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Run-Time

  • Space-Time+Processing

    Driven by the desire to boost the quality of service of wireless systems closer to that afforded by wireline systems, space-time processing for multiple-input multiple-output (MIMO) wireless communications research has drawn remarkable interest in recent years. Excit- ing theoretical advances, complemented by rapid transition of research results to industry products and services, have created a vibrant and growing area that is already established by all counts. This offers a good opportunity to reflect on key developments in the area during the past decade and also outline emerging trends.

    标签: Space-Time Processing

    上传时间: 2020-06-01

    上传用户:shancjb

  • Space-Time+Processing+for+Wireless+Communications

    In this thesis several asp ects of space-time pro cessing and equalization for wire- less communications are treated. We discuss several di?erent metho ds of improv- ing estimates of space-time channels, such as temp oral parametrization, spatial parametrization, reduced rank channel estimation, b o otstrap channel estimation, and joint estimation of an FIR channel and an AR noise mo del. In wireless commu- nication the signal is often sub ject to intersymb ol interference as well as interfer- ence from other users. 

    标签: Communications Space-Time Processing Wireless for

    上传时间: 2020-06-01

    上传用户:shancjb

  • Time-Varying Channels

    Wireless communications has become a field of enormous scientific and economic interest. Recent success stories include 2G and 3G cellular voice and data services (e.g., GSM and UMTS), wireless local area networks (WiFi/IEEE 802.11x), wireless broadband access (WiMAX/IEEE 802.16x), and digital broadcast systems (DVB, DAB, DRM). On the physical layer side, traditional designs typically assume that the radio channel remains constant for the duration of a data block. However, researchers and system designers are increasingly shifting their attention to channels that may vary within a block. In addition to time dispersion caused by multipath propagation, these rapidly time-varying channels feature frequency dispersion resulting from the Doppler effect. They are, thus, often referred to as being “doubly dispersive.”

    标签: Time-Varying Channels

    上传时间: 2020-06-01

    上传用户:shancjb

  • Switch-Mode Power Supply Simulation

    Thepredecessorvolumeofthisbookwaspublishedin1996.Intheyears since then, some things have changed and some have not. Two of the things that have not changed are the desire for better models and faster simulations. I performed the original simulations on my “hyperfast” 133-MHz computer! At the time, I thought if I could just getafastercomputer,allofourSPICEproblemswouldbehistory,right? TodayIamsimulatingonacomputerthathasa2.6-GHzprocessorwith 512 MB of RAM, and I would still say that simulations run too slow. The computer technology has evolved, but so have the models. In 1996 wewereperformingsimulationson100-kHzpowerconverters,whereas today I routinely see 1- and 2-MHz power converters.

    标签: Switch-Mode Simulation Supply Power

    上传时间: 2020-06-07

    上传用户:shancjb

  • Star Trek_ Deep Space Nine - A Stitch in Time

    Star Trek_ Deep Space Nine - A Stitch in Time - Andrew J. Robinson 英文版 格式 epub

    标签: Stitch Space Star Deep Nine Trek Time in

    上传时间: 2021-06-17

    上传用户:potato

  • python的time模块使用

    该文档为python的time模块使用简介文档,是一份很不错的参考资料,具有较高参考价值,感兴趣的可以下载看看………………

    标签: python

    上传时间: 2021-11-14

    上传用户:

  • STM32L053C8T6数据手册

    STM32L053C8T6数据手册Features • Ultra-low-power platform – 1.65 V to 3.6 V power supply – -40 to 125 °C temperature range – 0.27 µA Standby mode (2 wakeup pins) – 0.4 µA Stop mode (16 wakeup lines) – 0.8 µA Stop mode + RTC + 8 KB RAM retention – 139 µA/MHz Run mode at 32 MHz – 3.5 µs wakeup time (from RAM) – 5 µs wakeup time (from Flash) • Core: ARM® 32-bit Cortex®-M0+ with MPU – From 32 kHz up to 32 MHz max.  – 0.95 DMIPS/MHz • Reset and supply management – Ultra-safe, low-power BOR (brownout reset)  with 5 selectable thresholds – Ultralow power POR/PDR – Programmable voltage detector (PVD) • Clock sources – 1 to 25 MHz crystal oscillator – 32 kHz oscillator for RTC with calibration – High speed internal 16 MHz factory-trimmed RC  (+/- 1%) – Internal low-power 37 kHz RC – Internal multispeed low-power 65 kHz to  4.2 MHz RC – PLL for CPU clock • Pre-programmed bootloader – USART, SPI supported • Development support – Serial wire debug supported • Up to 51 fast I/Os (45 I/Os 5V tolerant) • Memories – Up to 64 KB Flash with ECC – 8KB RAM – 2 KB of data EEPROM with ECC – 20-byte backup register

    标签: stm32l053c8t6

    上传时间: 2022-02-06

    上传用户:

  • STM32F0中Guard Time的设置

    客户使用STM32F091的USART工作于smartcard模式用于7816通讯,发现不正常。本篇LAT的内容简介了STM32F0中关于USART中Smartcard模式的Guard Time的设置。

    标签: stm32

    上传时间: 2022-02-22

    上传用户:d1997wayne

  • TI的技术白皮书 Time-of-Flight Camera – An Introduction

    TI的技术白皮书Time-of-Flight Camera – An Introduction对双目视觉,TOF,结构光进行了对比和介绍

    标签: TOF CMOS

    上传时间: 2022-08-10

    上传用户:

  • TOF 技术资料,Time of Flight 飞行时间技术说明

    ST提供的技术资料Time of Flight: Principles, Challenges,and Performance

    标签: tof

    上传时间: 2022-08-10

    上传用户: