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Optronic Measurement, Testing and the Need for Valid Results Example of Infrared Measurements for Defence Countermeasures

机译:optronic测量,测试和有效的防御对策红外测量的实例

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In the development of defence and aerospace products and applications, measurement serves a key role, e.g. measurement serves to characterise and verify behaviour and performance of components and systems. Modelling and simulation depend heavily on measured data to achieve realistic predictions, and is further more dependent on measured data for validation. The Optronic Sensor Systems (OSS) group at the CSIR unit for Defence, Peace, Safety and Security (DPSS) performs laboratory and field measurements in the infrared spectral region, which serves inter alia, for design and optimisation of infrared countermeasures. As such, results of measurements will impact directly on the survival and safety of humans and equipment, e.g. protecting an aircraft and its personnel against an approaching missile. The design, and ultimately, the effectiveness of its performance depend on the validity of the simulation results which affected design decisions. An important requirement is a deep scientific understanding of the measurement equipment, measurement processes or protocols, the unit under test and the effects of the environment on the measurement outcome. Since the measurements and tests are done both in laboratory and field environments, it is important to understand and account for the influence of the environment on the measurement outcome. In addition, consistently disciplined measurement practices are required, e.g. via suitably documented measurement procedures (protocols), traceability to the International System of Units (SI), data management, and accurate log recording methodology. To improve the value of the measurement protocols, researchers at OSS are continuously using, evaluating and reviewing these protocols under laboratory and field trial conditions.
机译:在防御和航空航天产品和应用的开发中,测量值得关键作用,例如,测量用于表征和验证组件和系统的行为和性能。建模和仿真在很大程度上取决于测量数据来实现现实预测,并且还更依赖于测量的验证数据。用于防御,和平和安全性和安全性(DPSS)的CSIR单元的Optronic传感器系统(OSS)组在红外光谱区域中执行实验室和现场测量,该区域除其他外,用于设计和优化红外对策。因此,测量结果将直接影响人和设备的生存和安全性,例如,保护飞机及其人员对抗接近的导弹。设计,最终,其性能的有效性取决于影响设计决策的模拟结果的有效性。重要要求是对测量设备,测量过程或协议,被测单位的深度科学理解以及环境对测量结果的影响。由于测量和测试都在实验室和现场环境中进行,因此了解和占环境对测量结果的影响。此外,需要一致纪律的测量实践,例如,通过适当记录的测量程序(协议),可追溯性到国际单位系统(SI),数据管理和准确的日志录制方法。为了提高测量协议的价值,OSS的研究人员在实验室和现场试验条件下持续使用,评估和审查这些协议。

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