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A novel computer program based approach to Intellectual Property protection in sequential circuits and comparison of 3-bit and 4-bit signatures on hardware requirement

机译:一种基于计算机程序的新颖方法,用于顺序电路中的知识产权保护,并根据硬件要求比较3位和4位签名

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摘要

The biggest asset of a researcher is its Intellectual Property(IP). Of late, due to rapid technological advancement and personal motives cases where theft of intellectual property is reported have increased manifold. Taking this into consideration a robust watermark is required to be embedded into the ‘intellectual property or research work’ so that if required, theft can be easily proven in a court of law. This watermark should be robust enough so that it cannot be easily detected or tampered with. At the same time it should be unique so that ownership can be easily proven. Oliveira [1] has suggested some of the techniques of watermarking in sequential circuits. One of those techniques with some modification is applied to 6 bit sequence detector with a 4-bit signature with additional comparison of the hardware requirements of 3-bit and 4-bit signature. Also a unique Computer Program is designed to determine signature length according to the number of states. Also it is shown that simulation results of the circuit with and without watermarks do not differ i.e. there is no compromise in functionality and maximum operational frequency but at the same time watermark does its job perfectly where only output shows response when signature is present.
机译:研究人员的最大资产是其知识产权(IP)。最近,由于技术的飞速发展和个人动机,据报导,盗窃知识产权的案件越来越多。考虑到这一点,需要在“知识产权或研究工作”中嵌入强有力的水印,以便在需要时可以轻松地在法院证明盗窃行为。该水印应足够健壮,以使其不易被检测或篡改。同时,它应该是唯一的,以便可以容易地证明所有权。 Oliveira [1]提出了一些在顺序电路中加水印的技术。经过一些修改的这些技术之一被应用于具有4位签名的6位序列检测器,并附加比较了3位和4位签名的硬件要求。此外,还设计了一个独特的计算机程序来根据状态数确定签名长度。还表明,带有和不带有水印的电路的仿真结果没有差异,即在功能和最大工作频率上没有妥协,但同时水印完美地发挥了作用,当存在签名时只有输出显示响应。

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