2016Unpublished venueRequires access

Model of Non-leaking-Alarms and Non-aliasing Channelized Digital Receiver

Zhang Wen Xu, Shi Ming, Tong Liu, Tao Chen, Zheng Dou

Open publisher page 5 citations

Abstract

Because the ability of handling multiple signals at the same arriving time and has a high intercept probability, wideband Channelized receiver has become a hot research topic in domestic and foreign. Channelized receiver based on polyphase filtering has less computational and more channels. In this paper, a new efficient structure model based on real signal non-maximally decimated channelization is derived, it has a wide applicability, and we analyzed the advantages and disadvantages of this model. The leaking-alarming phenomenon of the channelized receiver is discussed in this paper. In this paper, the aliasing phenomenon caused by part-overlapping polyphase filtering structure is solved by a new method of extending the processing bandwidth. Simulation analysis for the non-maximally decimated non-leaking-alarming and non-Aliasing channelized digital receiver model presenting by this paper, the consequence of the simulation confirms the model is accurate and reliable.

About this research paper

What this paper is about

Because the ability of handling multiple signals at the same arriving time and has a high intercept probability, wideband Channelized receiver has become a hot research topic in domestic and foreign. Channelized receiver based on polyphase filtering has less computational and more channels. In this paper, a new efficient structure model based on real signal non-maximally decimated channelization is derived, it has a wide applicability, and we analyzed the advantages and disadvantages of this model. The leaking-alarming phenomenon of the channelized receiver is discussed in this paper. In this paper, the aliasing phenomenon caused by part-overlapping polyphase filtering structure is solved by a new method of extending the processing bandwidth. Simulation analysis for the non-maximally decimated non-leaking-alarming and non-Aliasing channelized digital receiver model presenting by this paper, the consequence of the simulation confirms the model is accurate and reliable.

Why it matters

OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Because the ability of handling multiple signals at the same arriving time and has a high intercept probability, wideband Channelized receiver has become a hot research topic in domestic and foreign. Channelized receiver based on polyphase filtering has less computational and more channels. In this paper, a new efficient structure model based on real signal non-maximally decimated channelization is derived, it has a wide applicability, and we analyzed the advantages and disadvantages of this model. The leaking-alarming phenomenon of the channelized receiver is discussed in this paper. In this paper, the aliasing phenomenon caused by part-overlapping polyphase filtering structure is solved by a new method of extending the processing bandwidth. Simulation analysis for the non-maximally decimated non-leaking-alarming and non-Aliasing channelized digital receiver model presenting by this paper, the consequence of the simulation confirms the model is accurate and reliable.

Key concepts: Channelized, Polyphase system, Computer science, Aliasing, Bandwidth (computing), Electronic engineering, Wideband, Algorithm

Related papers

Back to paper searchBrowse research topicsOriginal source
Model of Non-leaking-Alarms and Non-aliasing Channelized Digital Receiver — Research Paper | ScholarLens