
引言
通感一体化业务与性能指标
通感一体化业务分类 ··················································
通感一体化业务的性能指标 ·············································
通感一体化典型业务 ··················································
通感一体化主要标准组织的进展
通感一体化系统架构
通感融合发展层级····················································
感知服务参考模型····················································
感知功能···························································
感知方式···························································
通感一体化空口关键技术
通感一体化波形与信号设计··············································
通感一体化波形简介·····················································
基于通信波形的一体化波形················································
基于感知波形的一体化波形················································
基于通感融合的一体化波形················································
波形与信号设计性能评估准则··············································
多天线感知技术······················································
基于虚拟阵列的多天线感知技术·············································
基于波束赋形的多天线感知技术·············································
网络协作通感一体化···················································
系统模型······························································
关键技术······························································
感知非理想因素的消除技术··············································
感知非理想因素及其影响··················································
非理想因素的消除方法···················································
多频点协作感知技术···················································
多频点协作感知技术的研究意义············································
多频点协作感知技术的架构分析············································
多频点协作感知技术的难点分析············································
1
2
2.1
2.2
2.3
3
4
4.1
4.2
4.3
4.4
5
5.1
5.1.1
5.1.2
5.1.3
5.1.4
5.1.5
5.2
5.2.1
5.2.2
5.3
5.3.1
5.3.2
5.4
5.4.1
5.4.2
5.5
5.5.1
5.5.2
5.5.3
01
02
02
03
04
12
18
18
19
20
23
24
25
25
25
26
27
28
30
30
33
35
35
36
40
40
44
49
49
52
54
目录
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