Description

The Universal Investment Strategy (UIS) is one of our core investment strategies. It is an evolved, intelligent version of the classic 60/40 equity/bond portfolio. Much like the classic portfolio, UIS holds both the S&P 500 index and bonds. However, UIS can intelligently adapt to current conditions by shifting weight away from stocks in difficult markets and adding weight in bullish markets.

Instead of using simple bond ETF, UIS uses a sub-strategy, called HEDGE, which can choose between different types of safe-heaven ETFs.

The equity/bond (or in our case equity/HEDGE) pair is interesting because most of the time these two asset classes profit from an inverse correlation. If there is a real stock market correction, usually ETFs included in the HEDGE strategy (Treasuries, Gold, etc) are the 'safe' assets where money flows to, providing crash protection. 

Statistics (YTD)

What do these metrics mean? [Read More] [Hide]

TotalReturn:

'Total return is the amount of value an investor earns from a security over a specific period, typically one year, when all distributions are reinvested. Total return is expressed as a percentage of the amount invested. For example, a total return of 20% means the security increased by 20% of its original value due to a price increase, distribution of dividends (if a stock), coupons (if a bond) or capital gains (if a fund). Total return is a strong measure of an investment’s overall performance.'

Using this definition on our asset we see for example:
  • Compared with the benchmark SPY (120.1%) in the period of the last 5 years, the total return, or performance of 78.5% of Universal Investment Strategy is lower, thus worse.
  • During the last 3 years, the total return is 43%, which is lower, thus worse than the value of 65.1% from the benchmark.

CAGR:

'The compound annual growth rate (CAGR) is a useful measure of growth over multiple time periods. It can be thought of as the growth rate that gets you from the initial investment value to the ending investment value if you assume that the investment has been compounding over the time period.'

Applying this definition to our asset in some examples:
  • The compounded annual growth rate (CAGR) over 5 years of Universal Investment Strategy is 12.3%, which is lower, thus worse compared to the benchmark SPY (17.1%) in the same period.
  • Looking at annual performance (CAGR) in of 12.7% in the period of the last 3 years, we see it is relatively lower, thus worse in comparison to SPY (18.3%).

Volatility:

'In finance, volatility (symbol σ) is the degree of variation of a trading price series over time as measured by the standard deviation of logarithmic returns. Historic volatility measures a time series of past market prices. Implied volatility looks forward in time, being derived from the market price of a market-traded derivative (in particular, an option). Commonly, the higher the volatility, the riskier the security.'

Using this definition on our asset we see for example:
  • Looking at the volatility of 8.8% in the last 5 years of Universal Investment Strategy, we see it is relatively smaller, thus better in comparison to the benchmark SPY (17.6%)
  • Looking at historical 30 days volatility in of 8.5% in the period of the last 3 years, we see it is relatively lower, thus better in comparison to SPY (17.5%).

DownVol:

'The downside volatility is similar to the volatility, or standard deviation, but only takes losing/negative periods into account.'

Which means for our asset as example:
  • Compared with the benchmark SPY (12.1%) in the period of the last 5 years, the downside deviation of 6.1% of Universal Investment Strategy is smaller, thus better.
  • Looking at downside volatility in of 5.6% in the period of the last 3 years, we see it is relatively smaller, thus better in comparison to SPY (11.6%).

Sharpe:

'The Sharpe ratio was developed by Nobel laureate William F. Sharpe, and is used to help investors understand the return of an investment compared to its risk. The ratio is the average return earned in excess of the risk-free rate per unit of volatility or total risk. Subtracting the risk-free rate from the mean return allows an investor to better isolate the profits associated with risk-taking activities. One intuition of this calculation is that a portfolio engaging in 'zero risk' investments, such as the purchase of U.S. Treasury bills (for which the expected return is the risk-free rate), has a Sharpe ratio of exactly zero. Generally, the greater the value of the Sharpe ratio, the more attractive the risk-adjusted return.'

Using this definition on our asset we see for example:
  • The ratio of return and volatility (Sharpe) over 5 years of Universal Investment Strategy is 1.12, which is higher, thus better compared to the benchmark SPY (0.83) in the same period.
  • During the last 3 years, the ratio of return and volatility (Sharpe) is 1.2, which is larger, thus better than the value of 0.9 from the benchmark.

