Community

AES Convention Papers Forum

Ambience Sound Recording Utilizing Dual MS (Mid-Side) Microphone Systems Based upon Frequency Dependent Spatial Cross Correlation (FSCC)—Part-2: Acquisition of On-Stage Sounds

Document Thumbnail

In musical sound recording, a forest of microphones is commonly observed. It is for good sound localization and favorable ambience, however the forest is desired to be sparse for less laborious setting up and mixing. For this purpose, the authors studied sound-image representation of stereophonic microphone arrangements utilizing Frequency Dependent Spatial Cross Correlation (FSCC), which is a cross correlation of two microphone's outputs. The authors firstly examined FSCCs of typical microphone arrangements for acquisition of ambient sounds and concluded that MS(Mid-Side) microphone system with setting directional azimuth at 132 degree is the best. The authors also studied conditions of on-stage sounds acquisition and resulted that FSCC of co-axial type microphone takes the constant value of +1, which is advantageous for stable sound localization. Thus the authors further compared additional sound acquisition characteristics of MS system (setting directional azimuth at 120 degree and XY system. As a conclusion, the former is superior. Finally, the author proposed dual MS microphone systems. One is for on-stage sound acquisition set directional azimuth at 120 degree and the other is for ambient sound acquisition set directional azimuth at 132 degree.

Authors:
Affiliation:
AES Convention: Paper Number:
Publication Date:
Subject:

Click to purchase paper as a non-member or you can login as an AES member to see more options.

No AES members have commented on this paper yet.

Subscribe to this discussion

RSS Feed To be notified of new comments on this paper you can subscribe to this RSS feed. Forum users should login to see additional options.

Start a discussion!

If you would like to start a discussion about this paper and are an AES member then you can login here:
Username:
Password:

If you are not yet an AES member and have something important to say about this paper then we urge you to join the AES today and make your voice heard. You can join online today by clicking here.

AES - Audio Engineering Society