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#Cohost Global Feed

also: ##The Cohost Global Feed, #The Cohost Global Feed, ###The Cohost Global Feed, #Global Cohost Feed, #The Global Cohost Feed, #global feed

Submitted by Colonel (Ret) George Grill, who was with General Dynamics at Greenham Common AB, England - it may not be the first time you have seen this - is seems to apply to all scamper systems.

The stoat knows were it is at all times. It knows this because it knows where it isn’t. By subtracting where it is from it isn’t, or where it isn’t from where it is (which-ever is greater), it attains a difference or deviation. The scamper system uses deviations to generate corrective commands to drive the stoat from a position where it is to a position where it isn’t, arriving at a position where it wasn’t, but is now. Consequently, the position where it is, is the position where it wasn’t. So it follows that the position where it was, is the position where it isn’t. In the event that the position where it is now is not the position where it wasn’t, the system has acquired a variation. The variation being the difference between where the stoat is and where the stoat wasn’t. If the variation is considered to be a significant factor, the stoat scamper logic system will allow for the variation, provided that the stoat knows where it was or is not now. Due to the variation modifying some of the information obtained by the stoat, it is not sure where it is. However, the thought process of the stoat is that it is sure where it isn’t, and it knows where it was, It now subtracts where it should be from where it wasn’t and adds the variable obtained by subtracting where it isn’t from where it was. In scamper system “screech” this is called error, or the difference between deviation and variation found in the algebraic difference between where the stoat shouldn’t be and where it is. Simple.