spread spectrum
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Sensors ◽  
2022 ◽  
Vol 22 (2) ◽  
pp. 565
Author(s):  
Agostino Isca ◽  
Nader Alagha ◽  
Riccardo Andreotti ◽  
Marco Andrenacci

This paper provides an overview of recent results of a design, development and performance evaluation study of satellite gateways to receive and manage the traffic from a large population of uncoordinated user terminals. In particular, direct satellite access scenarios for machine-to-machine communications and the Internet of Things have been targeted. Tests were carried out in a representative laboratory environment emulating realistic system scenarios. Performance results, as presented in this paper indicate that the proposed gateway architecture, based on an efficient access protocol, is capable of managing a very high number of uncoordinated terminals transmitting short messages with a low duty cycle. The applicability of the proposed solution to both geostationary and non-geostationary satellite systems has also been examined. The key concept of the gateway is based on a novel receiver architecture that implements the linear minimum mean square error (MMSE) spread spectrum signal detection and successive interference cancellation techniques. The receiver uses features such as a multi-stage detector together with a robust preamble detection. The end-to-end solution includes also the use of a new waveform with a quasi-constant envelope at the terminal to modulate and transmit data packets to be received and detected by the gateway via a satellite link.


2021 ◽  
Vol 33 (6) ◽  
pp. 1315-1325
Author(s):  
Romprakhun Tientadakul ◽  
Hiroaki Nakanishi ◽  
Tomoo Shiigi ◽  
Zichen Huang ◽  
Lok Wai Jacky Tsay ◽  
...  

Indoor navigation plays an essential role in agricultural robots that operate in greenhouses. One of the most effective methods for indoor navigation is the spread spectrum sound (SS-sound) system. In this system, the time of arrival (ToA) of the spread spectrum modulated sound is used for localization. However, there is a near-far problem. Transmitting the SS-sound from multiple anchors using time division multiple access (TDMA) is adequate to solve the near-far problem. However, localization is impossible because the ToA from multiple anchors cannot be simultaneously acquired. To solve this problem, a method for combining the SS-sound system with TDMA and an inertial navigation system is proposed in this study. The effectiveness of the proposed method was demonstrated through numerical simulations of a ground robot and experimentally using a crawler robot.


2021 ◽  
Vol 1 (1) ◽  
pp. 112-120
Author(s):  
Aya Y. Khudhair ◽  
Rajaa aldeen A. Khalid

- Direct sequence spread spectrum systems appeared and are used to protect the transmitted data DSSS Systems might be one of the solutions for reliable and secured communications. Also, it is one of the approaches used by signals for transmitting bandwidth larger compared to the satisfied frequency related to the original information. The communication systems of SS were vital to suppress interference, complicating the detection and processing of secure communications, the technology of spread spectrum (DSSS) has been initially created for military applications. In a traditional DSSS system, the PN code is the primary key to make the receiver recover the transmitted data. In this paper, by using the MATLAB R2020a is used to simulate the proposed system, it is considered that the transmitter sends data bits and wants to protect the sent data by making each bit send with a PN code consisting of 127 bits randomly without informing the receiver of that. here the artificial neural network (ANN) was used as a tool to find the PN code for each initial value of 7 flip-flops. so, the receiver could detect the transmitted data with BER =0.


2021 ◽  
Vol 2137 (1) ◽  
pp. 012041
Author(s):  
Chao Xu ◽  
Yumeng Xie ◽  
Yuan Zhou

Abstract With the continuous development of computer technology and the continuous improvement of interface data rate, the clock frequency has reached the demand of several gigahertz, which makes the electromagnetic interference problem very serious. Spread spectrum clock is an effective method to reduce electromagnetic interference of digital chips. Therefore, this paper designs a double-loop phase-locked loop that can spread spectrum and has strong anti-electromagnetic noise interference ability. The designed dual-loop phase-locked loop can be used in the clock generator chip. The overall structure of the circuit consists of a main loop and a secondary loop. The main loop is an adjustable phase-locked loop circuit that can provide an output with a center frequency of 500MHz. The secondary loop can realize the spread spectrum function by charging and discharging the filter capacitor of the main loop loop, and at the same time, the spreading depth can be set by the feedback based on the frequency division. The dual-loop phase-locked loop designed in this paper has a good effect in spread spectrum and anti-electromagnetic interference noise.


Sebatik ◽  
2021 ◽  
Vol 25 (2) ◽  
pp. 661-666
Author(s):  
Muhamad Bahrul Ulum ◽  
Sandfreni Sandfreni ◽  
Anik Hanifatul Azizah

Internet memberikan kemudahan menyampaikan informasi atau bertukar data, data yang dikirimkan melalui jaringan internet bisa memiliki sifat yang sangat rahasia. Untuk menjaga kerahasiaan data yang dikirimkan diperlukan suatu teknik, salah satunya adalah dengan teknik Steganografi. Steganografi adalah suatu teknik penyembunyian data yang bersifat rahasia pada suatu data penampung, dimana keberadaan dari data tersebut tidak mengundang kecurigaan dari persepsi pengamatan oleh indra manusia. Teknik Steganografi memiliki beberapa metode, metode yang paling sering digunakan adalah metode Least Significant Bit (LSB) dan metode Spread Spectrum (SS). Pada penelitian ini diterapkan kedua metode di atas pada Audio digital. Kemudian hasilnya dianalisis untuk membandingkan kelemahan dan kelebihan masing-masing metode dengan cara membandingkan kualitas audio sebelum dan sesudah disisipi, serta kualitas pesan rahasia yang sudah diekstraksi. Dari pengujian yang dilakukan didapatkan bahwa kualitas audio steganografi yang dihasilkan metode Spread Spectrum lebih baik dari pada metode Least Significant Bit (LSB) dibuktikan oleh nilai SNR yang dihasilkan metode Spread Spectrum lebih besar atau lebih baik dibandingkan metode Least Significant Bit (LSB). Perbedaan nilai SNR yang dihasilkan oleh kedua metode memiliki selisih nilai yang kecil, nilai perbedaannya mencapai 8 db, tetapi kualitas pesan yang didapatkan pada hasil ekstraksi kedua metode sama baiknya.


2021 ◽  
Vol 5 (6) ◽  
pp. 824-839
Author(s):  
Varshini Rajesh ◽  
A. R. Abdul Rajak

In a wireless communication system, the transmitted signal is exposed to various surfaces where it bounces and results in several delayed versions of the same signal at the receiver end. The delayed signals are in the form of electromagnetic waves that are diffracted and reflected from the various object surfaces. These result in co-channel interferences for wireless systems. MIMO has proven to be a striking solution for the new generation of wireless systems. MIMO-OFDM system with QPSK modulation is considered as the wireless system for studying the performance of interference cancellation techniques. The BER performance is studied in channels such as Rayleigh and Rician Fading Channels. The effects of interference are reduced to a certain extent by the inclusion of CDMA (spread spectrum technique) as Technique 1. The effects of interference on this system have been further reduced using the LMS filter as Technique 2. Hence, to show better performance in MIMO-OFDM systems, it is recommended to employ both CDMA and LMS filters to decrease the effects of co-channel interference. It is observed that the parameter BER reduces as the SNR increases for both these channels. Doi: 10.28991/esj-2021-01313 Full Text: PDF


2021 ◽  
Vol 2128 (1) ◽  
pp. 012003
Author(s):  
Azza Moawad ◽  
Koffi-Clément Yao ◽  
Ali Mansour ◽  
Roland Gautier

Abstract In this manuscript, we introduce a semi-blind spectrum sensing technique based on cepstral analysis for interweave cognitive systems. The misdetection problem of spread spectrum signals leads to erroneous sensing results, which affect the quality-of-service of a legitimate user. The simplicity and accuracy of cepstral analysis approaches make them reliable for signals detection. Therefore, we formulate the averaged autocepstrum detection technique that utilizes the strength of the autocepstral features of spread spectrum signals. The proposed technique is compared with the energy detection and eigenvalue-based detection techniques and shows reliability and efficacy in terms of detection accuracy.


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