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Evaluation of JSAF EM propagation prediction methods for navy continuous training environment / fleet synthetic training results and recommendations: part II – potential improvements to propagation modeling within JSAF

机译:海军连续训练环境/舰队综合训练结果和建议的JSAF EM传播预测方法的评估:第二部分-JSAF内传播模型的潜在改进

摘要

Incorporating the Navy’s Advanced Propagation Model (APM) into JSAF would greatly improve the EM range prediction accuracy, particularly for situations with strong refractive effects such as commonly occur in the Mideast and other locations. Many, but not all of the various physical effects on EM transmissions are already included in the APM model and therefore would not require development by NWDC. Because APM is the official OAML EM propagation model for the Navy, there will be continuous improvements and it will not stagnate. Incorporating these improvements into JSAF should be relatively straightforward because most of them will be internal to the program and not require any extra changes to the JSAF “sockets” that allow input and output of data between APM and the rest of JSAF. Including some of the physical effects, besides refraction, would require significant costs to NWDC in terms of programming effort. They would also contribute more complexity to the user interface. A later report will analyze the associated costs and benefits to various modeling improvements and compare these with the cost/benefits of enhancing the environmental inputs. This analysis will serve as an aid to decision makers who will determine which features should be the focus of JSAF developments now and in the future.
机译:将海军的高级传播模型(APM)整合到JSAF中将大大提高EM范围的预测准确性,特别是对于折射力较强的情况,例如在中东和其他地区经常发生的情况。 APM模型中已经包含了许多但不是全部的对EM传输的各种物理影响,因此不需要NWDC进行开发。由于APM是海军的官方OAML EM传播模型,因此将不断改进并且不会停滞。将这些改进合并到JSAF中应该相对简单,因为大多数改进将在程序内部进行,不需要对JSAF“套接字”进行任何额外更改,以允许在APM和JSAF其余部分之间输入和输出数据。除了折射之外,包括一些物理效应,就编程工作而言,将需要NWDC付出大量成本。它们还将为用户界面带来更多的复杂性。以后的报告将分析与各种建模改进相关的成本和收益,并将其与增强环境投入的成本/收益进行比较。该分析将有助于决策者确定哪些功能应成为JSAF现在和将来开发的重点。

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