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Titlebook: Wake-up Receiver Based Ultra-Low-Power WBAN; Maarten Lont,Dusan Milosevic,Arthur van Roermund Book 2014 Springer International Publishing

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Wake-up Receiver System Level Design,fections such as 1/f noise, DC offset, I/Q imbalance and phase-noise problems. A mathematical model for the wideband-FSK modulation including is derived in this chapter. It is used to model the effects of receiver imperfections on the SNR and bit-error-rate at the output of the receiver.
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Wake-up Receiver System Level Design,fections such as 1/f noise, DC offset, I/Q imbalance and phase-noise problems. A mathematical model for the wideband-FSK modulation including is derived in this chapter. It is used to model the effects of receiver imperfections on the SNR and bit-error-rate at the output of the receiver.
发表于 2025-3-29 08:54:26 | 显示全部楼层
Low-Power Zero-IF Receiver Design,th in this chapter. A closed-form model is derived describing the transducer power gain and noise figure of the passive mixer. Additionally, an automatic frequency control loop is presented and two low-power FSK demodulators are discussed.
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Introduction,ich is used to reduce the overall power consumption of the wireless sensor nodes. Furthermore, the trends in both industrial and academic research are summarized and remaining research challenges are identified.
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Introduction,ich is used to reduce the overall power consumption of the wireless sensor nodes. Furthermore, the trends in both industrial and academic research are summarized and remaining research challenges are identified.
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