感谢您的答复。
当然,我们整合了整个信号带宽。
例如,当使用10MHz LTE(RF)信号时,我们在复杂IQ域中集成[-5MHz,5MHz]。
只是为了说明测量结果:我正在使用直接转换接收器来下转换RF信号并测量其在PXA中的功率。
我比较了在RF上使用CW(tome)和使用具有相同功率电平的调制信号(例如LTE,WCDMA,DVB-H)时的结果。
在频谱分析仪模式下测量调制信号在信号带宽/ 2上的积分功率,并将其与峰值或在I或Q信道中的基带中的CW音调的积分功率进行比较,结果匹配。
然而,当我改变为PXA I + jQ模式然后对于CW我看到与频谱分析仪模式相同的功率但是对于调制信号信号,我看到3dB较少(此时通过信号带宽积分以考虑负频率)。
这没有意义,所以我想知道FFT中是否存在用于我们缺少的I + jQ PXA测量的东西....
以上来自于谷歌翻译
以下为原文
Thank you for the reply.
Of course we integrate over the entire signal bandwidth. For example when using a 10MHz LTE (RF) signal, we integrate [-5MHz, 5MHz] in the complex IQ domain.
Just to make clear on the measurement: I'm using a direct conversion receiver to down-convert an RF signal and measure its power in the PXA. I compare the results when using a CW (tome) at RF and when using a modulated signal (for example LTE, WCDMA, DVB-H) both with the SAME power level. When measuring in spectrum analyzer mode the integrated power of a modulated signal over Signal Bandwidth/2 and compare it either with peak or with the integrated power of the CW tone in baseband in either I or Q channel the results match. However when I change to PXA I+jQ mode then for a CW I see the same power as in spectrum analyzer mode but for modulated signal signal I see 3dB less (integrated over Signal Bandwidth this time to account for negative freq as well). This does not make sense, so I wonder if there is something in the FFT used for I+jQ PXA measurements that we are missing....
感谢您的答复。
当然,我们整合了整个信号带宽。
例如,当使用10MHz LTE(RF)信号时,我们在复杂IQ域中集成[-5MHz,5MHz]。
只是为了说明测量结果:我正在使用直接转换接收器来下转换RF信号并测量其在PXA中的功率。
我比较了在RF上使用CW(tome)和使用具有相同功率电平的调制信号(例如LTE,WCDMA,DVB-H)时的结果。
在频谱分析仪模式下测量调制信号在信号带宽/ 2上的积分功率,并将其与峰值或在I或Q信道中的基带中的CW音调的积分功率进行比较,结果匹配。
然而,当我改变为PXA I + jQ模式然后对于CW我看到与频谱分析仪模式相同的功率但是对于调制信号信号,我看到3dB较少(此时通过信号带宽积分以考虑负频率)。
这没有意义,所以我想知道FFT中是否存在用于我们缺少的I + jQ PXA测量的东西....
以上来自于谷歌翻译
以下为原文
Thank you for the reply.
Of course we integrate over the entire signal bandwidth. For example when using a 10MHz LTE (RF) signal, we integrate [-5MHz, 5MHz] in the complex IQ domain.
Just to make clear on the measurement: I'm using a direct conversion receiver to down-convert an RF signal and measure its power in the PXA. I compare the results when using a CW (tome) at RF and when using a modulated signal (for example LTE, WCDMA, DVB-H) both with the SAME power level. When measuring in spectrum analyzer mode the integrated power of a modulated signal over Signal Bandwidth/2 and compare it either with peak or with the integrated power of the CW tone in baseband in either I or Q channel the results match. However when I change to PXA I+jQ mode then for a CW I see the same power as in spectrum analyzer mode but for modulated signal signal I see 3dB less (integrated over Signal Bandwidth this time to account for negative freq as well). This does not make sense, so I wonder if there is something in the FFT used for I+jQ PXA measurements that we are missing....
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