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WIFI-Robot

  • ZCORE-STM32+BC95_核心板

    ZCORE系列NBIOT開發底板資料開源。 NBIOT開發板主要接口:      Micro USB *1      3.7V電池充電電路      慶科WIFI模塊支持      貼片SIM卡支持      STM32L433全部外圍接口已拉出為2.0排針

    標簽: ZCORE-STM 32 BC 95 核心板

    上傳時間: 2018-04-25

    上傳用戶:pshr960405

  • RK411無線模塊

    wifi模塊,RAK411 是一款完全符合802.11b/g/n 無線協議的Wi-Fi 模塊,內部集成完整的TCP/IP 協議棧,支 持ARP、IP、ICMP、TCP 、UDP、DHCP CLIENT、DHCP SERVER、DNS 等多種協議。支持AP 模式, Station 及Ad-hoc。用戶可以方便、快速地使用模塊實現組網及數據收發。在SPI 接口下,模塊最大傳輸 速率可達2Mbps。

    標簽: 411 RK 無線模塊

    上傳時間: 2018-05-17

    上傳用戶:luke242

  • wifiadb

    wifi    adb

    標簽: wifiadb

    上傳時間: 2018-06-02

    上傳用戶:admin1

  • virtual decomposition control

    obot control, a subject aimed at making robots behave as desired, has been extensively developed for more than two decades. Among many books being published on this subject, a common feature is to treat a robot as a single system that is to be controlled by a variety of control algorithms depending on different scenarios and control objectives. However, when a robot becomes more complex and its degrees of freedom of motion increase substantially, the needed control computation can easily go beyond the scope a modern computer can handle within a pre-specified sampling period. A solution is to base the control on subsystem dynamics.

    標簽: decomposition virtual control

    上傳時間: 2019-09-04

    上傳用戶:txb96

  • Broadband Wireless Networks

    Emerging technologies such as WiFi and WiMAX are profoundly changing the landscape of wireless broadband.  As  we evolve into future generation wireless networks, a primary challenge is the support of high data rate, integrated multi- media type traffic over a unified platform. Due to its inherent advantages in high-speed communication, orthogonal frequency division multiplexing (OFDM) has become the modem  of  choice for a number of high profile wireless systems (e.g., DVB-T, WiFi, WiMAX, Ultra-wideband).

    標簽: Broadband Wireless Networks

    上傳時間: 2020-05-26

    上傳用戶:shancjb

  • Continuous-Time+Digital+Front-Ends

    The book you’re holding, physically or electronically, is the result of a very interesting, challenging but also rewarding research project. The research was carried out in different contexts and cooperations but it was centered around the following question: how can we make the RF transmitters of our modern com- munication systems (WiFi, GSM, LTE, and so on) more flexible and more efficient at the same time.

    標簽: Continuous-Time Front-Ends Digital

    上傳時間: 2020-05-27

    上傳用戶:shancjb

  • OFDM-Based Broadband Wireless Networks

    Emerging technologies such as WiFi and WiMAX are profoundly changing the landscape of wireless broadband.  As  we evolve into future generation wireless networks, a primary challenge is the support of high data rate, integrated multi- media type traffic over a unified platform. Due to its inherent advantages in high-speed communication, orthogonal frequency division multiplexing (OFDM) has become the modem  of  choice for a number of high profile wireless systems (e.g., DVB-T, WiFi, WiMAX, Ultra-wideband).

    標簽: OFDM-Based Broadband Networks Wireless

    上傳時間: 2020-05-31

    上傳用戶:shancjb

  • Radio System Design for Telecommunication

    This book provides the essential design techniques for radio systems that operate at frequencies of 3 MHz to 100 GHz and which will be employed in the telecommunication service. We may also call these wireless systems, wireless being synonymous with radio, Telecommunications is a vibrant indus- try, particularly on the ‘‘radio side of the house.’’ The major supporter of this upsurge in radio has been the IEEE and its 802 committees. We now devote ? . an entire chapter to wireless LANs WLANs detailed in IEEE 802.11. We also now have subsections on IEEE 802.15, 802.16, 802.20 and the wireless ? . ? metropolitan area network WMAN . WiFi, WiMax,, and UWB ultra wide- . band are described where these comparatively new radio specialties are demonstrating spectacular growth.

    標簽: Telecommunication Design System Radio for

    上傳時間: 2020-06-01

    上傳用戶:shancjb

  • Stochastic Geometry and Wireless Networks

    A wireless communication network can be viewed as a collection of nodes, located in some domain, which can in turn be transmitters or receivers (depending on the network considered, nodes may be mobile users, base stations in a cellular network, access points of a WiFi mesh etc.). At a given time, several nodes transmit simultaneously, each toward its own receiver. Each transmitter–receiver pair requires its own wireless link. The signal received from the link transmitter may be jammed by the signals received from the other transmitters. Even in the simplest model where the signal power radiated from a point decays in an isotropic way with Euclidean distance, the geometry of the locations of the nodes plays a key role since it determines the signal to interference and noise ratio (SINR) at each receiver and hence the possibility of establishing simultaneously this collection of links at a given bit rate. The interference seen by a receiver is the sum of the signal powers received from all transmitters, except its own transmitter.

    標簽: Stochastic Geometry Networks Wireless Volume and II

    上傳時間: 2020-06-01

    上傳用戶: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.”

    標簽: Time-Varying Channels

    上傳時間: 2020-06-01

    上傳用戶:shancjb

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