青云英语翻译

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翻译结果1翻译结果2 翻译结果3翻译结果4翻译结果5

翻译结果1复制译文编辑译文朗读译文返回顶部

为10的BER系统只ebtono这是比理论非相干二进制FSK结果(ebtono =11分贝)更好的10.5分贝需要。无花果。 19显示我们的系统与射频功率接收器(针)输入的模拟BER。我们可以观察到的灵敏度为114.5 dBm在10的BER。无花果。图20示出信号+噪声对在限幅器输出的RF输入功率的曲线,整个的RF输入电平百分贝模拟概括了总的灵敏度和动态范围。

翻译结果2复制译文编辑译文朗读译文返回顶部

正在翻译,请等待...

翻译结果3复制译文编辑译文朗读译文返回顶部

10 的误码率,系统需要只是比理论的非相干二进制 FSK 结果更好的 EbtoNo 的 10.5dB (EbtoNo = 11dB)。图 19 显示了我们系统而射频功率模拟的 BER receiver(Pin) 的输入。我们可以观察敏感性是在 10 BER 114.5 dBm。图 20 显示的曲线与射频输入功率限幅器输出,模拟跨 RF 输入级别的 100dB 噪声信号 + 总结了整体灵敏度和动态范围。

翻译结果4复制译文编辑译文朗读译文返回顶部

对误码率10系统需要比理论非相干的双FSK结果(EbtoNo=11dB)好EbtoNo的仅10.5dB。图19显示我们的系统被模仿的误码率对RF力量在接收器(Pin)的输入。我们可以注意到敏感性是114.5 dBm在10.图20展示误码率signal+noise曲线对RF输入功率在防幅器产品,被模仿横跨RF输入级100dB总结整体敏感性和力学范围。

翻译结果5复制译文编辑译文朗读译文返回顶部

为BER 10系统需要比理论non-coherent双FSK结果EbtoNo=11dB好EbtoNo的仅10.5dB ()。 。 19个展示我们的系统被模仿的BER对RF力量在接收器Pin的输入()。我们可以观察敏感性是114.5 dBm在BER 10。 。 20个展示signal+noise曲线对RF输入功率在防幅器产品,被模仿横跨RF输入级100dB总结整体敏感性和力学范围。
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aFor a BER of 10 the system needs only 10.5dB of EbtoNo which is better than the theoretical non-coherent binary FSK result (EbtoNo=11dB). Fig. 19 shows the simulated BER of our system versus the RF power at the input of the receiver(Pin).We can observe that the sensitivity is 114.5 dBm at a BER of 10. Fig. 20 shows th 为BER 10系统需要比理论non-coherent双FSK结果EbtoNo=11dB好EbtoNo的仅10.5dB ()。 。 19个展示我们的系统被模仿的BER对RF力量在接收器Pin的输入()。我们可以观察敏感性是114.5 dBm在BER 10。 。 20个展示signal+noise曲线对RF输入功率在防幅器产品,被模仿横跨RF输入级100dB总结整体敏感性和力学范围。 [translate]