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Inclusion of Rotor Blade Modulation in Hardware-in-the-Loop Testing of RF Systems

机译:射频系统硬件在环测试中包括转子叶片调制

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RF systems onboard rotorcrafts are susceptible to a periodic variation in both the magnitude and phase of the received signals due to the rotation of the rotor blades. This is often referred to as rotor blade modulation (RBM). As one might imagine, RBM has the potential to degrade a given RF system; therefore, RBM must be accounted for when characterizing the performance of any RF system onboard a rotorcraft. One can use field tests or hardware-in-the-loop (HITL) testing to characterize a particular RF system. Typically field tests are very expensive, and therefore it is beneficial to use HITL testing. In this paper we present three approaches that can be used to include RBM in HITL testing of RF systems. The first two approaches make no approximations and thus provide an exact model of the RBM. The main drawback of these two approaches is that they are not suitable for implementation in HITL testing. Thus we have developed the "approximate simulator," which can be used to include RBM in HITL testing of RF systems. The accuracy of the approximate simulator is demonstrated by comparing the approximated signal received by an antenna mounted on a model rotorcraft with the measured signal received by the antenna. The results show that a very accurate model of the RBM is obtained using the approximate simulator. Furthermore this accuracy is achieved with implementation costs that are far less than that of the two exact approaches.
机译:旋翼飞机上的RF系统由于旋翼桨叶的旋转而容易受到接收信号的幅度和相位的周期性变化的影响。这通常称为转子叶片调制(RBM)。可以想象,RBM有可能使给定的RF系统降级。因此,在表征旋翼飞机上任何RF系统的性能时,必须考虑RBM。可以使用现场测试或硬件在环(HITL)测试来表征特定的RF系统。通常,现场测试非常昂贵,因此使用HITL测试是有益的。在本文中,我们介绍了三种可用于将RBM包含在RF系统的HITL测试中的方法。前两种方法没有近似值,因此提供了RBM的精确模型。这两种方法的主要缺点是它们不适合在HITL测试中实施。因此,我们开发了“近似模拟器”,可以将RBM包含在RF系统的HITL测试中。通过将安装在模型旋翼飞行器上的天线接收的近似信号与天线接收的测量信号进行比较,可以证明近似模拟器的准确性。结果表明,使用近似模拟器可以获得非常精确的RBM模型。此外,该实现精度的实现成本远低于两种精确方法的实现成本。

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