Title :
Performance of slow-FH/16-QAM system with interference-immunity decoding and transmission power control for land mobile radio
Author :
Hamaguchi, Kiyoshi ; Kamio, Yukiyoshi ; Sampei, Seiichi ; Morinaga, Norihiko
Author_Institution :
Commun. Res. Lab., Minist. of Posts & Telecommun., Yokosuka, Japan
Abstract :
A method to estimate the interference level for use in a block decoding and carrier-to-interference ratio (CIR)-based closed-loop transmission power control (TPC) in a slow frequency-hopping (slow-FH) radio communication system is described. The reverse-link performance of the system is evaluated. In this interference estimation method, the difference level between the decoded symbol block and the received symbol block is used in the receiver. Even the CIR for damaged slots can be estimated because all the slots are not always affected by the same interference in the slow-FH system. We use computer simulation to determine whether the decoding with estimated interference and CIR-based TPC works well in a slow-FH/16-quadrature amplitude modulation (16-QAM) system. The obtained bit error rate (BER) performance shows that it achieves high-quality transmission
Keywords :
cellular radio; closed loop systems; decoding; error statistics; frequency hop communication; interference suppression; power control; quadrature amplitude modulation; radio links; radio receivers; telecommunication control; BER performance; CIR; CIR-based TPC; bit error rate; block decoding; carrier-to-interference ratio; cellular communication systems; closed-loop transmission power control; computer simulation; decoded symbol block; interference estimation method; interference-immunity decoding; land mobile radio; quadrature amplitude modulation; received symbol block; receiver; reverse-link performance; slow frequency-hopping; slow-FH radio communication system; slow-FH/16-QAM system; system performance; transmission power control; Amplitude estimation; Amplitude modulation; Bit error rate; Computer simulation; Decoding; Frequency estimation; Power control; Radio communication; Radiofrequency interference; Receivers;
Conference_Titel :
Vehicular Technology Conference, 1999. VTC 1999 - Fall. IEEE VTS 50th
Conference_Location :
Amsterdam
Print_ISBN :
0-7803-5435-4
DOI :
10.1109/VETECF.1999.801709