发明名称 Digital quaternary fractal computer for applications of artificial intelligence
摘要 A digital quaternary fractal computer unit, system and method for applications of artificial intelligence. The digital quaternary fractal computer comprises optical, nano-scale and quantum embodiments. The system of computation is unique to the device and employs relativistic, quaternary and fractal mechanisms to perform computation. The full theory of relative quaternary fractal computation and encoding is documented in the various references herein.;Several methods are also disclosed which evolved out of, and help enhance, the various embodiments. It is emphasized that this abstract is provided to enable a searcher to quickly ascertain the subject matter of the technical disclosure and is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims.
申请公布号 US2016004958(A1) 申请公布日期 2016.01.07
申请号 US201514714364 申请日期 2015.05.18
申请人 Byng Lawrence 发明人 Byng Lawrence
分类号 G06N3/063;G06N99/00 主分类号 G06N3/063
代理机构 代理人
主权项 1. A fractal computing unit (FCU) comprising: a clock signal; a propagation unit comprising: a plurality of signal channels; a plurality of phase switch units; and, a plurality of delay units; at least one data signal comprising at least one wave having a frequency in accordance with the equation f=(frequency of said clock signal)/2n, wherein n is an integer and n≧1, and f is the frequency of said at least one wave; and, at least one input, wherein said at least one input sending said at least one data signal to at least one signal channel of said plurality of signal channels; wherein said plurality of delay units operationally coupled to a said plurality of signal channels, wherein said data signal propagates to said plurality of signal channels, wherein at least one signal channel of said plurality of signal channels operationally coupled to at least one phase switch unit of said plurality of phase switch units, wherein said at least one phase switch unit having an operating frequency in accordance with the equation f=(frequency of said clock signal)/2n, wherein n is an integer and n≧1 and wherein f is the frequency of said operating frequency.
地址 Kahului HI US