed risk
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?
study(title="Alpha", shorttitle="Alpha")

////SHOULD BE USED TOGETHER WITH "Beta" INDICATOR
//Alpha is a measure of the active return on an investment, the performance of that investment compared to a suitable market index, where 0.01 = 1%
//alpha < 0: the investment has earned too little for its risk (or, was too risky for the return)
//alpha = 0: the investment has earned a return adequate for the risk taken
//alpha > 0: the investment has a return in excess of the reward for the assumed risk

//Beta Calculation
sym = "SPX500", res=period, src = close, length = input(title="rolling beta window",defval=300, minval=1)
ovr = security(sym, res, src)
ret = ((close - close[1])/close)
retb = ((ovr - ovr[1])/ovr)
secd = stdev(ret, length), mktd = stdev(retb, length)
Beta = correlation(ret, retb, length) * secd / mktd

//Alpha Calculation
y = input(title="alpha period", type=integer, defval=90, minval=1, maxval=1000)
ret2 = ((close - close[y])/close)
retb2 = ((ovr - ovr[y])/ovr)
alpha = ret2 - retb2*Beta
plot(alpha, color=green, style=area, transp=40)