System and methods for developing secure platform to deliver end-to-end protection and safety for transactions using multi-dimensional, multi-layered security control

    公开(公告)号:US11343279B2

    公开(公告)日:2022-05-24

    申请号:US16382098

    申请日:2019-04-11

    Abstract: The embodiments herein disclose a system or a platform for multi-dimensional, multi-layered security control. The system includes Identity management module, Payload data handling module, heuristic network Management module, Application interface Manager, and an encapsulator or Modulator while leveraging a dynamic Validator. A Shielding protector is provided for safety of servers, devices, systems and clouds. The identity management module safeguards passwords, PINS, user information, and device data. The dynamic ID, time-based, multi factor elements is used to embed both ID and data. The Payload data handling module provides data wrapping, random-segmenting and flow-chains. The heuristic network Management module performs routing of watermarking, and obfuscation map tracker. The Application interface Manager works on DDMLSORI techniques to block out any unwanted Access while validating actual transactions using Qualifiers. The Encapsulator or Modulator and Validator module fortifies system resources, applications, databases, message exchanges with control mechanism.

    SYSTEM AND METHODS FOR DEVELOPING SECURE PLATFORM TO DELIVER END-TO-END PROTECTION AND SAFETY FOR TRANSACTIONS USING MULTI-DIMENSIONAL, MULTI-LAYERED SECURITY CONTROL

    公开(公告)号:US20190319986A1

    公开(公告)日:2019-10-17

    申请号:US16382098

    申请日:2019-04-11

    Abstract: The embodiments herein disclose a system or a platform for multi-dimensional, multi-layered security control. The system includes Identity management module, Payload data handling module, heuristic network Management module, Application interface Manager, and an encapsulator or Modulator while leveraging a dynamic Validator. A Shielding protector is provided for safety of servers, devices, systems and clouds. The identity management module safeguards passwords, PINS, user information, and device data. The dynamic ID, time-based, multi factor elements is used to embed both ID and data. The Payload data handling module provides data wrapping, random-segmenting and flow-chains. The heuristic network Management module performs routing of watermarking, and obfuscation map tracker. The Application interface Manager works on DDMLSORI techniques to block out any unwanted Access while validating actual transactions using Qualifiers. The Encapsulator or Modulator and Validator module fortifies system resources, applications, databases, message exchanges with control mechanism.

    Infrared emission detection
    4.
    发明授权
    Infrared emission detection 失效
    红外发射检测

    公开(公告)号:US5246868A

    公开(公告)日:1993-09-21

    申请号:US415141

    申请日:1989-09-29

    Abstract: Apparatus and method for qualitatively and quantitatively analyzing infrared emission from excited molecules in samples of interest is disclosed. Over the wavelength interval from 1 to 5 um, two strong emission bands are observed with a PbSe detector when organic compounds are introduced into an hydrogen/air flame. The band at 4.3 um (2326 cm.sup.-1 is due to the asymmetric stretch of carbon dioxide while the band at 2.7 um is due to both water and carbon dioxide emission. The carbon dioxide emission at 4.3 um is most intense at the tip of the flame, and increases with the amount of organic compound introduced into the flame. For chromatographic application, an optical filter can be used to isolate the 4.3 um emission band. The infrared emission detection system finds application in the determination of total inorganic carbon, chloride and available chlorine in aqueous samples. The detector is optimized by use of a dual beam system with background subtraction capabilities thereby eliminating background noise and the fluctuations therein.

    Abstract translation: 公开了用于定性和定量分析目标样品中激发分子的红外发射的装置和方法。 在1至5um的波长间隔内,当将有机化合物引入氢气/空气火焰时,用PbSe检测器观察到两个强烈的发射带。 4.3米(2326厘米-1)的带是由于二氧化碳的不对称拉伸,而2.7米的波段是由于水和二氧化碳的排放造成的,二氧化碳排放量在4.3微米处最为强烈 火焰,并且随着引入火焰的有机化合物的量而增加,对于色谱应用,可以使用滤光器隔离4.3um的发射带,红外发射检测系统可用于测定总无机碳,氯化物和 通过使用具有背景消除能力的双光束系统优化检测器,从而消除背景噪声及其中的波动。

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