标题: 管路主动式噪音控制系统之理论分析与实务设计
Theoretical Analysis and Practical Design of Active Noise Control Systems in Ducts
作者: 萧得圣
Hsiao, Te Sheng
胡竹生
Ju Sheng Hu
电控工程研究所
关键字: 主动式控制;噪音控制;噪音消除;管路;active control;noise control;noise cancellation;duct
公开日期: 1996
摘要: 本论首先对管路主动式噪音控制系统进行理论分析.不同于一般
声学模型的建立,本论文利用拉氏转换(Laplace transform)得到的声场转
移函数建立系统方块图.所以适于以控制理论分析与探讨.此一方块图中的
每个转移函数在状态空间的实现均为无限多维,故能完全反应声场本身是
分散式参数系统(distributed-parameter system)的特性.本论文所处理
的系统架构属于前馈式控制,前馈讯号来自上游的两颗麦克风,透过DSP晶
片执行控制器,由一个控制喇叭送出控制讯号,所欲消除的噪音为宽频的噪
音.透过系统方块图之分析,可得到在这样的架构下,完全消音的控制器有
无限多组解,且可利用一个参数将其参数化,这些控制器具有简单,与边界
条件无关且在管路下游完全消音的优点. 本论文的其他部份以实
验验证上文所提的控制器,主要重点在喇叭与麦克风动态的判别与补偿,使
用的方法包括离线设计与适应控制.离线的控制器设计对喇叭与麦克风的
动态不确定性十分敏感,而适应控制法则对此有较好的稳健性.实验显示这
样的控制器的确具有有效消音的能力且与边界无关的特性.
Feedforward control methods of active noise
cancellation system inducts are investigated both theoretically
and experimentally. Without any modal truncation and thus
reserving the distributed-parameter nature of theacoustic
system, the plant model used in this thesis can completely
characterizethe plan-wave behavior in finite-length ducts. A
general noise cancellationframework is constructed for stability
analysis and controlller synthesis.It is shown that there exist
infinitely many controllers to perfectly blocknoise propagation
toward downstream area. The most attractive features ofthese
controllers are their simple structures and independency of
boundaryconditions. One particular controller with special
physical meaning isanalyzed and experimented. The experimental
results show a consistent behavioras predicted by the theory.
However, the performance of this controllerdegenerates due to
the difference of sensors' dynamics and uncertainty of theplant.
To alleviate this influence, an adaptive version of this
controller isdesigned. Experimental results show that adaptive
control is feasible andeffectively remedies these uncertainties.
URI: http://140.113.39.130/cdrfb3/record/nctu/#NT850327035
http://hdl.handle.net/11536/61690
显示于类别:Thesis