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Characterization of in-building UHF wireless radio communicationchannels using spectral energy measurements

机译:使用频谱能量测量来表征室内UHF无线通信信道

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A simple, cost-effective means is developed to estimate the time-invariant wireless radio channel impulse response h(t) using only the magnitude of the channel transfer function, H(jw). The Hilbert transform is used to calculate the phase of H(jw) from its magnitude. Inverse discrete Fourier transformation (IDFT) of H(jw) yields h(t). The Hilbert transform relation is applicable provided H(jw) is a minimum phase transfer function. An experimental in-building wireless channel testbed was established, for which h(t) was determined over the 1000-2500 MHz range. Both line of sight (LOS) and non-LOS transmission was investigated. Good agreement was observed between values of h(t) calculated from measured values of H(jw) and from those based only on [H(jw)] and its Hilbert transform. Even when the minimum phase condition is violated, h(t) as calculated from [H(jw)] and its Hilbert transform provides a useful lower bound on the time-spread of h(t). The measurement of [H(jw)] is easily implemented using a signal source, receiving antenna, and spectrum analyzer. A personal computer and software are required to calculate the phase of H(jw) and its IDTF. Existing frequency-domain measurement schemes utilize a vector network analyzer to measure H(jw) (magnitude and phase angle). Such equipment is expensive, subject to transmitter-receiver crosstalk, and restrictive as to the relative locations of the transmitting and receiving antenna
机译:开发了一种简单,具有成本效益的方法,以仅使用信道传递函数H(jw)的大小来估计时不变无线信道冲激响应h(t)。希尔伯特变换用于根据其大小计算H(jw)的相位。 H(jw)的离散傅里叶逆变换(IDFT)得出h(t)。如果H(jw)是最小相位传递函数,则适用希尔伯特变换关系。建立了一个实验性的室内无线信道测试平台,其h(t)在1000-2500 MHz范围内确定。视线(LOS)和非LOS传输都进行了调查。从H(jw)的测量值和仅基于[H(jw)]及其希尔伯特变换的测量值计算出的h(t)值之间观察到良好的一致性。即使违反了最小相位条件,从[H(jw)]及其希尔伯特变换计算出的h(t)仍可为h(t)的时间扩展提供有用的下限。 [H(jw)]的测量可以使用信号源,接收天线和频谱分析仪轻松实现。需要个人计算机和软件来计算H(jw)的相位及其IDTF。现有的频域测量方案利用矢量网络分析仪测量H(jw)(幅度和相角)。这种设备很昂贵,容易受到收发机的串扰,并且对发射和接收天线的相对位置有限制。

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