Multisim官方示例Multisim仿真例程基础电路范例135例合集:Chapter 1 - RLC CircuitsChapter 2 - DiodesChapter 3 - TransistorsChapter 4 - AmplifiersChapter 5 - OpampsChapter 6 - FiltersChapter 7 - Miscellaneous CircuitsFundamental Circuits.pdf004 Parallel DC Circuits.ms10005 Series-Parrallel DC Circuit.ms10006 Current Analysis.ms10007 Millmans Theorem 1.ms10008 Millmans Theorem 2.ms10009 Kirchhoff's Current Law.ms10010 Thevenin's Theorem.ms10011 Superposition Principle.ms10012 Nortons Theorem and Source Conversion.ms10013 AC Voltage Measurement.ms10014 Frequency Response of the Series RL Network.ms10015 RL High and Low Pass Filter.ms10016 Frequency Response of the Series RC Network.ms10017 RC High and Low Pass Filter.ms10019 Center-Tapped Full-Wave Rectifier.ms10020 Bridge Rectifier.ms10021 Capacitor-Input Rectifier Filter.ms10022 Diode Clipper (Limiter).ms10023 Diode Clipper.ms10024 Diode Clamper (DC Restorer).ms10025 Diode Voltage Doubler.ms10026 Zener Diode and Voltage Regulation 1.ms10027 Zener Diode and Voltage Regulation 2.ms10028 Zener Diode and Voltage Regulation 3.ms10105 TTL Inverter.ms10107 TTL Gate.ms10109 OR Gate Circuit.ms10111 Over-Damp Circuit.ms10113 Critical-Damp Circuit.ms10115 Series RLC Circuit 1.ms10117 Clapp Oscillator.ms10119 Differential Amplifier 1.ms10121 Differential Amplifier in Common Mode.ms10123 LC Oscillator with Unity Gain Buffer.ms10125 notch Filter.ms10127 PNP Differential Pair.ms10129 Crossover Network.ms10131 Second-Order High-Pass Chebyshev Filter.ms10133 Third-Order High-Pass Chebyshev Filter.ms10135 Fifth-Order High-Pass Filter.ms10
标签: multisim
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移动通信网络由于带宽和技术的限制,远远不能满足人们不断高涨的无线上网需求。Wi-Fi作为无线接入技术MLAN的主流标准口益成熟,它能够随时随地高速连接到Internet,极大地满足了用户对无线上网需求,受到消费者的青睐。因而越来越多的移动终端都集成了Wi-Fi功能,Wi-Fi和蓝牙样成为移动终端的标配。随之而来的是wi-Fi和蓝牙都工作在2.4CHZz ISM频段而引发的互相 扰问题,导致数据吞吐量下降,语音质量恶化失真,极端状况下甚至导致链路断开而不能正常工作。因此,必须寻求有效的措施和方法,实现两种技术在近距离的和谐共存,这已成为非常迫切的技术需要,也成为人们研究的一个热点和难点。近距离WiFi和蓝牙互相1扰的问题,目前已经形成了非常多的有效解决机制,包括基于Wi-Fi的PTA(Packet Traffic Arbitration)、AWMA(Alternating Wireless Medium Access)和DSE(Deterministic Spectral Excision),其中PTA和AWMA机制在Wi-Fi側MAC层实现,通过协调Wi-Fi和蓝牙的帧发射时间来避免相互干扰:而DSE是在Wi-Fi侧物理层PHY实现,通过一个可编程带阻滤波器(notch Filter)来阻止来白蓝牙的窄带干扰。还有基于蓝牙侧的AFH(Adaptive Frequency Hopping),它通过跳频,自动避开被干扰的频点,从而大大提高了蓝牙传输性能。
上传时间: 2022-06-20
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