Optimal packet size via marginal utility image compression and expansion delay minimization for theater of war and theater missile defense: congestion controlled combination protocol

C. Niznik
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引用次数: 4

Abstract

The CCC (congestion controlled combination) protocol, realizing the simulation characteristics of the theater missile defense SDIO (BMDO) packet ground to satellite communication protocols and the theater of war SG/ATM/DSI or SG/ATM/Internet PDU communication, requires the specialized optimal packet length delay minimization. The MMCR protocol will provide these parameters to the TOW protocol, by the linkage of the MMCR protocol to the UIS protocol in the TMD protocol. The minimized packet delay developed for optimal, specialized PDU sizes for war games in the MMCR protocol contains the theatre of war image compression and expansion function in the Lagrange multiplier, contained within the UIS protocol gateway characteristics. The MMCR protocol enables optimal SG/ATM/DSI or SG/ATM/INTERNET access during STOW (synthetic theatre of war) games. This optimal PDU size obtained from the Lagrange multiplier i.e. marginal utility in game theory, optimization for minimizing delay, imaging reduction and expansion factor, enables representation of the object oriented code implementation imaging criteria for various sections of the CCC protocol geometric software structure planes.
战区和战区导弹防御中基于边际效用的图像压缩和扩展延迟最小化的最优数据包大小:拥塞控制组合协议
CCC(拥塞控制组合)协议实现了战区导弹防御SDIO (BMDO)分组地星通信协议和战区SG/ATM/DSI或SG/ATM/Internet PDU通信的仿真特性,要求专用的最优分组长度延迟最小化。MMCR协议将通过MMCR协议与TMD协议中的UIS协议的链接,为TOW协议提供这些参数。在MMCR协议中,为战争游戏开发的最佳专用PDU大小的最小数据包延迟包含了拉格朗日乘法器中的战区图像压缩和扩展功能,包含在美国协议网关特性中。MMCR协议在STOW(合成战区)游戏期间实现最佳SG/ATM/DSI或SG/ATM/INTERNET访问。从拉格朗日乘数中获得的最优PDU大小,即博弈论中的边际效用,最小化延迟的优化,成像减少和扩展因子,可以表示面向对象的代码实现CCC协议几何软件结构平面各部分的成像标准。
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