Sortino:

'The Sortino ratio measures the risk-adjusted return of an investment asset, portfolio, or strategy. It is a modification of the Sharpe ratio but penalizes only those returns falling below a user-specified target or required rate of return, while the Sharpe ratio penalizes both upside and downside volatility equally. Though both ratios measure an investment's risk-adjusted return, they do so in significantly different ways that will frequently lead to differing conclusions as to the true nature of the investment's return-generating efficiency. The Sortino ratio is used as a way to compare the risk-adjusted performance of programs with differing risk and return profiles. In general, risk-adjusted returns seek to normalize the risk across programs and then see which has the higher return unit per risk.'

Which means for our asset as example:
  • Looking at the downside risk / excess return profile of 1.62 in the last 5 years of Universal Investment Strategy, we see it is relatively greater, thus better in comparison to the benchmark SPY (1.21)
  • Compared with SPY (1.36) in the period of the last 3 years, the excess return divided by the downside deviation of 1.81 is higher, thus better.

Ulcer:

'The Ulcer Index is a technical indicator that measures downside risk, in terms of both the depth and duration of price declines. The index increases in value as the price moves farther away from a recent high and falls as the price rises to new highs. The indicator is usually calculated over a 14-day period, with the Ulcer Index showing the percentage drawdown a trader can expect from the high over that period. The greater the value of the Ulcer Index, the longer it takes for a stock to get back to the former high.'

Applying this definition to our asset in some examples:
  • Looking at the Downside risk index of 4.35 in the last 5 years of Universal Investment Strategy, we see it is relatively lower, thus better in comparison to the benchmark SPY (8.48 )
  • Looking at Downside risk index in of 2.13 in the period of the last 3 years, we see it is relatively lower, thus better in comparison to SPY (5.31 ).

MaxDD:

'A maximum drawdown is the maximum loss from a peak to a trough of a portfolio, before a new peak is attained. Maximum Drawdown is an indicator of downside risk over a specified time period. It can be used both as a stand-alone measure or as an input into other metrics such as 'Return over Maximum Drawdown' and the Calmar Ratio. Maximum Drawdown is expressed in percentage terms.'

Applying this definition to our asset in some examples:
  • The maximum reduction from previous high over 5 years of Universal Investment Strategy is -12.2 days, which is greater, thus better compared to the benchmark SPY (-24.5 days) in the same period.
  • During the last 3 years, the maximum DrawDown is -7.5 days, which is greater, thus better than the value of -18.8 days from the benchmark.

MaxDuration:

'The Maximum Drawdown Duration is an extension of the Maximum Drawdown. However, this metric does not explain the drawdown in dollars or percentages, rather in days, weeks, or months. It is the length of time the account was in the Max Drawdown. A Max Drawdown measures a retrenchment from when an equity curve reaches a new high. It’s the maximum an account lost during that retrenchment. This method is applied because a valley can’t be measured until a new high occurs. Once the new high is reached, the percentage change from the old high to the bottom of the largest trough is recorded.'

Which means for our asset as example:
  • The maximum days under water over 5 years of Universal Investment Strategy is 489 days, which is higher, thus worse compared to the benchmark SPY (488 days) in the same period.
  • During the last 3 years, the maximum days under water is 115 days, which is lower, thus better than the value of 199 days from the benchmark.

AveDuration:

'The Average Drawdown Duration is an extension of the Maximum Drawdown. However, this metric does not explain the drawdown in dollars or percentages, rather in days, weeks, or months. The Avg Drawdown Duration is the average amount of time an investment has seen between peaks (equity highs), or in other terms the average of time under water of all drawdowns. So in contrast to the Maximum duration it does not measure only one drawdown event but calculates the average of all.'

Applying this definition to our asset in some examples:
  • Looking at the average time in days below previous high water mark of 121 days in the last 5 years of Universal Investment Strategy, we see it is relatively greater, thus worse in comparison to the benchmark SPY (120 days)
  • During the last 3 years, the average time in days below previous high water mark is 28 days, which is lower, thus better than the value of 47 days from the benchmark.

Performance (YTD)

Historical returns have been extended using synthetic data.

Allocations ()

Allocations

Returns (%)

  • Note that yearly returns do not equal the sum of monthly returns due to compounding.
  • Performance results of Universal Investment Strategy are hypothetical and do not account for slippage, fees or taxes.
  • Results may be based on backtesting, which has many inherent limitations, some of which are described in our Terms of Use.